🇵🇱 GŁÓWNY INSTYTUT GÓRNICTWA – PL
石油化工与燃料环境材料与高分子水与废水建筑食品与饮料
GŁÓWNY INSTYTUT GÓRNICTWA – 是由 PCA 认可的实验室,认可编号 AB 005(Katowice,波兰)。认可范围涵盖 570 项检测方法,涉及以下领域:石油化工与燃料、环境、材料与高分子、水与废水。检测对象包括:水、废水、固体燃料:烟煤、固体燃料:烟煤、褐煤、烟煤焦炭、固体燃料:固体生物燃料。
要点速览
- 认可编号: PCA AB 005
- 认可范围内方法数: 570
- 检测对象种类: 145
- 城市: Katowice, 波兰
- 认可编号
- AB 005
- 认可机构
- PCA
- 地址
- PAŃSTWOWY INSTYTUT BADAWCZY, ZESPÓŁ LABORATORIÓW BADAWCZYCH I WZORCUJĄCYCH GIG-PIB, Pl. Gwarków 1, 40-166 Katowice, CENTRAL MINING INSTITUTE –, NATIONAL RESEARCH INSTITUTE
- 城市
- Katowice, 波兰
该实验室检测什么 (145)
- 水、废水 — 57 项方法
- 固体燃料:烟煤 — 34 项方法
- 固体燃料:烟煤、褐煤、烟煤焦炭 — 20 项方法
- 固体燃料:固体生物燃料 — 19 项方法
- 固体燃料:固体回收燃料 — 18 项方法
- 绞合导线 Stranded conductors — 14 项方法
- 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel — 13 项方法
- 机器与设备 - 噪声 / Machinery and equipment – noise — 13 项方法
- 土体 Ground — 12 项方法
- 水 Water — 12 项方法
- 导线 Conductors — 11 项方法
- 岩石与石材 Rocks and stone materials — 11 项方法
- 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel — 11 项方法
- 水 生活饮用水 废水 Water Drinking water Sewage — 11 项方法
- 钢丝 Wires — 11 项方法
- 另有 130 项
证书信息
- 签发日期
- 18.12.2025
- 版次
- 29
认可范围 — 项检测方法 (570)
| 序号 | 检测对象 | 方法 / 参数 | 技术 | 依据文件 | |
|---|---|---|---|---|---|
| 检测方法 | |||||
| 1 | 水 生活饮用水 废水 Water Drinking water Sewage | Activity concentration of radionuclide: 226Ra Range: (0,004 – 1000) Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-002 edycja 7 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-002 7th edition of 25 August 2023 | ||
| 2 | 水 生活饮用水 废水 Water Drinking water Sewage | Activity concentration of radionuclide: 228Ra Range: (0,02 – 1000) Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-002 edycja 7 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-002 7th edition of 25 August 2023 | ||
| 3 | 水 生活饮用水 废水 Water Drinking water Sewage | Activity concentration of radionuclide: 90Sr Range: (0,01 – 1000) Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-020 edycja 5 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-020 5th edition of 25 August 2023 | ||
| 4 | 水 生活饮用水 废水 Water Drinking water Sewage | Activity concentration of radionuclide: 3H Range: (5 – 1000) Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-017 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-017 4th edition of 25.08.2023 | ||
| 5 | 水 生活饮用水 废水 Water Drinking water Sewage | Activity concentration of radionuclide: 222Rn Range: (2 – 4000) Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-022 edycja 3 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-022 3rd edition of 25 August 2023 | ||
| 6 | 水 生活饮用水 废水 Water Drinking water Sewage | Activity concentration of radionuclide: 238U, 235U, 234U Range: 0,4 mBq/L – 3 GBq/L Alpha spectrometry | Procedura SCR/ZLGIG/1-023 edycja 1 z dnia 24.02.2025 r. Procedure SCR/ZLGIG/1-023 1st edition of 24 February 2025 | ||
| 7 | 水 生活饮用水 废水 Water Drinking water Sewage | Total alpha activity Range: (0,04 – 50) Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-021 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-021 4th edition of 25 August 2023 | ||
| 8 | 水 生活饮用水 废水 Water Drinking water Sewage | Total beta activity Range: (0,1 – 50) Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-021 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-021 4th edition of 25.08.2023 | ||
| 9 | 水 生活饮用水 废水 Water Drinking water Sewage | Calculation of Indicative Dose (ID) from water consumption | Procedura SCR/ZLGIG/1-002 edycja 7 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-002 7th edition of 25.08.2023 | ||
| 10 | 水 生活饮用水 废水 Water Drinking water Sewage | Activity concentration of gamma- emitting radionuclides in energy range 40 – 2000 keV Range: 0,02 Bq/dm3 – 100 kBq/dm3 Gamma-ray spectrometry | Procedura SCR/ZLGIG/2-004 edycja 8 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/2-004 8th edition of 25 August 2023 | ||
| 11 | 水 生活饮用水 废水 Water Drinking water Sewage | Calculation of committed effective dose for unit intake of the tested material Calculation of committed effective dose from intake of radioactive material | Procedura SCR/ZLGIG/2-005 edycja 3 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/2-005 3rd edition of 25 August 2023 | ||
| 12 | Air Building items | Activity concentration of radon 222Rn Range for 1 month exposition: 31 – 11 111 Bq/m3 Track detectors | Procedura SCR/ZLGIG/2-011 edycja 4 z dnia 05.05.2025 Procedure SCR/ZLGIG/2-011 4th edition of 05 May 2025 | ||
| 13 | Air Building items | Activity concentration of radon 222Rn Range for given time of exposition: 40 – 8000 kBq*h/m3 divided by exposition time expressed in hours Track detectors | Procedura SCR/ZLGIG/2-011 edycja 4 z dnia 05.05.2025 Procedure SCR/ZLGIG/2-011 4th edition of 05 May 2025 | ||
| 14 | Soil, ground, rocks Sediments Air Fuels Biological items and materials for testing (human, animal, vegetable and other natural) Food Agricultural products Animal feedstuffs Building products, materials Other products Air filter Waste O): code 01 01 01, 01 01 02, 01 01 80, 01 03 05*, 01 03 07*, 01 03 09, 01 03 80*, 01 03 81, 01 04 02, 01 04 07*, 01 04 08, 01 04 11, 01 04 12, 01 04 80*, 02 01 01, 02 01 10, 02 02 04, 03 01 82, 04 02 19*, 05 01 09*, 06 13 02*, 10 01 01, 10 01 02, 10 01 03, 10 01 04*, 10 01 05, 10 01 07, 10 01 14*, 10 01 15, 10 01 16*, 10 01 17, 10 01 18*, 10 01 19, 10 01 20*,10 01 21, 10 01 22*, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 01 99, 10 02 01, 10 02 02, 10 02 07*, 10 02 08, 10 02 10, 10 02 13*, 10 02 14, 10 02 15, 10 02 80, 10 03 04*, 10 03 19*, 10 03 20, 10 03 23*, 10 03 24, 10 03 25*, 10 05 80, 10 09 99, 10 11 03, 10 11 99, 12 01 21, 17 01 01, 17 01 02, 17 01 03, 17 01 06, 10 01 07,17 01 82, 17 02 02, 17 05 03, 17 05 04, 17 05 05*, 17 05 06, 17 05 08, 19 01 05*, 19 01 06*, 19 01 07*, 19 01 11*, 19 01 12, 19 01 13*, 19 01 14, 19 02 06, 19 09 02, 19 08 14, 19 09 04, 19 09 99, 19 12 09, 19 13 06 | Activity concentration of gamma- emitting radionuclides in the energy range: Energy range of the measured gamma radiation: 40 – 2000 keV Determination range: 0,1 Bq/kg – 100 MBq/kg Gamma-ray spectrometry method | Procedura SCR/ZLGIG/2-004 edycja 8 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/2-004 8th edition of 25 August 2023 | ||
| 15 | Soil, ground, rocks Sediments Frtilizers Fuels Biological items and materials (human, animal, vegetable and other natural) Food Agricultural products Animal feedstuffs Other products Air filter Waste O): code 01 01 01, 01 01 02, 01 01 80, 01 03 05*, 01 03 07*, 01 03 09, 01 03 80*, 01 03 81, 01 04 02, 01 04 07*, 01 04 08, 01 04 11, 01 04 12, 01 04 80*, 02 01 01, 02 01 10, 02 02 04, 03 01 82, 04 02 19*, 05 01 09*, 06 13 02*, 10 01 01, 10 01 02, 10 01 03, 10 01 04*, 10 01 05, 10 01 07, 10 01 14*, 10 01 15, 10 01 16*, 10 01 17, 10 01 18*, 10 01 19, 10 01 20*, 10 01 21, 10 01 22*, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 01 99, 10 02 01, 10 02 02, 10 02 07*, 10 02 08, 10 02 10, 10 02 13*, 10 02 14, 10 02 15, 10 02 80, 10 03 04*, 10 03 19*, 10 03 20, 10 03 23*, 10 03 24, 10 03 25*, 10 05 80, 10 09 99, 10 11 03, 10 11 99, 12 01 21, 17 01 01, 17 01 02, 17 01 03, 17 01 06, 10 01 07, 17 01 82, 17 02 02, 17 05 03, 17 05 04, 17 05 05*, 17 05 06, 17 05 08, 19 01 05*, 19 01 06*, 19 01 07*, 19 01 11*, 19 01 12, 19 01 13*, 19 01 14, 19 02 06, 19 09 02, 19 08 14, 19 09 04, 19 09 99, 19 12 09, 19 13 06 | Activity concentration of radionuclide: 238U, 235U, 234U Range: 0,02 Bq/kg – 3 GBq/kg Alpha spectrometry | Procedura SCR/ZLGIG/1-023 edycja 1 z dnia 24.02.2025 r. Procedure SCR/ZLGIG/1-023 1st edition of 24 February 2025 | ||
| 16 | Soil, ground, rocks Sediments Air Fuels Other products Air filter Waste O): code 01 01 01, 01 01 02, 01 01 80, 01 03 05*, 01 03 07*, 01 03 09, 01 03 80*, 01 03 81, 01 04 02, 01 04 07*, 01 04 08, 01 04 11, 01 04 12, 01 04 80*, 02 01 01, 02 01 10, 02 02 04, 03 01 82, 04 02 19*, 05 01 09*, 06 13 02*, 10 01 01, 10 01 02, 10 01 03, 10 01 04*, 10 01 05, 10 01 07, 10 01 14*, 10 01 15, 10 01 16*, 10 01 17, 10 01 18*, 10 01 19, 10 01 20*, 10 01 21, 10 01 22*, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 01 99, 10 02 01, 10 02 02, 10 02 07*, 10 02 08, 10 02 10, 10 02 13*, 10 02 14, 10 02 15, 10 02 80, 10 03 04*, 10 03 19*, 10 03 20, 10 03 23*, 10 03 24, 10 03 25*, 10 05 80, 10 09 99, 10 11 03, 10 11 99, 12 01 21, 17 01 01, 17 01 02, 17 01 03, 17 01 06, 10 01 07, 17 01 82, 17 02 02, 17 05 03, 17 05 04, 17 05 05*, 17 05 06, 17 05 08, 19 01 05*, 19 01 06*, 19 01 07*, 19 01 11*, 19 01 12, 19 01 13*, 19 01 14, 19 02 06, 19 09 02, 19 08 14, 19 09 04, 19 09 99, 19 12 09, 19 13 06 | Activity concentration of radionuclide: 90Sr Range: 2 Bq/kg – 0,2 MBq/kg Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-020 edycja 5 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-020 5th edition of 25 August 2023 | ||
| 17 | Biological items and materials (human, animal, vegetable and other natural) Food Agricultural products Animal feedstuffs | Activity concentration of radionuclide: 90Sr Range: 0,06 – 1000 Bq/kg Liquid Scintillation Counting (LSC) | Procedura SCR/ZLGIG/1-020 edycja 5 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-020 5th edition of 25 August 2023 | ||
| 18 | Biological items and materials (human, animal, vegetable and other natural) Food Agricultural products Animal feedstuffs | Activity concentration of radionuclide: 90Sr Range: 0,06 – 1000 Bq/dm3 (kBq/m3) Liquid Scintillation Counting (LSC) | |||
| 19 | 建筑制品、建筑材料;结构制品与材料 Building products, materials Construction products and materials 废物 O) / Waste O):01 01 01、01 01 02、01 01 80、01 03 05*、01 03 07*、01 03 09、01 03 80*、01 03 81、01 04 07*、01 04 08、01 04 80*、02 01 01、02 01 10、02 02 04、03 01 82、04 02 19*、05 01 09*、06 13 02*、10 01 01、10 01 02、10 01 03、10 01 04*、10 | Activity concentration of radionuclide: 40K Range: (10 – 1 000 000) Bq/kg Gamma-ray spectrometry | Procedura SCR/ZLGIG/2-004 edycja 8 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/2-004 8th edition of 25 August 2023 | ||
| 20 | 建筑制品、建筑材料;结构制品与材料 Building products, materials Construction products and materials 废物 O) / Waste O):01 01 01、01 01 02、01 01 80、01 03 05*、01 03 07*、01 03 09、01 03 80*、01 03 81、01 04 07*、01 04 08、01 04 80*、02 01 01、02 01 10、02 02 04、03 01 82、04 02 19*、05 01 09*、06 13 02*、10 01 01、10 01 02、10 01 03、10 01 04*、10 | Activity concentration of radionuclide: 226Ra Range: (1,0 – 1 000 000) Bq/kg Gamma-ray spectrometry | |||
| 21 | 建筑制品、建筑材料;结构制品与材料 Building products, materials Construction products and materials 废物 O) / Waste O):01 01 01、01 01 02、01 01 80、01 03 05*、01 03 07*、01 03 09、01 03 80*、01 03 81、01 04 07*、01 04 08、01 04 80*、02 01 01、02 01 10、02 02 04、03 01 82、04 02 19*、05 01 09*、06 13 02*、10 01 01、10 01 02、10 01 03、10 01 04*、10 | Activity concentration of radionuclide: 208Tl Range: (1 – 1 000 000) Bq/kg Gamma-ray spectrometry | |||
| 22 | 建筑制品、建筑材料;结构制品与材料 Building products, materials Construction products and materials 废物 O) / Waste O):01 01 01、01 01 02、01 01 80、01 03 05*、01 03 07*、01 03 09、01 03 80*、01 03 81、01 04 07*、01 04 08、01 04 80*、02 01 01、02 01 10、02 02 04、03 01 82、04 02 19*、05 01 09*、06 13 02*、10 01 01、10 01 02、10 01 03、10 01 04*、10 | Activity concentration of radionuclide: 232Th (calculated) | |||
| 23 | 建筑制品、建筑材料;结构制品与材料 Building products, materials Construction products and materials 废物 O) / Waste O):01 01 01、01 01 02、01 01 80、01 03 05*、01 03 07*、01 03 09、01 03 80*、01 03 81、01 04 07*、01 04 08、01 04 80*、02 01 01、02 01 10、02 02 04、03 01 82、04 02 19*、05 01 09*、06 13 02*、10 01 01、10 01 02、10 01 03、10 01 04*、10 | Activity concentration index I (calculated) | |||
| 24 | Soil, ground, rocks Sediments Air Biological items and materials (human, animal, vegetable and other natural) Food Agricultural products Animal feedstuffs | Calculation of committed effective dose for unit intake of the tested material Calculation of committed effective dose from intake of radioactive material | Procedura SCR/ZLGIG/2-005 edycja 3 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/2-005 3rd edition of 25 August 2023 | ||
| 25 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Kerma of photon radiation Range: 3 μGy – 5 Gy Thermoluminescency (TLD) | Procedura SCR /ZLGIG/3-003 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/3-003 4th edition of 25 August 2023 | ||
| 26 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Individual equivalent dose H(10) p Range: 3 μSv – 5 Sv Thermoluminescency (TLD) | |||
| 27 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Ambient equivalent dose H*(10) Range: 3 μSv – 5 Sv Thermoluminescency (TLD) | |||
| 28 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Kerma of photon radiation in range of energy: 10 keV – 10 MeV Range: 10 μGy – 10 Gy Thermoluminescency (TLD) | Procedura SCR/ZLGIG/3-010 edycja 5 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/3-010 5th edition of 25 August 2023 | ||
| 29 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Kerma rate of photon radiation in energy range: 10 keV – 10 MeV Range: 5 nGy/h – 5 Gy/h Thermoluminescency (TLD) | |||
| 30 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Individual equivalent dose H (10) of photon radiation in energy p range 10 keV – 10 MeV Range: 10 μSv – 10 Sv Thermoluminescency (TLD) | |||
| 31 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Individual equivalent dose H (0,07) of photon and beta radiation in p energy range 10 keV – 10 MeV Range: 0,1 mSv – 1 Sv Thermoluminescency (TLD) | |||
| 32 | 其他制品 - 辐射场中的剂量计 Other products - Dosimeters in radiation field | Individual equivalent dose H (3) of photon radiation in energy range: p 10 keV – 10 MeV Range: 0,1 mSv – 1 Sv Thermoluminescency (TLD) | |||
| 33 | 其他制品 - 辐射场中的剂量计 空气过滤器 Other products - Dosimeters in radiation field Air filter | Ambient equivalent dose H*(10) of photon radiation in energy range: 10 keV – 10 MeV Range: 10 μSv – 10 Sv Thermoluminescency (TLD) | Procedura SCR/ZLGIG/3-010 edycja 5 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/3-010 5th edition of 25 August 2023 | ||
| 34 | 其他制品 - 辐射场中的剂量计 空气过滤器 Other products - Dosimeters in radiation field Air filter | Ambient equivalent dose rate of photon radiation in energy range: 10 keV – 10 MeV Range: 5 nSv/h – 5 Sv/h Thermoluminescency (TLD) | |||
| 35 | 其他制品 - 辐射场中的剂量计 空气过滤器 Other products - Dosimeters in radiation field Air filter | Potential Alpha Energy of short-living radon decay products in air collected on filters Range: (0,02 – 4000) μJ Thermoluminescency (TLD) | Procedura SCR/ZLGIG/3-001 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/3-001 4th edition of 25 August 2023 | ||
| 36 | 其他制品 - 辐射场中的剂量计 空气过滤器 Other products - Dosimeters in radiation field Air filter | Potential Alpha Energy Concentration of short-living radon decay products in air collected on filters Range: (0,01 – 2000) μJ/m3 Thermoluminescency (TLD) | |||
| 37 | 钢丝 Wires | Wire diameter Direct measurement method | PN-ISO 3154:1997 p. 5.2.2 | ||
| 38 | 钢丝 Wires | Actual breaking force Range: force (0 – 100) kN Force method | PN-ISO 3154:1997 p. 5.2.3 | ||
| 39 | 钢丝 Wires | Plastic deformation resistance Range: diameter (1 – 3,5) mm Torsion test in one direction | PN-ISO 7800:1996 | ||
| 40 | 钢丝 Wires | Resistance to plastic strain Range: diameter (0,7 – 4,0) mm Reverse bend test | PN-ISO 7801:1996 | ||
| 41 | 钢丝绳 Steel ropes | Rope diameter Range: (0 – 300) mm Direct measurement method | PN-ISO 3154:1997 p. 5.1.1 | ||
| 42 | 钢丝绳 Steel ropes | Actual breaking force Range: force (0 – 500) kN Force method | PN-ISO 3108:1996 PN-ISO 3154:1997 p. 5.1.4.2 | ||
| 43 | 钢丝绳 Steel ropes | 伸长 范围:(0 – 2000) mm 直接测量法 Elongation Range: (0 – 2000) mm Direct measurement method | |||
| 44 | 钢丝绳 Steel ropes | Discontinuities and change of rope metallic cross-section Range of rope diameters up to 60 mm Velocity: (0,1 – 3,0) m/s Magnetic method for ropes MTR Discontinuities and change of rope metallic cross-section Range of rope diameters up to 60 mm Velocity: (0,1 – 3,0) meters per second Magnetic method for ropes MTR | PN-92/G-46603 PN-EN 12927:2019-07 | ||
| 45 | 矿用圆环链 Link mining chains | Breaking load Range: force (0 – 5000) kN Force loading method Breaking load Range: force (0 – 5000) kN Force method | PN-G-46701:1997/Az1:2001 p. 3.4.6 | ||
| 46 | 矿用圆环链 Link mining chains | 伸长 范围:(0 – 2000) mm 直接测量法 Elongation Range: (0 – 2000) mm Direct measurement method | |||
| 47 | 结构构件 Construction elements | Breaking load Range: force (0 – 5000) kN Force loading method Breaking load Range: force (0 – 5000) kN Force method | PN-G-46701:1997/Az1:2001 p. 3.4.6 DIN 22252:2001 p. 6.4.2 | PN-G-46705:1997 p. 3.7.6 | ||
| 48 | 结构构件 Construction elements | 伸长 范围:(0 – 2000) mm 直接测量法 Elongation Range: (0 – 2000) mm Direct measurement method | PN-G-46701:1997/Az1:2001 p. 3.4.6 DIN 22252:2001 p. 6.4.2.3 | ||
| 49 | 结构构件 Construction elements | Tensile force Range: force (0 – 5000) kN Tensile test | PN-EN 61284:2002 p. 11.5.1, 11.6.1, 11.6.2.1, 11.6.2.2, 11.7 | ||
| 50 | 结构构件 Construction elements | Permanent deformation load and failure load Range: force (0 – 5000) kN Force loading method Mechanical damage and failure load Range: force (0 – 5000) kN Force method | PN-EN 61284:2002 p. 11.3.1 | ||
| 51 | 结构构件 Construction elements | Tensile force Range: force (0 – 5000) kN Slippage test | PN-EN 61284:2002 p. 11.4.2 | ||
| 52 | 结构构件 Construction elements | Dimensions and material of fittings Range: (0 – 2000) mm Direct measurement method Inspection of material documents | PN-EN 61284:2002 p. 8 | ||
| 53 | 结构构件 Construction elements | Electric properties of power supply connections Range: (0 – 1000) mΩ, (0 – 200)ºC Thermal cycle testing | PN-EN 61284:2002 p. 13 | ||
| 54 | 矿用圆环链 Link mining chains | Fatigue resistance Range: - force (20 – 1000) kN - frequency up to 14 Hz Fatigue test Fatigue resistance Range: - force (20 – 1000) kN - frequency up to 14 Hz Fatigue test | PN-G-46701:1997/Az1:2001 p. 3.4.9 DIN 22252:2001 p. 7.2 | ||
| 55 | 矿用圆环链 Link mining chains | Bending resistance Range: force (0 – 1000) kN Force method | PN-G-46701:1997/Az1:2001 p. 3.4.7 DIN 22252:2001 p. 6.5 | ||
| 56 | Universal connecting links | Fatigue resistance Range: - force (20 – 1000) kN - frequency up to 14 Hz Fatigue test Fatigue resistance Range: - force (20 – 1000) kN - frequency up to 14 Hz Fatigue test | PN-G-46705:1997 p. 3.7.7 | ||
| 57 | 导线 Conductors | Tensile force Range: (0 – 5000) kN Tensile test Tensile force Range: (0 – 5000) kN Tensile test | PN-IEC 1089:1994 p. 6.5.3 PN-EN 50182:2002 p. 6.4.8 + Zał. C /annex C IEC 62420:2008 p. 6.2.5 + Zał. B /annex B PN-EN 60889:2002 p. 10.1 PN-EN 50189:2002 p. 11.4 PN-EN 60889:2002 p. 6.4.10 + Zał. A/annex B PN-EN 50183:2002 p. 11.3 | ||
| 58 | 导线 Conductors | 伸长 范围:(0 – 2000) mm 直接测量法 Elongation Range: (0 – 2000) mm Direct measurement method | PN-EN 50182:2002 p. 6.4.7 IEC 62420:2008 + Zał. B/annex B PN-EN 50183:2002 p. 11.3 | ||
| 59 | 导线 Conductors | Diameter Range: (0 – 300) mm Direct measurement method Diameter Range: (0 – 300) mm Direct measurement method | PN-IEC 1089:1994 p. 6.6.2 PN-EN 50182:2002 p. 6.4.2 PN-EN 60889:2002 p. 5 PN-EN 50189:2002 p. 7 PN-EN 50540:2010 p. 6.4.2 PN-EN 50183:2002 p. 11.2 | ||
| 60 | 导线 Conductors | Lay ratio Range: (6 – 26) Direct measurement method Lay ratio Range: (6 – 26) Direct measurement method | PN-IEC 1089:1994 p. 6.6.6 PN-EN 50182:2002 p. 6.4.4 PN-EN 50540:2010 p. 6.4.4 PN-EN 62219:2003 p. 6.6.6 PN-EN 62420:2008 p. 6.3.5 | ||
| 61 | 导线 Conductors | Lay direction Visual examination method | PN-IEC 1089:1994 p. 6.6.6 PN-EN 50182:2002 p. 6.4.4 PN-EN 50540:2010 p. 6.4.4 PN-EN 62219:2003 p. 6.6.6 PN-EN 62420:2008 p. 6.3.5 | ||
| 62 | 导线 Conductors | Inertness Visual examination method | PN-EN 50182:2002 p. 6.4.3 PN-EN 50540:2010 p. 6.4.3 | ||
| 63 | 导线 Conductors | Number and type of wires Visual examination method | PN-EN 50182:2002 p. 6.4.5 PN-EN 50540:2010 p. 6.4.5 | ||
| 64 | 导线 Conductors | Surface quality Visual examination method | PN-IEC 1089:1994 p. 6.6.5 PN-EN 50182:2002 p. 6.4.1 PN-EN 50540:2010 p. 6.4.1 PN-EN 62219:2003 p. 6.6.5 PN-EN 62420:2008 p. 6.3.4 | ||
| 65 | 导线 Conductors | Mass per unit length. Mass of grease Range: (0 – 50) kg/m Direct measurement method | PN-IEC 1089:1994 p. 6.6.3+Zał. C /annex C PN-EN 50182:2002 p. 6.4.6+Zał. B /annex B PN-EN 50540:2010 p. 6.4.7 PN-EN 62219:2003 p. 6.6.3+Zał. C /annex C PN-EN 62420:2008 p. 6.3.3+Zał. C /annex C | ||
| 66 | 导线 Conductors | Cross-sectional area Direct measurement method Cross-sectional area Direct measurement method | PN-IEC 1089:1994 p. 6.6.1 PN-EN 50540:2010 p. 6.4.6 PN-EN 62219:2003 p. 6.6.1 PN-EN 62420:2008 p. 6.3.1 | ||
| 67 | 导线 Conductors | Slippage factor Slippage test Slippage factor Slippage test | PN-EN 50397-1:2007 Zał. D/annex D | ||
| 68 | 钢丝 Wires | Diameter Range: (0 – 300) mm Direct measurement method Diameter Range: (0 – 300) mm Direct measurement method | PN-IEC 1089:1994 Zał. NA/annex NA p. 5 PN-IEC 1089:1994 Zał. NB/annex NB p. 5 PN-IEC 1089:1994 Zał. NC/annex NC p. 5 | ||
| 69 | 钢丝 Wires | Tensile force Range: (0 – 100) kN Tensile test Tensile force Range: (0 – 100) kN Tensile test | PN-IEC 1089:1994 p. 6.6.4 PN-IEC 1089:1994 Zał. NA/annex NA p. 10.1 PN-IEC 1089:1994 Zał. NB/annex NB p. 10.2 PN-IEC 1089:1994 Zał. NC/annex NC p. 10 | ||
| 70 | 钢丝 Wires | Ability for wrapping Wrapping test Ability for wrapping Wrapping test | PN-EN 50182:2002 p. 6.5.2 PN-EN 50183:2002 p. 11.4 PN-EN 60889:2002 p. 10.2 | ||
| 71 | 预应力混凝土用钢 Steel for prestressing of concrete | Breaking force Range: force (0 – 5000) kN Force method | PN-EN ISO 15630-3:2011 p. 5.3.1 | ||
| 72 | 预应力混凝土用钢 Steel for prestressing of concrete | 伸长 范围:(0 – 2000) mm 直接测量法 Elongation Range: (0 – 2000) mm Direct measurement method | PN-EN ISO 15630-3:2011 p. 5.3.1 | ||
| 73 | 预应力混凝土用钢 Steel for prestressing of concrete | Modulus of elasticity (calculated) Range: force (0 – 5000) kN Range: elongation (0 – 5000) mm | PN-EN ISO 15630-3:2011 p. 5.3.2 | ||
| 74 | Elements of technical constructions | Linear dimensions Direct measurement method Static bend test Range: - force up to 3000 kN - displacement up to 0,35 m Force method with displacement measurement | PN-G-15000-9:1998 PN-G-06021:1997 z wyłączeniem /excluding p. 5.3.3 PN-G-15541:1997 DIN 21530-4:2003 p. 4.1.1.2.2.5 | ||
| 75 | Elements of technical constructions | Linear dimensions Direct measurement method Static torsion test Range: - torsion moment up to 170 kNm - rotation angle up to 180º Torque loading method with rotation angle measurement | PN-G-15000-12:1994 | ||
| 76 | Friction props | Linear dimensions Direct measurement method Prop mass Weight method Average working load Range: - force up to 3000 kN - prop height up to 4,5 m Force method Dynamic resistance Range: - prop height up to 4,5 m - impact energy up to 49x104 J Free falling mass method | PN-G-15533:1997 | ||
| 77 | Hydraulic props | Linear dimensions Direct measurement method Dynamic resistance Range: - impact energy up to 49104 J - prop height up to 6 m - impact mass up to 20000 kg Free falling mass method | PN-G-15536:2013 p. 6.4.2.4 | ||
| 78 | Hydraulic props | Linear dimensions Direct measurement method Piston displacement speed Static axial overload Range: - overload up to 13 MN - prop height up to 4,7 m Pressure loading method with displacement measurement Static eccentric overload Range: - overload up to 13 MN - prop height up to 4,7 m Pressure loading method with displacement measurement Tightness Pressure loading method Support characteristics Pressure loading method with displacement measurement | PN-G-15536:2013 z wyłączeniem / /excluding p. 6.4.2.4 i/and 6.4.4 PN-EN 1804-2:2021-05 z wyłączeniem/excluding p. A.1.2.3.2 | ||
| 79 | Props, legs, rams and auxiliary actuators | Susceptibility Pressure loading method Static overload Pressure loading method Dynamic overload Pressure loading method Durability Pressure loading method Functionality (correct operation) Pressure loading method Tightness Pressure loading method Deflection Range: - pressure up to 200 MPa - force up to 13 MN Pressure loading method | PN-EN 1804-2:2021-05 Załączniki/annexes A i/and B | ||
| 80 | Power hydraulics elements | Fatigue resistance Pressure loading method Tightness Pressure loading method Functionality (correct operation) Pressure loading method | PN-G-15536:2013 p. 6.4.4, 6.4.4.4, 6.5 i/and 6.4.2.5 | ||
| 81 | Mining struts | Linear dimensions Direct measurement method Specific angle mounting possibility Strut stability: − transverse − perpendicular Force method Longitudinal tensile load capacity of the strut Force method Strut lengthening Displacement measurement method Longitudinal compressive strength of the strut Force method Strut shortening Range: - force up to 150 kN - working length (0,5 – 1,75) m Displacement measurement method | PN-G-15024:2017-10 | ||
| 82 | Stirrups and joints of arch supports made of trough sections | Direct measurement method Operating characteristics Average sliding load capacity of the joint Range: - force up to 3000 kN - displacement up to 0,35 mm Force loading method with displacement measurement Direct measurement method Static bending test of the joint Range: - force up to 3000 kN - displacement up to 0,35 m Force loading method with displacement measurement Linear dimensions Direct measurement method Strength at proof and maximum load of stirrup yokes Range: Force up to 3000 kN Deflection 0,5 m Force loading method with displacement measurement Linear dimensions Direct measurement method Strength at proof load of full-size bolts, nuts and hook bolts Range: Force up to 1000 kN Deflection 0,5 m Force loading method with displacement measurement | PN-G-15026:2017-04 DIN 21530-4:2003 p. 4.1.2.2.2 i/and 4.1.2.2.3 PN-EN ISO 898-1 PN-EN ISO 898-2 | ||
| 83 | Steel arch support clamps and joints | Direct measurement method Work characteristics Average sliding load capacity of the joint Range: - force up to 3000 kN - displacement up to 0,35 mm Force method with displacement measurement Direct measurement method Static bend test of the joint Range: - force up to 3000 kN - displacement up to 0,35 m Force method with displacement measurement Linear dimensions Direct measurement method Resistance to proof load and maximum load of the clamp joint Range: Force up to 3000 kN Deflection value 0,5 m Force method with displacement measurement Linear dimensions Direct measurement method Resistance to proof load of the full size bolts, nuts and hook bolts Range: Force up to 1000 kN Deflection value 0,5 m Force method with displacement measurement | PN-G-15026:2017-04 DIN 21530-4:2003 p. 4.1.2.2.2 i/and 4.1.2.2.3 PN-EN ISO 898-1 PN-EN ISO 898-2 | ||
| 84 | 矿用锚杆 Mining bolts/anchors, micropiles | Nośność żerdzi z elementam | Procedura BL-2/ZLGIG/PB-EK 01 edycja 3 z dnia 25.08.2023 r. Procedure BL-2/ZLGIG/PB-EK 01 3rd edition of 25 August 2023 | ||
| 85 | 矿用锚杆 Mining bolts/anchors, micropiles | fixing | |||
| 86 | 矿用锚杆 Mining bolts/anchors, micropiles | Range: force up to 5000 kN | |||
| 87 | Roadway support frames | Linear dimensions Range: - height of the support set up to 4,7 m - width of the support set up to 7,0 m Direct measurement method Maximum load capacity of the support set Range: - force up to 7500 kN Force loading method Working load capacity of the support set Range: - force up to 7500 kN Force loading method Initial load capacity of the support set Final load capacity of the support set Minimum load capacity of the support set Range: - force up to 7500 kN Force loading method Total reduction of the support set height Range: - height of the support set up to 4,7 m Direct measurement method Angle measurement Range 0÷90 Direct measurement Mass of the support set components Range: - up to 5000 kg Direct measurement method Number of slips Direct measurement method Length of slips in individual joints up to 5 m Direct measurement method Index of the maximum load capacity of the support set per unit mass k 1 Index of the working load capacity of the support set per unit mass k2 Degree of utilisation of the maximum load capacity of the support set k 3 | PN-G-15022:2018-11 | ||
| 88 | Gallery working support | Linear dimensions Range: - support height up to 4,7 m - support width up to 7,0 m Direct measurement method Maximum load capacity of the support Range: - force up to 7500 kN Force method Working load capacity of the support Range: - force up to 7500 kN Force method Initial bearing capacity of the support Final bearing capacity of the support Minimal bearing capacity of the support Range: - force up to 7500 kN Force method Complete reduction of the support height Range: - height support up to 4,7 m Direct measurement method Angle measurement Range 0÷90 Direct measurement Mass of support elements Range: - up to 5000 kg Direct measurement method Number of slides Direct measurement method Length of slides in every joint up to 5 m Direct measurement method Index of the maximum load capacity of the support per unit mass k 1 Index of the working load capacity of the support per unit mass k 2 Degree of utilization of the maximum load capacity of the support k 3 | PN-G-15022:2018-11 | ||
| 89 | Flexible rubber hoses | Linear dimensions Direct measurement method Test pressure resistance Range: - pressure up to 200 MPa Pressure loading method Burst pressure resistance Range: - pressure up to 200 MPa Pressure loading method | PN-EN ISO 4671:2008 p. 10 PN-EN ISO1402:2010 p. 8.1 | ||
| 90 | Delivery rubber hoses | Linear dimensions Direct measurement method Test pressure resistance Range: - pressure up to 200 MPa Pressure loading method Burst pressure resistance Range: - pressure up to 200 MPa Pressure loading method Length change under pressure Range: - pressure up to 200 MPa Pressure loading method | PN-EN ISO 4671:2008 p. 10 PN-EN ISO1402:2010 p. 8.1 | ||
| 91 | Hydraulic controls | Tightness under pressure Range: - up to 200 MPa Pressure loading method Valve opening and closing pressure Range: - up to 200 MPa Pressure loading method Pressure resistance Range: - up to 200 MPa Pressure loading method Pressure impulse resistance Range: - up to 300 MPa Pressure loading method Fatigue strength Range: - up to 70 MPa Pressure loading method Capacity Range: - up to 80 l/min Flow measurement method | PN-EN 1804-3:2021-06 (załącznik normatywny A) / (normative annex A) | ||
| 92 | Support bases | Linear dimensions Direct measurement method Test load: Range – force up to 3000 kN Force method | PN-G-15023:2019-03 | ||
| 93 | Welded cladding meshes | Linear dimensions Direct measurement method Mesh load capacity Range: - loading force up to 270 kN - mesh working load up to 2,0 m Force method with displacement measurement Tensile strength of the wire Range: - loading force up to 50 kN - rod diameter up to 10 mm Force method Shear strength of the weld Range: - loading force up to 50 kN Force method | PN-G-15050:2018-01 | ||
| 94 | Belt conveyors rollers length up to 2100 mm and diameter up to 245 mm | Linear dimensions Direct measurement method Radial runout [mm] Shape and position complex tolerance measurement method Static rotation resistance Range: - up to 30 Nm Force method Dynamic rotation resistance Range: - up to 200 N Force method | BL-2/ZLGIG/PB-KR | PN-M-46606:2010 Procedure BL-2/ZLGIG/PB-KR 01 3rd edition of 25 August 2023 PN-M-46606:2010 | ||
| 95 | Thermoplastic pipes with inner diameter from 1200 up to 4000 mm | Determination of ring stiffness Force method | PN-EN 9969:2016 | ||
| 96 | Elastomeric bearings with size up to 200x300 mm | Shear modulus test method Force method Shear bond test method Force method Compressive stiffness Force method | PN-EN 1337-3:2010 załączniki/ annexes F | ||
| 97 | Hydraulic plugs and connectors | Geometric dimensions Range: up to 150 mm Direct measurement method Burst pressure Range: up to 2500 bar Pressure loading method | PN-G-32000:2011 | ||
| 98 | 岩石与石材 Rocks and stone materials | Energetic indicator of the natural tendency to rock bumps (0,2 – 20) Energy method | Procedura BL-2/ZLGIG/PB-GG-02 edycja 2 z dnia 25.08.2023 r. Procedure BL-2/ZLGIG/PB-GG-02 2nd edition of 25 August 2023 | ||
| 99 | 岩石与石材 Rocks and stone materials | Total porosity | PN-EN 1936:2010 | ||
| 100 | 岩石与石材 Rocks and stone materials | Sample moisture Weight method | PN-88/B-04481 | ||
| 101 | 岩石与石材 Rocks and stone materials | Compressive strength in the force range (25 – 1000) kN Residual strength in the force range (25 – 1000) kN Index of the potential elastic energy in the force range (25 – 1000) kN Drop modulus in the force range (25 – 1000) kN Critical and residual deformation (0,1 – 100) mm | BL-2/ZLGIG/PB-GG-01 | PN-G-04303:1997 PN-EN 1926:2007 Procedure BL-2/ZLGIG/PB-GG-01 2nd edition of 25 August 2023 PN-G-04303:1997 PN-EN 1926:2007 | ||
| 102 | 岩石与石材 Rocks and stone materials | Tensile strength in the force range (25 – 1000) kN Brazilian method | PN-G-04302:1997 | ||
| 103 | 岩石与石材 Rocks and stone materials | Shear strength in the force range (25 – 1000) kN Simple shear method | PN-G-04304:1997+Az1:1999 | ||
| 104 | 岩石与石材 Rocks and stone materials | Bulk density Weight-volume method | PN-EN 1936:2010 | ||
| 105 | 岩石与石材 Rocks and stone materials | Specific density Le Chatelier's flask method | PN-EN 1936:2010 | ||
| 106 | 岩石与石材 Rocks and stone materials | Bending strength in the force range (25 – 1000) kN | PN-G-04305:1997 PN-EN 12372:2010 | ||
| 107 | 岩石与石材 Rocks and stone materials | Young's modulus in the force range (25 – 1000) kN | Procedura BL-2/ZLGIG/PB-GG-03 edycja 3 z dnia 05.11.2025 r. Procedure BL-2/ZLGIG/PB-GG-03 3nd edition of 05 November 2025 | ||
| 108 | 岩石与石材 Rocks and stone materials | Water absorption Weight method | PN-EN 13755:2008+AC:2004 | ||
| 109 | Rocks concise | Conversibility Qualitative methods: Skutta and GIG | Procedura BL-2/ZLGIG/PB-GG-04 edycja 2 z dnia 25.08.2023 r. Procedure BL-2/ZLGIG/PB-GG-04 2nd edition of 25 August 2023 | ||
| 110 | 混凝土 Concrete | Water absorption Weight method | PN-EN 13755:2008+AC:2004 | ||
| 111 | 混凝土 Concrete | Compressive strength in the force range (25 – 1000) kN | PN-EN 12390-3:2011 | ||
| 112 | Organic and organo-mineral resins | Compressive strength and the relative deformation in the force range (25 – 1000) kN | PN-C-89071:1993 | ||
| 113 | 固体燃料:烟煤 | Susceptibility of coal to spontaneous combustion Range: (1 – 250) ºC/min Olpinski method | PN-G-04558:1993 | ||
| 114 | 固体燃料:烟煤 | Transient moisture content Range: (0,1 – 20,0) % Weight method | PN-G-04511:1980 | ||
| 115 | 固体燃料:烟煤 | Moisture content in analytical sample Range: (0,1 – 20,0) % Weight method | PN-G-04511:1980 punkt 2.4.1 | ||
| 116 | 固体燃料:烟煤 | Ash content Range: (0,1 – 30,0) % Weight method | Procedura BD-3/ZLGIG/PB-PO.03 edycja 2 z dnia 25.08.2023 r. Procedure BD-3/ZLGIG/PB-PO.03 2nd edition of 25 August 2023 | ||
| 117 | 一般环境 气体样品 General environment Gas samples | Concentration of carbon monoxide Range: (1 – 10000) ppm Gas chromatography method with flame ionization detection (GC-FID) | Procedura BD-3/ZLGIG/PB-CO.04 edycja 3 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-CO.04 3rd edition of 6 November 2023 | ||
| 118 | 一般环境 气体样品 General environment Gas samples | Concentration of carbon monoxide Range: (70 – 10000) ppm Gas chromatography method with thermal conductivity detector GC-TCD) | Procedura BD-3/ZLGIG/PB-CO.04 edycja 3 z dnia 06.11.2023 r. . Procedure BD-3/ZLGIG/PB-CO.04 3rd edition of 6 November 2023 | ||
| 119 | 一般环境 气体样品 General environment Gas samples | Concentration of oxygen, nitrogen, carbon dioxide, methane, carbon monoxide, ethane, ethylene Range: oxygen (0,05 – 22) % nitrogen (4 – 100) % carbon dioxide (0,05 – 50) % methane (0,05 – 100) % carbon monoxide (0,1 – 5) % hydrogen (1 – 4) % Gas chromatography method with thermal conductivity detector (GC-TCD) | Procedura BD-3/ZLGIG/PB-TL.05 edycja 4 z dnia 23.11.2023 r. Procedure BD-3/ZLGIG/PB-TL.05 4th edition of 23 November 2023 | ||
| 120 | 一般环境 气体样品 General environment Gas samples | Concentration of hydrogen Range: (0,5 – 10000) ppm Gas chromatography method with thermal conductivity detector (GC-TCD) | Procedura BD-3/ZLGIG/PB-WO.06 edycja 4 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-WO.06 4th edition of 6 November 2023 | ||
| 121 | 一般环境 气体样品 General environment Gas samples | Concentration of unsaturated hydrocarbons: acetylene and ethylene Range: acetylene (0,001 – 3) ppm ethylene (0,01 – 3) ppm Gas chromatography method with flame ionization detection (GC-FID) | Procedura BD-3/ZLGIG/PB-AE.07 edycja 3 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-AE.07 3rd edition of 6 November 2023 | ||
| 122 | 一般环境 气体样品 General environment Gas samples | Concentration of hydrocarbons: ethane, ethylene, propane, propylene, acetylene Range: ethane (0,01 – 10000) ppm ethylene (0,01 – 150) ppm propane (0,01 – 3000) ppm propylene (0,01 – 100) ppm acetylene (3 – 50) ppm Gas chromatography method with flame ionization detection (GC-FID) | Procedura BD-3/ZLGIG/PB-WN.08 edycja 4 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-WN.08 4th edition of 6 November 2023 | ||
| 123 | Solid fuels: Hard coal | Specific surface area Range: (0,01 – 1000) m2/g Gas sorption method | PN-ISO 9277:2000 | ||
| 124 | 一般环境 | A 计权等效声级, | Załącznik nr 3 do Rozporządzenia | ||
| 125 | − hałas pochodzący od dróg, | A-weighted sound exposure level; | Ministra Środowiska z dnia | ||
| 126 | of railway lines, tram lines | 范围:(24 – 130) dB | 16.06.2011 r. (Dz.U.nr 140, poz. 824 | ||
| 127 | 一般环境 / General environment | 直接测量法 | i nr 288, poz. 1697) | ||
| 128 | 一般环境 / General environment | 计算法 | Annex No. 3 to the Regulation of the | ||
| 129 | – noise from roads, railways, | Equivalent sound level A, | |||
| 130 | 有轨电车线路 / tramlines | Exposure sound level A; | 2011 | ||
| 131 | 有轨电车线路 / tramlines | Range: (24 – 130) dB | (Journal of Laws No. 140, item 824 | ||
| 132 | 有轨电车线路 / tramlines | 直接测量法 / Direct measurement method | and No. 288, item 1697) | ||
| 133 | 有轨电车线路 / tramlines | Calculation method | |||
| 134 | 有轨电车线路 / tramlines | 以 LAeqD 与 LAeqN 指标表示的参考时段 T 内的 A 计权等效声级 | |||
| 135 | 有轨电车线路 / tramlines | (计算得出) | |||
| 136 | 有轨电车线路 / tramlines | Equivalent A-weighted sound level for | |||
| 137 | 有轨电车线路 / tramlines | the reference time T expressed by the | |||
| 138 | 有轨电车线路 / tramlines | indicators L and L (from AeqD AeqN | |||
| 139 | 有轨电车线路 / tramlines | calculations) | |||
| 140 | 一般环境 | A 计权等效声级 | PN-ISO 10847:2002 | ||
| 141 | − noise barriers „in situ” | 范围:(24 – 130) dB | |||
| 142 | 一般环境 / General environment | 直接测量法 | |||
| 143 | 一般环境 / General environment | Equivalent sound level A | |||
| 144 | - 声屏障「现场」/ noise barriers ”in situ” | Range: (24 – 130) dB | |||
| 145 | - 声屏障「现场」/ noise barriers ”in situ” | 直接测量法 / Direct measurement method | |||
| 146 | - 声屏障「现场」/ noise barriers ”in situ” | Efficiency of screens | |||
| 147 | - 声屏障「现场」/ noise barriers ”in situ” | (计算得出) | |||
| 148 | - 声屏障「现场」/ noise barriers ”in situ” | Screening effectiveness | |||
| 149 | - 声屏障「现场」/ noise barriers ”in situ” | (calculated) | |||
| 150 | 机器与设备 – 噪声 | A-frequency-weighted sound pressure level | PN-EN ISO 3744:2011 | ||
| 151 | 机器与设备 - 噪声 / Machinery and equipment – noise | A-weighted single event sound pressure level | |||
| 152 | 机器与设备 - 噪声 / Machinery and equipment – noise | 范围:(24 – 130) dB | |||
| 153 | 机器与设备 - 噪声 / Machinery and equipment – noise | 直接测量法 | |||
| 154 | 机器与设备 - 噪声 / Machinery and equipment – noise | 工程法 | |||
| 155 | 机器与设备 - 噪声 / Machinery and equipment – noise | 定向法 | |||
| 156 | 机器与设备 - 噪声 / Machinery and equipment – noise | Sound pressure level corrected by A- frequency weighting Single event sound pressure level corrected by A-frequency weighting Range: (24 – 130) dB Direct measurement method Technical method | |||
| 157 | 机器与设备 - 噪声 / Machinery and equipment – noise | Indicative method | |||
| 158 | 机器与设备 - 噪声 / Machinery and equipment – noise | Sound power level | |||
| 159 | 机器与设备 - 噪声 / Machinery and equipment – noise | Sound energy level | |||
| 160 | 机器与设备 - 噪声 / Machinery and equipment – noise | (计算得出) | |||
| 161 | 机器与设备 - 噪声 / Machinery and equipment – noise | Sound power level | |||
| 162 | 机器与设备 - 噪声 / Machinery and equipment – noise | Sound energy level | |||
| 163 | 机器与设备 - 噪声 / Machinery and equipment – noise | (calculated) | |||
| 164 | 输送带 | Surface resistance Resistance value from 1x103 Ω to 1x1012 Ω | PN-EN ISO 284:2013 | ||
| 165 | 输送带 / Conveyor belts | Voltage value up to 600 V | |||
| 166 | 输送带 / Conveyor belts | Surface resistance Resistance value from 1x103 Ω to 1x1012 Ω | |||
| 167 | 输送带 / Conveyor belts | Voltage value up to 600 V | |||
| 168 | Materials, products and equipment | Surface resistance Resistance value from 1x103 Ω to 1x1012 Ω Surface resistivity from calculation | PN-EN 61340-2-3:2016 IEC 61340-4-10:2012 PN-EN IEC 60079-0:2018-09 PN-E-05203:1992 PN-EN 60079-32-2:2015-08 | ||
| 169 | 与装备 / and equipment | Cross resistance Resistance value from 1x103 Ω to 1x1012 Ω Cross resistivity from calculation (thickness range: 0,01-30 mm) | PN-EN 61340-2-3:2016 PN-E-05203:1992 PN-EN 60079-32-2:2015-08 | ||
| 170 | 与装备 / and equipment | Resistance to earth grounding element Resistance value from 1·103 Ω to 1·1012 Ω | PN-EN 61340-2-3:2016 PN-E-05203:1992 PN-EN 60079-32-2:2015-08 | ||
| 171 | 与装备 / and equipment | Point-to-point resistance Resistance value from 1x103 Ω to 1x1012 Ω | PN-EN 61340-2-3:2016 IEC 61340-4-10:2012 PN-E-05203:1992 PN-EN 60079-32-2:2015-08 | ||
| 172 | 与装备 / and equipment | Electrification capability | PN-EN ISO 80079-36:2016-07 | ||
| 173 | Układ obuwie i podłoga z udziałem | Resistance of the system | PN-EN IEC 61340-4-5:2018-09 | ||
| 174 | human | Resistance value | |||
| 175 | Footwear and flooring system | from 1x103 Ω to 1x1012 Ω | |||
| 176 | Footwear and flooring system | Resistance of the circuit | |||
| 177 | involving a human being | Resistance value | |||
| 178 | involving a human being | from 1x103 Ω to 1x1012 Ω | |||
| 179 | Floor coverings and ready-made floors | Point-to-point resistance Vertical resistance (laboratory tests only) Resistance to earth Resistance value from 1x103 Ω to 1x1012 Ω | PN-EN 61340-4-1:2006 | ||
| 180 | Hoses and cables of rubber and plastics | Electrical resistance Resistance value from 1x103 to 1x1012 Ω Electric resistance Resistance value from 1x103 Ω to 1x1012 Ω | PN-EN ISO 8031:2021-01 | ||
| 181 | 防护服、手套、鞋 Protective clothing, gloves, footwear | Surface resistance Resistance value from 1x103 Ω to 1x1012 Ω Surface resistivity from calculation | PN-EN 1149-1:2008 | ||
| 182 | 防护服、手套、鞋 Protective clothing, gloves, footwear | Cross resistance Resistance value from 1x103 Ω to 1x1012 Ω | PN-EN 1149-2:1999 PN-EN 16350:2014-08 | ||
| 183 | 防护服、手套、鞋 Protective clothing, gloves, footwear | Electrical resistance Resistance value from 1x103 to 1x1012 Ω Electric resistance Resistance value from 1x103 Ω to 1x1012 Ω | PN-EN IEC 61340-4-3:2018-04 | ||
| 184 | 防护服、手套、鞋 Protective clothing, gloves, footwear | Point-to-point resistance Resistance value from 1x103 Ω to 1x1012 Ω | PN-EN 61340-4-9:2016-11 | ||
| 185 | Metal materials, products and equipment | Electric resistance Resistance value from 1x10-6 Ω to 1x101 Ω | PN-EN 50540:2010 | ||
| 186 | 工作环境 - 空气 Working environment - air | Air sampling for workplace exposure assessment to - industrial dust - inhalable fraction - respirable fraction Personal sampling method | PN-Z-04008-7:2002 PN-Z-04008-7/Az1:2004 PN-G-04035:2002+Az1:2005 | ||
| 187 | 工作环境 - 空气 Working environment - air | Occupational exposure factor (calculated) | |||
| 188 | 工作环境 - 空气 Working environment - air | Dust concentration - inhalable fraction Dust concentration - respirable fraction Range: (0,1 – 300) mg/m3 Gravimetric method | Procedura KD-2.2/ZLGIG/PB-2207 edycja 4 z 25.08.2023 r. Procedura KD-2.2/ZLGIG/PB-2208 edycja 4 z 25.08.2023 r. Procedura KD-2.2/ZLGIG/PB-2209 edycja 3 z 25.08.2023 r. Procedura KD-2.2/ZLGIG/PB-2210 edycja 6 z 25.08.2023 r. Procedure KD-2.2/ZLGIG/PB-2207 4th edition of 25 August 2023 Procedure KD-2.2/ZLGIG/PB-2208 4th edition of 25 August 2023 Procedure KD-2.2/ZLGIG/PB-2209 3rd edition of 25 August 2023 Procedure KD-2.2/ZLGIG/PB-2210 6th edition of 25 August 2023 | ||
| 189 | Working environment - air samples collected on membrane filter | Contents of respirable synthetic mineral fibres and ceramic fibres Range: (0,5 – 200) fibres per 100 of graticule ereas examined Phase Contrast Microscopy (PCM) | Procedura KD-2.2/ZLGIG/PB-2205-1 edycja 4 z 25.08.2023 r. Procedure KD-2.2/ZLGIG/PB-2205-1 4th edition of 25 August 2023 | ||
| 190 | Working environment - air samples collected on membrane filter | Contents of respirable asbestos fibres Range: (0,5 – 200) fibres per 100 of graticule ereas examined Phase Contrast Microscopy (PCM) Polarized Light Microscopy (PLM) | Procedura KD-2.2/ZLGIG/PB-2205-2 edycja 3 z 25.08.2023 r. Procedure KD-2.2/ZLGIG/PB-2205-2 3rd edition of 25 August 2023 | ||
| 191 | 固体燃料:烟煤 | Ash content Range: (1,00 – 58,00)% Weight method | PN-ISO 1171:2002 | ||
| 192 | 固体燃料:烟煤 | Transient moisture content Range: (0,00 – 15,00)% Weight method | PN-G-04511:1980 | ||
| 193 | 固体燃料:烟煤 | Moisture content in air-dry state (hygroscopic moisture) Range: (0,10 – 20,00)% Weight method | PN-G-04511:1980 punkt 2.2.1 | ||
| 194 | 光纤复合架空地线 Optical ground wire | Tensile performance test of the optical medium during conductor stretching Force method Range: force (0 – 5000) kN | PN-EN 60794-1-21:2015-07 p. 3 metoda E1/method E1 | ||
| 195 | 光纤复合架空地线 Optical ground wire | Stress-strain test of the conductor under tensile load Force method Range: force (0 – 5000) kN elongation (0 – 2000) mm | PN-EN 50182:2002 p. 6.4.7 i/and Aneks C/Annex C PN-IEC 1089:1994/A1:2000 – Aneks B/Annex B | ||
| 196 | 光纤复合架空地线 Optical ground wire | Breaking strength test Tensile test Range: force (0 – 5000) kN | EN 60794-4-10:2015-03 p. 8.3.4 PN-EN 50182:2002 p. 6.4.8 | ||
| 197 | 光纤复合架空地线 Optical ground wire | Water penetration test Hydrostatic test | PN-EN 60794-1-22:2018-04 p. 5 Metoda/method F5B | ||
| 198 | 绞合导线 Stranded conductors | Conductor creep test Force loading method Range: creep force (0 – 100) kN conductor diameter (< 40 mm) Creep test Force method Range: creep force (0 – 100) kN conductor diameter (< 40 mm) | PN-EN 61395:2002 | ||
| 199 | 绞合导线 Stranded conductors | Drop point of grease Range: Temperature (0 – 288) °C | PN-EN 50326:2003 PN-ISO 2176:2011 | ||
| 200 | 绞合导线 Stranded conductors | Tensile force Range: (0 – 5000) kN Tensile test Tensile force Range: (0 – 5000) kN Tensile test | PN-IEC 1089:1994 p. 6.5.3 PN-EN 50182:2002 p. 6.4.8 + Zał. C/ annex C IEC 62420:2008 p. 6.2.5 + Zał. B/ annex B PN-IEC 1089:1994 p. 6.6.4 PN-IEC 1089:1994 Zał. NA/annex NA p. 10.1 PN-IEC 1089:1994 Zał. NB/annex NB p. 10.2 PN-IEC 1089:1994 Zał. NC/annex NC p. 10 | ||
| 201 | 绞合导线 Stranded conductors | 伸长 范围:(0 – 2000) mm 直接测量法 Elongation Range: (0 – 2000) mm Direct measurement method | PN-EN 50182:2002 p. 6.4.7 + Zał. C/ annex C IEC 62420:2008 Zał. B/annex B | ||
| 202 | 绞合导线 Stranded conductors | Diameter Range: (0 – 200) mm Direct measurement method Diameter Range: (0 – 200) mm Direct measurement method | PN-IEC 1089:1994 p. 6.6.2 PN-EN 50182:2002 p. 6.4.2 PN-EN 50540:2010 p. 6.4.2 PN-IEC 1089:1994 Zał. NA/annex NA p. 5 PN-IEC 1089:1994 Zał. NB/annex NB p. 5 PN-IEC 1089:1994 Zał. NC/annex NC p. 5 | ||
| 203 | 绞合导线 Stranded conductors | Lay ratio Range: (6 – 26) Direct measurement method Lay ratio Range: (6 – 26) Direct measurement method | PN-IEC 1089:1994 p. 6.6.6 PN-EN 50182:2002 p. 6.4.4 PN-EN 50540:2010 p. 6.4.4 PN-EN 62219:2003 p. 6.6.6 PN-EN 62420:2008 p. 6.3.5 | ||
| 204 | 绞合导线 Stranded conductors | Lay direction Visual examination method | PN-IEC 1089:1994 p. 6.6.6 PN-EN 50182:2002 p. 6.4.4 PN-EN 50540:2010 p. 6.4.4 PN-EN 62219:2003 p. 6.6.6 PN-EN 62420:2008 p. 6.3.5 | ||
| 205 | 绞合导线 Stranded conductors | Inertness Visual examination method | PN-EN 50182:2002 p. 6.4.3 PN-EN 50540:2010 p. 6.4.3 | ||
| 206 | 绞合导线 Stranded conductors | Number and type of wires Visual examination method | PN-EN 50182:2002 p. 6.4.5 PN-EN 50540:2010 p. 6.4.5 | ||
| 207 | 绞合导线 Stranded conductors | Surface condition Visual examination method | PN-IEC 1089:1994 p. 6.6.5 PN-EN 50182:2002 p. 6.4.1 PN-EN 50540:2010 p. 6.4.1 PN-EN 62219:2003 p. 6.6.5 PN-EN 62420:2008 p. 6.3.4 | ||
| 208 | 绞合导线 Stranded conductors | Mass per unit length Mass of grease Range: (0 – 50) kg/m Direct measurement method | PN-IEC 1089:1994 p. 6.6.3+Zał. C/ annex C PN-EN 50182:2002 p. 6.4.6+Zał. B/ annex B PN-EN 50540:2010 p. 6.4.7 PN-EN 62219:2003 p. 6.6.3+Zał. C/ annex C PN-EN 62420:2008 p. 6.3.3+Zał. C/ annex C | ||
| 209 | 绞合导线 Stranded conductors | Cross-sectional area Direct measurement method Cross-sectional area Direct measurement method | PN-IEC 1089:1994 p. 6.6.1 PN-EN 50540:2010 p. 6.4.6 PN-EN 62219:2003 p. 6.6.1 PN-EN 62420:2008 p. 6.3.1 | ||
| 210 | 绞合导线 Stranded conductors | Slippage factor Slippage test Slippage factor Slippage test | PN-EN 50397-1:2021-04 Zał. C / annex C | ||
| 211 | 绞合导线 Stranded conductors | Determination of conductor self- damping Vibration method Range: (0 – 2000) Hz | PN-EN 62567:2014-04 p. 8.2 PN-EN 62567:2014-04 p. 8.3 | ||
| 212 | 间隔棒 Spacers | Visual examination Visual examination method | PN-EN IEC 61854:2020-11 p 7.1 | ||
| 213 | 间隔棒 Spacers | Verification of dimensions, materials and mass Direct measurement method Range: dimensions (0 – 2000) mm mass (0 – 60) kg | PN-EN IEC 61854:2020-11 p. 7.2 | ||
| 214 | 间隔棒 Spacers | Zinc coating inspection Direct measurement method Range: coating thickness (0 – 500) µm | PN-EN IEC 61854:2020-11 p. 7.3.1 PN-EN ISO 1461:2011 tab./tables 3 i/and 4 | ||
| 215 | 间隔棒 Spacers | Clamp slip test Range: slip force (0 – 50) kN | PN-EN IEC 61854:2020-11 p. 7.5.1 | ||
| 216 | 间隔棒 Spacers | Clamp bolt tightening test Range: torque (0 – 340) Nm | PN-EN IEC 61854:2020-11 p. 7.5.2 | ||
| 217 | 间隔棒 Spacers | Compression and tension tests Force method Range: force (0 – 5000) kN | PN-EN IEC 61854:2020-11 p. 7.5.3 | ||
| 218 | 间隔棒 Spacers | Flexibility tests Direct measurement method Range: linear displacement (0 – 300) mm angular displacement (0 – 360) º | PN-EN IEC 61854:2020-11 p. 7.5.5 | ||
| 219 | 间隔棒 Spacers | Stiffness method Range: (0 – 10) kN Force loading method | PN-EN IEC 61854:2020-11 p. 7.5.4. b) | ||
| 220 | 间隔棒 Spacers | Damping method Direct measurement method Calculation method | PN-EN IEC 61854:2020-11 p. 7.5.4. c) | ||
| 221 | 钢丝 Steel wires | Stress at 1% extension Force loading method Range: force (0 – 300) kN Stress at 1% extension Force method Range: force (0 – 300) kN | PN-EN IEC 63248:2022-12 p. 7.4.3 | ||
| 222 | 钢丝 Steel wires | Weight of zinc coating Gaseous volumetric method | PN-EN 10244-2:2010 p. 5.2.3 | ||
| 223 | 钢丝 Steel wires | Uniformity of zinc coating Visual examination Dipping test | PN-EN 10244-2:2010 p. 5.3 | ||
| 224 | 钢丝 Wires | Diameter Range: (0 – 200) mm Direct measurement method Diameter Range: (0 – 200) mm Direct measurement method | PN-EN IEC 62641:2022-12 p. 6.4.2 PN-EN IEC 63248:2022-12 p. 7.4.2 PN-EN IEC 62641:2022-12 p. 6.4.1 | ||
| 225 | 钢丝 Wires | Tensile force Range: (0 – 100) kN Tensile test Tensile force Range: (0 – 100) kN Tensile test | PN-EN IEC 62641:2022-12 p. 6.4.3 PN-EN IEC 63248:2022-12 p. 7.4.3 CEI IEC 62219:2002 p. 6.6.4 | ||
| 226 | 钢丝 Wires | 伸长 范围:(0 – 2000) mm 直接测量法 Elongation Range: (0 – 2000) mm Direct measurement method | PN-EN IEC 62641:2022-12 p. 6.4.4 | ||
| 227 | 钢丝 Wires | Ability for wrapping Wrapping test Ability for wrapping Wrapping test | PN-EN 50182:2002 p. 6.5.2 PN-EN IEC 62641:2022-12 p. 6.4.5 | ||
| 228 | Plastic piping systems and components | Determination of dimensions: - wall thickness: pipes (0 – 100) mm other components (0 – 400) mm - outer diameter up to 1200 mm - inner diameter up to 1000 mm - holes’ dimensions (3 – 400) mm - roundness deviation - length - components’ angles | PN-EN ISO 3126:2006 | ||
| 229 | Plastic pipes, films and sheets | Longitudinal reversion Determination of dimensional change on heating | PN-EN ISO 2505:2024-04 PN-EN ISO 11501:2005 | ||
| 230 | Plastic pipes, pipe fittings and other plastic products (pipe fittings of diameter smaller than Ø 400 mm, other products without restrictions) | Methods for visually assessing the effects of heating | PN-EN ISO 580:2006 PN-ISO 12091:2009 | ||
| 231 | 塑料 Plastics | Water absorption Gravimetric method Determination of water absorption Weight method | PN-EN ISO 62:2008 | ||
| 232 | Unplasticized poly(vinyl chloride) (PVC-U) pipes | Dichloromethane resistance at specified temperature (DCMT) | PN-EN ISO 9852:2017-11 | ||
| 233 | 热塑性塑料 Thermoplastics | Vicat softening temperature (VST) Temperature range: (50 – 250) ºC | PN-EN 727:1998 PN-EN ISO 2507-1:2017-11 PN-EN ISO 2507-2:2017-12 PN-EN ISO 2507-3:2017-12 PN-EN ISO 306:2023-05 | ||
| 234 | Thermoplastics and thermosets | Determination of temperature of deflection under load (HDT) Temperature range: (50 – 250) ºC Heating at a constant rate | PN-EN ISO 75-1:2020-09 PN-EN ISO 75-2:2013-06 PN-EN ISO 75-3:2005 | ||
| 235 | 输送带及其他层积材料(厚度至 40 mm 的材料) Textile conveyor belts and other laminates (materials of thickness up to 40 mm) | Tensile strength Maximum load 300 kN Tensile test | PN-EN ISO 283:2023-10 | ||
| 236 | 输送带及其他层积材料(厚度至 40 mm 的材料) Textile conveyor belts and other laminates (materials of thickness up to 40 mm) | Elongation at break Range: up to 500% Tensile test | |||
| 237 | 输送带及其他层积材料(厚度至 40 mm 的材料) Textile conveyor belts and other laminates (materials of thickness up to 40 mm) | Elongation at the reference force (load) equal to 10 % of the nominal strength Range up to 100% Tensile test | |||
| 238 | 输送带及其他层积材料(厚度至 40 mm 的材料) Textile conveyor belts and other laminates (materials of thickness up to 40 mm) | Adhesive strength Maximum load 300 kN Delamination test | PN-EN ISO 252:2023-09 | ||
| 239 | Thermoplastics products | The bending angle of products with welded joints Range up to 160 º Bending test | PN-EN 12814-1:2002+AC:2004 PN-EN 12814-8:2021-07 | ||
| 240 | Thermoplastics products | Tensile strength of products with fusion-welded or resistance-welded joints Maximum load 300 kN Tensile test | PN-EN 12814-2:2021-06 PN-EN 12814-8:2021-07 | ||
| 241 | Plastics, polymer composites, rubber (vulcanized or thermoplastic), plastic pipes | Tensile strength and strain at break Maximum load 300 kN, elongation up to 800% Tensile test | PN-EN ISO 527-1:2020-01 PN-EN ISO 527-2:2012 PN-EN ISO 527-3:2019-01 PN-EN ISO 527-4:2023-10 PN-EN ISO 527-5:2022-06 PN-ISO 37:2007+AC1:2008 PN-EN ISO 6259-1:2015-05 PN-EN ISO 6259-3:2015-08 | ||
| 242 | Plastics, polymer composites, rubber (vulcanized or thermoplastic), plastic pipes | Modulus of elasticity under tension Maximum load 300 kN Tensile test | |||
| 243 | 塑料、聚合物复合材料 Plastics, polymer composites | Flexural strength Maximum load 300 kN Bending test | PN-EN ISO 178:2019-06 PN-EN ISO 14125:2001+AC:2003+ A1:2011 | ||
| 244 | 塑料、聚合物复合材料 Plastics, polymer composites | Modulus of elasticity in flexure Maximum load 300 kN Bending test | |||
| 245 | Plastics, polymer composites, rubber, caoutchouc | Compressive strength Maximum load 300 kN Compression test | PN-EN ISO 3386-1:2000+A1:2010 PN-EN ISO 3386-2:2001+A1:2010 PN-ISO 5893:2015-12 PN-EN 12390-3:2019-07 PN-93/C-89071 PN-EN ISO 604:2006 | ||
| 246 | Plastic pipes (pipes of outer diameter up to Ø = 630 mm) | Resistance to external blows Falling weight method Weight of the weight up to 8 kg Drop height up to 3 m | PN-EN 744:1997 PN-EN ISO 3127:2017-12 | ||
| 247 | Plastic pipes (pipes of outer diameter up to Ø = 630 mm) | Resistance to external blows Staircase method Weight of the weight up to 8 kg Drop height up to 3 m | PN-EN ISO 11173:2017-12 | ||
| 248 | Plastic pipes and pipe fittings (pipes of outer diameter up to Ø 950 mm) | Ring stiffness Maximum load 300 kN Compression test | PN-EN ISO 9969:2016-02 PN-EN 1228:1999 PN-EN ISO 13967:2011 | ||
| 249 | Plastic pipes and pipe fittings (pipes of outer diameter up to Ø 950 mm) | Ring flexibility Maximum load 300 kN Compression test | PN-EN ISO 13968:2009 | ||
| 250 | 热塑性塑料 Thermoplastics | Determination of the melt mass-flow rate (MFR) and melt volume-flow rate (MVR) of thermoplastics Range: (0,1 – 75) g/10 min Standard method | PN-EN ISO 1133-1:2022-12 | ||
| 251 | 塑料、聚合物复合材料 Plastics, polymer composites | Determination of Charpy impact properties Range: impact energy up to 50 J Impact test | PN-EN ISO 179-1:2010 PN-EN ISO 179-1:2023-11 | ||
| 252 | 塑料、聚合物复合材料 Plastics, polymer composites | Tensile-impact strength Range: impact energy up to 50 J Impact test | PN-EN ISO 8256:2024-06 | ||
| 253 | Thermoplastics pipes, fittings and assemblies with closed sections | Resistance to internal pressure Range: - max pressure 6 MPa for diameters up to Ø 400 mm, - max pressure 0,5 MPa no restriction on diameter Pressure test | PN-EN ISO 1167-1:2007 PN-EN ISO 1167-2:2007 PN-EN ISO 1167-3:2008 PN-EN ISO 1167-4:2008 | ||
| 254 | Plastic pipes (Ø 160 mm – 800mm) | Creep ratio Range: amount of deformation make 50 mm Creep test | PN-EN ISO 9967:2016-02 PN-EN 761:2001 | ||
| 255 | Plastic pipes | Resistance to combined temperature cycling and external loading Diameter range: (90÷510) mm Cyclic temperature changes | PN-EN ISO 13260:2012+A1:2017-11 | ||
| 256 | Plastic pipes (pipes of diameter Ø =160 mm, 200 mm and 315 mm) | Abrasion resistance Range: up to 10 mm Abrasion test | PN-EN 295-3:2012 | ||
| 257 | Non-porous plastics | Density Range: (0,5 – 3) g/cm3 Weight method | PN-EN ISO 1183-1:2019-05 | ||
| 258 | Plastics and rubber | Hardness Range: (0 – 98) ShA Shore hardness | PN-80/C-04238 PN-EN ISO 868:2005 | ||
| 259 | Rubber | Hardness Range: (20 – 80) ShA Shore hardness | ISO 7619-1:2010 | ||
| 260 | Plastic pipes and fittings System of multilayered pipes and fittings | Resistance to temperature cycling Temperature range up to 95 ºC | PN-EN 12293:2002 PN-EN ISO 19893:2018-10 | ||
| 261 | Conveyor belts and glued joints of conveyor belts | Burning and glowing time Flame method | PN-93/C-05013 p. 2.1 PN-98/C-05019 p. 3.1 PN-EN ISO 340:2013-07 PN-EN ISO 340:2022-12 | ||
| 262 | Non-metallic materials | Burning time Flame method Time of applying the flame 10 s (in accordance with PN-EN ISO/IEC 80079-38:2017-02 p. 6.2) | PN-EN ISO 340:2013-07 PN-EN ISO 340:2022-12 | ||
| 263 | Solid and porous non-metallic materials with an apparent density of ≥ 250 kg/m3 | Linear burning rate Method A: horizontal burning test, burning / glowing time after removing the flame (time of further burning / further glowing) Method B: vertical burning test | PN-EN 60695-11-10:2014-02 | ||
| 264 | Thin pliable plastics with a thickness of ≤ 5,5 mm | Flame / residual glow time Vertical burning method | PN-EN ISO 9773:2003+A1:2005 | ||
| 265 | Plastics for machine elements, paints, coatings, including paint coatings, adhesives, resins and organic binders, adhesive resin loads and finished products | Burning and glowing time Flame method | BL-6/ZLGIG/PB-3 edycja 3 z dnia 04.09.2023 r. BL-6/ZLGIG/PB-3 3rd edition of 4 September 2023 | ||
| 266 | Non-metallic foamed materials with an apparent density of <250 kg/m3 | Burning time Flame method | BL-6/ZLGIG/PB-5 edycja 2 z dnia 25.08.2023 r. BL-6/ZLGIG/PB-5 2nd edition of 25 August 2023 | ||
| 267 | 塑料 Plastics | Oxidation induction time and temperature (OIT) Differential Scanning Calorimetry method (DSC) | PN-EN ISO 11357-6:2018-04 | ||
| 268 | 塑料 Plastics | Oxygen index | PN-EN ISO 4589-2:2017-06 | ||
| 269 | Conveyor belts | Length of the unburned section Model adit method | PN-93/C-05013 p. 2.4 | ||
| 270 | Conveyor belts | Highest friction drum temperature and presence of flame and glow Friction method Highest friction drum temperature and presence of flame and heat Friction method | PN-EN ISO 20238:2019-05 | ||
| 271 | Non-metallic materials (sample sizes up to 200 mg) | Loss of weight The rate of weight loss Temperatures of physico-chemical transformations Thermal effects of physico-chemical transformations (qualitative) Temperature range: (20 – 1200) ºC | BL-6/ZLGIG/PB-16 edycja 2 z dnia 25.08.2023 r. BL-6/ZLGIG/PB-16 2nd edition of 25 August 2023 | ||
| 272 | 废水 Sewage | Sampling for Chemical and Physical Analysis Manual Method Automatic Method Sewage Temperature / Sample Temperature Range: (0 – 50) °C | PN-ISO 5667-10:2021-11 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-10:2021-11 SC/ZLGIG/PB.01 1st edition of 01.08.2025 | ||
| 273 | 水 Water | Sample collection for chemical and physical testing Water sample temperature (measured upon collection) Measurement range: 0 – 50 °C | PN-ISO 5667-4:2017-10 PN-EN ISO 5667-6:2016-12 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-4:2017-10 PN-EN ISO 5667-6:2016-12 SC/ZLGIG/PB.01 1st edition of 01.08.2025 | ||
| 274 | 水 Water | Sample Collection for Chemical and Physical Testing Collected Water Sample Temperature Permissible Range: 0–50 °C | PN-ISO 5667-11:2017-10 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-11:2017-10 SC/ZLGIG/PB.01 1st edition of 01.08.2025 | ||
| 275 | 水 Water | Dissolved Oxygen Concentration Range: 0.5 – 20.0 mg/L Measurement Method: Electrochemical | PN-EN ISO 5814:2013-04 PN-EN ISO 5814:2013-04 | ||
| 276 | Water intended for human consumption | Sampling for Chemical and Physical Analysis Temperature of the Collected Water Sample Range: (0 – 50) °C | PN-ISO 5667-5:2017-10 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-5:2017-10 SC/ZLGIG/PB.01 1st edition of 01.08.2025 | ||
| 277 | Water intended for human consumption | Sampling for Microbiological Analysis Temperature of the Collected Water Sample Range: (0 – 50) °C | PN-EN ISO 19458:2007 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-EN ISO 19458:2007 SC/ZLGIG/PB.01 1st edition of 01.08.2025 | ||
| 278 | Sewage, water | pH Range: 2.0 – 12.0 Method: Potentiometric | PN-EN ISO 10523:2012 PN-EN ISO 10523:2012 | ||
| 279 | Sewage, water | Specific Electrical Conductivity at Temperature (0 – 80) °C Range: (10 – 110,000) μS/cm Method: Conductometric | PN-EN 27888:1999 PN-EN 27888:1999 | ||
| 280 | Soils, Grounds | Sampling for chemical and physical testing Sampling for Chemical and Physical Analysis | PN-ISO 10381-5:2009 PN-ISO 10381-5:2009 | ||
| 281 | Soils | Sampling for chemical and physical testing Sampling for Chemical and Physical Analysis | PN-R-04031:1997 PN-R-04031:1997 | ||
| 282 | Grounds | Water Permeability – Filtration Coefficient Range: (1 × 10⁻¹ – 1 × 10⁻⁷) m/s (calculated values) Particle size range: 0.01 < d < 2.0 mm 20 Range (1x10-5 – 1x10-10) m/s Hydraulic Gradient Method | PN-EN ISO 17892-11:2019-05 z wyłączeniem pkt. 5.2.2.2 i pkt. 5.2.3 SC/ZLGIG/PB.02 1st edition of 01.08.2025 PN-EN ISO 17892-11:2019-05 (excluding clauses 5.2.2.2 and 5.2.3) | ||
| 283 | Waste O): code 01 01 01, 01 01 02, 01 01 80, 01 03 04*, 01 03 05*, 01 03 06, 01 03 07*, 01 03 08, 01 03 09, 01 03 10*, 01 03 80*, 01 03 81, 01 03 99, 01 04 07*, 01 04 08, 01 04 09, 01 04 10, 01 04 11, 01 04 12, 01 04 13, 01 04 80*, 01 04 81, 01 04 82*, 01 04 83, 01 04 84*, 01 04 85, 01 04 99, 03 01 01, 03 01 04*, 03 01 05, 03 01 80*, 03 01 81, 03 01 82, 03 01 99, 03 03 01, 03 03 02, 03 03 05, 03 03 07, 03 03 08, 03 03 09, 03 03 10, 03 03 11, 03 03 80, 03 03 81, 03 03 99, 06 05 02*, 06 05 03, 06 09 80, 06 09 81, 10 01 01, 10 01 02, 10 01 03, 10 01 04*, 10 01 05, 10 01 07, 10 01 13*, 10 01 14*, 10 01 15, 10 01 16*, 10 01 17, 10 01 18*, 10 01 19, 10 01 20*, 10 01 21, 10 01 22*, 10 01 23, 10 01 24, 10 01 25, 10 01 26, 10 01 80, 10 01 81, 10 01 82, 10 01 99, 10 02 01, 10 02 02, 10 02 07*, 10 02 08, 10 02 10, 10 02 11*, 10 02 12, 10 02 13*, 10 02 14, 10 02 15, 10 02 80, 10 02 81, 10 02 99, 10 04 01*, 10 04 02*, 10 04 03*, 10 04 04*, 10 04 05*, 10 04 06*, 10 04 07*, 10 04 09*, 10 04 10, 10 04 99, 10 05 01, 10 05 03*, 10 05 04, 10 05 05*, 10 05 06*, 10 05 08*, 10 05 09, 10 05 10*, 10 05 11, 10 05 80, 10 05 99, 10 06 01, 10 06 02, 10 06 03*, 10 06 04, 10 06 06*, 10 06 07*, 10 06 09*, 10 06 10, 10 06 80, 10 06 99, | Sampling for chemical and physical, radiochemical testing Sampling for Chemical, Physical, and Radiochemical Analysis | SC/ZLGIG/PB.03 edycja 1 z dnia 01.08.2025 SC/ZLGIG/PB.03 1st edition of 01.08.2025 | ||
| 284 | 10 08 04, 10 08 08*, 10 08 09, 10 08 10*, 10 08 11, 10 08 12* 10 08 13, 10 08 14, 10 08 15*, 10 08 16, 10 08 17*, 10 08 18, 10 08 19*, 10 08 20, 10 08 99, 17 01 01, 17 01 02, 17 01 03, 17 01 06*, 17 01 07, 17 01 80, 17 01 81, 17 01 82, 17 02 01, 17 02 03, 17 02 04*, 17 03 01*, 17 03 02, 17 03 03*, 17 03 80, 17 05 03*, 17 05 04, 17 05 05*, 17 05 06, 17 05 07*, 17 05 08, 17 08 01*, 17 08 02, 17 09 01*, 17 09 02*, 17 09 03*, 17 09 04, 19 01 02, 19 01 05*, 19 01 06*, 19 01 07*, 19 01 10*, 19 01 11*, 19 01 12, 19 01 13*, 19 01 14, 19 01 15*, 19 01 16, 19 01 17*, 19 01 18, 19 01 19, 19 01 99, 19 02 03, 19 02 04*, 19 02 05*, 19 02 06, 19 02 07*, 19 02 08*, 19 02 09*, 19 02 10, 19 02 11*, 19 02 99, 19 03 04*, 19 03 05, 19 03 06*, 19 03 07, 19 03 08*, 19 05 01, 19 05 02, 19 05 03, 19 05 99, 19 08 01, 19 08 02, 19 08 05, 19 08 06*, 19 08 07*, 19 08 08*, 19 08 09, 19 08 10*, 19 08 11*, 19 08 12, 19 08 13*, 19 08 14, 19 08 99, 19 09 01, 19 09 02, 19 09 03, 19 09 04, 19 09 05, 19 09 06, 19 09 99, 19 12 01, 19 12 02, 19 12 03, 19 12 04, 19 12 06*, 19 12 07, 19 12 08, 19 12 09, 19 12 10, 19 12 11*, 19 12 12, 19 13 01*, 19 13 02, 19 13 03*, 19 13 04, 19 13 05*, 19 13 06, 19 13 07*, 19 13 08, 20 03 03, 20 03 04, 20 03 06 | Sampling for chemical and physical, radiochemical testing Sampling for Chemical, Physical, and Radiochemical Analysis | SC/ZLGIG/PB.03 edycja 1 z dnia 01.08.2025 SC/ZLGIG/PB.03 1st edition of 01.08.2025 | ||
| 285 | 水 Water | Element concentrations Range: Fe (0,0005 – 1000) mg/l (0,00002 – 35,8) mmolr/l Mn (0,0002 – 1000) mg/l (0,000008 – 36,4) mmolr/l Cd (0,0005 – 10,0) mg/l Be, Cr, Ti, V (0,0005 – 10,0) mg/l Co, Zr (0,0010 – 10,0) mg/l Cu, Mo, Ni (0,0020 – 10,0) mg/l Sb (0,0050 – 10,0) mg/l Ag, As, Pb, Se, Sn (0,0050 – 10,0) mg/l B, Zn (0,0050 – 200) mg/l Al (0,010 – 200) mg/l Ba (0,0002 – 2000) mg/l (0,000003 – 29,1) mmolr/l Sr (0,0002 – 1000) mg/l (0,000005 – 22,8) mmolr/l Li (0,0010 – 1000) mg/l (0,00015 – 144) mmol/l Ca (0,0010 – 1000) mmolr/l (0,020 – 20000) mg/l Mg (0,0010 – 1000) mmolr/l (0,012 – 12200) mg/l Na (0,0010 – 5000) mmol/l (0,023 – 115000) mg/l K (0,0010 – 1000) mmol/l (0,039 – 39100) mg/l Stot. (0,05 – 5000) mg/l SO42- (0,001 – 104) mmolr/l SO42- (0,017 – 1670) mg/l S Sitot. (0,050 – 100) mg/l SiO32- (0,0013 – 2,63) mmolr/l SiO32- (0,040 – 79,0) mg/l SiO2 (0,020 – 36,9) mg/l Si Ptot. (0,030 – 1000) mg/l PO43- (0,0010 – 31,6) mmolr/l PO43- (0,0098 – 326) mg/l P (0,022 – 747) mg/l P2O5 La, Tl (0,0050 - 10,0) mg/l Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1 z dn. 01.08.2025 | ||
| 286 | 水 Water | Elements concentration Range: Fe (0,0005 – 1000) mg/l (0,00002 – 35,8) mmolr/l Mn (0,0002 – 1000) mg/l (0,000008 – 36,4) mmolr/l Cd (0,0005 – 10,0) mg/l Be, Cr, Ti, V (0,0005 – 10,0) mg/l Co, Zr (0,0010 – 10,0) mg/l Cu, Mo, Ni (0,0020 – 10,0) mg/l Sb (0,0050 – 10,0) mg/l Ag, As, Pb, Se, Sn (0,0050 – 10,0) mg/l B, Zn (0,0050 – 200) mg/l Al (0,010 – 200) mg/l Ba (0,0002 – 2000) mg/l (0,000003 – 29,1) mmolr/l Sr (0,0002 – 1000) mg/l (0,000005 – 22,8) mmolr/l Li (0,0010 – 1000) mg/l (0,00015 – 144) mmol/l Ca (0,0010 – 1000) mmolr/l (0,020 – 20000) mg/l Mg (0,0010 – 1000) mmolr/l (0,012 – 12200) mg/l Na (0,0010 – 5000) mmol/l (0,023 – 115000) mg/l K (0,0010 – 1000) mmol/l (0,039 – 39100) mg/l Stot. (0,05 – 5000) mg/l SO42- (0,001 – 104) mmolr/l SO42- (0,017 – 1670) mg/l S Sitot. (0,050 – 100) mg/l SiO32- (0,0013 – 2,63) mmolr/l SiO32- (0,040 – 79,0) mg/l SiO2 (0,020 – 36,9) mg/l Si Ptot. (0,030 – 1000) mg/l PO43- (0,0010 – 31,6) mmolr/l PO43- (0,0098 – 326) mg/l P (0,022 – 747) mg/l P2O5 La, Tl (0,0050 – 10,0) mg/l Inductively coupled plasma optical emission spectrometry method (ICP-OES) | PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1st of 01/08/2025 | ||
| 287 | 废水 Sewage | Element concentrations Range: Fe (0,0050 – 1000) mg/l (0,0002 – 35,8) mmolr/l Mn (0,0050 – 1000) mg/l (0,0002 – 36,4) mmolr/l Cd (0,0010 – 1000) mg/l Be (0,0010 – 1000) mg/l Cr, Ti, V (0,0050 – 1000) mg/l Co, Zr (0,0050 – 1000) mg/l Mo (0,0050 – 1000) mg/l Cu,Ni (0,010 – 1000) mg/l Sb (0,050 – 100) mg/l Ag (0,020 – 100) mg/l As (0,050 – 100) mg/l B (0,050 – 1000) mg/l Zn (0,050 – 1000) mg/l Pb (0,020 – 100) mg/l Se, Sn (0,050 – 100) mg/l Al (0,10 – 1000) mg/l Bi (0,10 – 100) mg/l Ba (0,020 – 2000) mg/l (0,0003 – 29,1) mmolr/l Sr (0,020 – 1000) mg/l (0,0005 – 22,8) mmolr/l Li (0,10 – 1000) mg/l (0,015 – 144) mmol/l Ca (0,050 – 1000) mmolr/l (1,00 – 20000) mg/l Mg (0,050 – 1000) mmolr/l (0,60 – 12200) mg/l Na (0,050 – 5000) mmol/l (1,15 – 115000) mg/l K (0,050 – 1000) mmol/l (1,95 – 39100) mg/l Stot. (5,00 – 3000) mg/l SO42- (0,10 – 62,5 ) mmolr/l SO42- (1,70 – 999) mg/l S Sitot. (0,50 – 100) mg/l SiO32- (0,013 – 2,63) mmolr/l SiO32- (0,40 – 79,0) mg/l SiO2 (0,19 – 36,9) mg/l Si Ptot. (0,20 – 2000) mg/l PO43- (0,0063 – 63,2) mmolr/lPO43- (0,065 – 652) mg/l P (0,15 – 1490) mg/l P2O5 La, Tl (0,020 – 100) mg/l Hg (0,050 – 10,0) mg/l Te (0,10 – 100) mg/l Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1 z dn. 01.08.2025 | ||
| 288 | 废水 Sewage | Elements concentration Range: Fe (0,0050 – 1000) mg/l (0,0002 – 35,8) mmolr/l Mn (0,0050 – 1000) mg/l (0,0002 – 36,4) mmolr/l Cd (0,0010 – 1000) mg/l Be (0,0010 – 1000) mg/l Cr, Ti, V (0,0050 – 1000) mg/l Co, Zr (0,0050 – 1000) mg/l Mo (0,0050 – 1000) mg/l Cu,Ni (0,010 – 1000) mg/l Sb (0,050 – 100) mg/l Ag (0,020 – 100) mg/l As (0,050 – 100) mg/l B (0,050 – 1000) mg/l Zn (0,050 – 1000) mg/l Pb (0,020 – 100) mg/l Se, Sn (0,050 – 100) mg/l Al (0,10 – 1000) mg/l Bi (0,10 – 100) mg/l Ba (0,020 – 2000) mg/l (0,0003 – 29,1) mmolr/l Sr (0,020 – 1000) mg/l (0,0005 – 22,8) mmolr/l Li (0,10 – 1000) mg/l (0,015 – 144) mmol/l Ca (0,050 – 1000) mmolr/l (1,00 – 20000) mg/l Mg (0,050 – 1000) mmolr/l (0,60 – 12200) mg/l Na (0,050 – 5000) mmol/l (1,15 – 115000) mg/l K (0,050 – 1000) mmol/l (1,95 – 39100) mg/l Stot. (5,00 – 3000) mg/l SO42- (0,10 – 62,5 ) mmolr/l SO42- (1,70 – 999) mg/l S Sitot. (0,50 – 100) mg/l SiO32- (0,013 – 2,63) mmolr/l SiO32- (0,40 – 79,0) mg/l SiO2 (0,19 – 36,9) mg/l Si Ptot. (0,20 – 2000) mg/l PO43- (0,0063 – 63,2) mmolr/lPO43- (0,065 – 652) mg/l P (0,15 – 1490) mg/l P2O5 La, Tl (0,020 – 100) mg/l Hg (0,050 – 10,0) mg/l Te (0,10 – 100) mg/l Inductively coupled plasma optical emission spectrometry method (ICP-OES) | PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1st of 01/08/2025 | ||
| 289 | 水、废水 | pH value Range: 2,0 – 13,0 Potentiometric method | PN-EN ISO 10523:2012 | ||
| 290 | 水、废水 | Electrical conductivity Range: (10 – 250000) S/cm Conductometric method Electrical conductivity Range: (10 – 250000) S/cm Conductometric method | PN-EN 27888:1999 | ||
| 291 | 水、废水 | Chloride concentration Range: (0,14 – 5000) mmol/I (5,0 – 177300) mg/l Titrimetric method | PN-ISO 9297:1994 | ||
| 292 | 水、废水 | Sulfate concentration Range: (10 – 10000) mg/l (0,21 – 208) mmol/l r Gravimetric method | PN-ISO 9280:2002 | ||
| 293 | 水、废水 | Total dissolved solids (TDS) Range: (10 – 250000) mg/I Gravimetric method | PN-EN 15216:2022-03 | ||
| 294 | 水、废水 | Dissolved solids, mineral (non-volatile) and volatile Range: (10 – 250000) mg/I Solids – total mineral (non-volatile) and volatile Range: (10 – 100000) mg/l Gravimetric method | PN-78/C-04541 | ||
| 295 | 水、废水 | Alkalinity - mineral and total Range: (0,40 – 200) mmol/l Titrimetric method Range: (0,10 – 200) mmol/l Potentiometric titration method Carbonates concentration Hydrocarbonates concentration Hydroxides concentration Total hardness (sum of calcium and magnesium) Carbonate hardness Non-carbonate hardness (from calculations) | PN-EN ISO 9963-1:2001+Ap1:2004 SO-4/ZLGIG/PB.07.95 ed. 1 z dnia 01.08.2025 PN-EN ISO 9963-1:2001+Ap1:2004 SO-4/ZLGIG/PB.07.95 ed. 1st of 01/08/2025 | ||
| 296 | 水、废水 | Dissolved oxygen Range: (0,1 – 15,0) mg/l O2 Electrochemical method | PN-EN ISO 5814:2013-04 | ||
| 297 | 水、废水 | Chemical oxygen demand (COD ) Cr Range: (10 – 10000) mg/l O2 Spectrophotometric method | PN-ISO 15705:2005 | ||
| 298 | 水、废水 | Nitrite concentration Range: (0,0060 – 100) mg/l (0,00013 – 2,17) mmol/l Nitrite nitrogen concentration (0,0018 – 30,4) mg/l Spectrophotometric method | PN-EN 26777:1999 | ||
| 299 | 水、废水 | Iodide concentration Range: (0,40 – 250) mg/l (0,0032 – 1,97) mmol/l Bromide concentration Range: (0,40 – 500) mg/l (0,0050 – 6,26) mmol/l Titrimetric method | SO-4/ZLGIG/PB.07.29 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.29 ed. 1st of 01/08/2025 | ||
| 300 | 水、废水 | Biochemical oxygen demand- BOD5 BOD 2+5 Range: (0,50 – 6,0) mg/l O2 (3 – 6000) mg/l O2 Electrochemical method | PN-EN ISO 5815-1:2019-12 PN-EN 1899-2:2002 | ||
| 301 | 水、废水 | Anionic surfactants (detergents) concentration Range: (0,10 – 100) mg/l Spectrophotometric method | PN-EN 903:2002 z wył. pkt 7.1 PN-EN 903:2002 exc. pt 7.1 | ||
| 302 | 水、废水 | Anionic surfactants (detergents) concentration Range: (0,010 – 100) mg/l Continuous flow analysis metod (CFA) with spectrophotometric detection | PN-EN ISO 16265:2012 | ||
| 303 | 水、废水 | Cr(VI) concentration Range: (0,010 – 50) mg/l Spectrophotometric method Cr(III) concentration (calculated) Cr(VI) concentration Range: (0,010 – 50) mg/l Spectrophotometric method Cr(III) concentration (from calculations) | PN-77/C-04604.08 SO-4/ZLGIG/PB.07.93 ed. 1 z dn. 01.08.2025 PN-77/C-04604.08 SO-4/ZLGIG/PB.07.93 ed. 1st of 01/08/2025 | ||
| 304 | 水、废水 | Permanganate index Range: (0,50 – 100) mg/l O2 Titrimetric method | PN-EN ISO 8467:2001 | ||
| 305 | 水、废水 | Concentration: - total organic carbon (TOC) - dissolved organic carbon (DOC) Range: (0,50 – 2500) mg/l C High temp. combustion method with IR detection | PN-EN 1484:1999 | ||
| 306 | 水、废水 | Total nitrogen concentration Range: (0,50 – 2500) mg/l N High temp. combustion method with chemiluminescent detection Kjeldahl nitrogen concentration and organic nitrogen (from calculations) | PN-EN ISO 20236:2025-05 SO-4/ZLGIG/PB.07.94 ed. 1 z dn. 01.08.2025 PN-EN ISO 20236:2025-05 SO-4/ZLGIG/PB.07.94 ed. 1st of 01/08/2025 | ||
| 307 | 水、废水 | Free cyanide and total cyanide concentration Range: (0,0020 – 1000) mg/l Continuous flow analysis method (CFA) with spectrophotometric detection Bound cyanide concentration (from calculations) | PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1 z dn. 01.08.2025 PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1st of 01/08/2025 | ||
| 308 | 水、废水 | Phenol index Range: (0,0010 – 1000) mg/l Continuous flow analysis method (CFA) with spectrophotometric detection | PN-EN ISO 14402:2004 pkt 4 PN-EN ISO 14402:2004 pt 4 | ||
| 309 | 水、废水 | Anion concentrations Range: chlorides (0,0080 – 5000) mmol/l (0,28 – 177300) mg/l sulfates (0,0020 – 208) mmol/l r (0,10 – 10000) mg/l bromides (0,00025 – 6,26) mmol/l (0,020 – 500) mg/l fluorides (0,00052 – 26,3) mmol/l (0,010 – 500) mg/l nitrates (0,00030 – 8,10) mmol/l (0,020 – 500) mg/l nitrate nitrogen(0,0045 – 113) mg/l nitrites (0,0011 – 2,17) mmol/l (0,050 – 100) mg/l nitrite nitrogen(0,015 – 30,4) mg/l phosphates (0,0032 – 3,79) mmol/l r (0,10 – 120) mg/l iodides (0,0024 – 1,97) mmol/l (0,30 – 250) mg/l thiocyanates (0,50 – 100) mg/l Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 PN-EN ISO 10304-3:2001 | ||
| 310 | 水、废水 | Anions concentration Range: chloride (0,0080 – 5000) mmol/l (0,28 – 177300) mg/l sulfate (0,0020 – 208) mmol/l r (0,10 – 10000) mg/l bromide (0,00025 – 6,26) mmol/l (0,020 – 500) mg/l fluoride (0,00052 – 26,3) mmol/l (0,010 – 500) mg/l nitrate (0,00030 – 8,10) mmol/l (0,020 – 500) mg/l nitrate nitrogen (0,0045 – 113) mg/l nitrite (0,0011 – 2,17) mmol/l (0,050 – 100) mg/l nitrite nitrogen (0,015 – 30,4) mg/l phosphate (0,0032 – 3,79) mmol/l r (0,10 – 120) mg/l iodide (0,0024 – 1,97) mmol/l (0,30 – 250) mg/l thiocyanate (0,50 – 100) mg/l Ion chromatography method with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 PN-EN ISO 10304-3:2001 | ||
| 311 | 水、废水 | Adsorbable organically bound halogens (AOX) Range: (0,10 – 5,0) mg/l Cl (100 – 5000) µg/l Cl Microcoulometric titration method Adsorbable organically bound halogens (AOX) Range: (0,10 – 5,0) mg/l Cl (100 – 5000) µg/l Cl Microcoulometric titration method | PN-EN ISO 9562:2007 | ||
| 312 | 水、废水 | Total suspended solids (TSS) Range: (2,0 - 10000) mg/l Gravimetric method | PN-EN 872:2007+Ap1:2007 | ||
| 313 | 水、废水 | Turbidity Range: (0,20 – 400) NTU Nephelometric method | PN-EN ISO 7027-1:2016-09 | ||
| 314 | 水、废水 | Color Range: (2 – 1500) mg/l Pt Spectrophotometric method | PN-EN ISO 7887:2012+Ap1:2015-06 metoda C PN-EN ISO 7887:2012+Ap1:2015-06 method C | ||
| 315 | 水、废水 | Ether extract Range: (2,5 – 1000) mg/l Gravimetric method | SO-4/ZLGIG/PB.07.50 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.50 ed. 1st of 01/08/2025 | ||
| 316 | 水、废水 | Ammonium ion concentration Range: (0,020 – 1000) mg/l (0,0011 – 56) mmol/l Ammonium nitrogen concentration Range: (0,016 – 777) mg/l Flow injection analysis method (FIA) with spectrophotometric detection | PN-EN ISO 11732:2007 | ||
| 317 | 水、废水 | Sulfide concentration Range: (0,020 – 500) mg/l Flow injection analysis method (FIA) with spectrophotometric detection | SO-4/ZLGIG/PB.07.51 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.51 ed. 1st of 01/08/2025 | ||
| 318 | 水、废水 | Sulfide concentration Range: (0,010 – 500) mg/l Spectrophotometric method | SO-4/ZLGIG/PB.07.39 ed. 1 z dn. 01.08.2025 na podstawie testu kuwetowego MERCK SPECTROQUANT 14779 SO-4/ZLGIG/PB.07.39 ed. 1st of 01/08/2025 based on cuvette test MERCK SPECTROQUANT 14779 | ||
| 319 | 水、废水 | Unionized hydrogen sulfide concentration (from calculations) | SO-4/ZLGIG/PB.07.97 | PN-74/C-04566.04 SO-4/ZLGIG/PB.07.97 ed. 1 z dn. 01.08.2025 PN-74/C-04566.04 | ||
| 320 | 水、废水 | Kjeldahl nitrogen concentration Range: (5,0 – 1200) mg/l N Potentiometric titration method | PN-EN 25663:2001 | ||
| 321 | 水、废水 | Kjeldahl nitrogen concentration Range: (0,50 – 1200) mg/l N Flow injection analysis method (FIA) with spectrophotometric detection | PN-EN 25663:2001 | ||
| 322 | 水、废水 | Mercury concentration Range: (0,00050 – 0,10) mg/l (0,50 – 100) µg/l Atomic fluorescence spectrometry method (AFS) | PN-EN ISO 17852:2009 | ||
| 323 | 水、废水 | Dissolved iron(II) concentration Range: (0,020 – 50) mg/l Spectrophotometric method | PN-ISO 6332:2001+Ap1:2016-06 | ||
| 324 | 水、废水 | Phosphate concentration Range: (0,010 – 200) mg/l PO43- Spectrophotometric method | PN-EN ISO 6878:2006 rozdz. 4 + Ap1:2010 + Ap2:2010 PN-EN ISO 6878:2006 cl 4 + Ap1:2010 + Ap2:2010 | ||
| 325 | 水 Water | Bromate concentration Range: (0,0030 – 1,0) mg/l (3,0 – 1000) µg/l Ion chromatography method with conductometric detection (IC-CD) | PN-EN ISO 15061:2003 | ||
| 326 | 水 Water | Anions concentration Range: chlorate (0,0030 – 10) mg/l (3,0 – 10000) µg/l chlorite (0,0040 – 10) mg/l (4,0 – 10000) µg/l Ion chromatography method with conductometric detection (IC-CD) Total chlorate and chlorites (from calculations) | PN-EN ISO 10304-4:2022-08 | ||
| 327 | 水 Water | Free carbon dioxide concentration Range: (2,2 – 2000) mg/l Titrimetric method | PN-74/C-04547.01 pkt 2.1 PN-74/C-04547.01 pt 2.1 | ||
| 328 | 水 Water | Agressive carbon dioxide concentration- Range: (2,2 – 180) mg/l Titrimetric method | PN-EN 13577:2008 | ||
| 329 | 水 Water | Cr(VI) concentration Range: (0,010 – 50) mg/l Spectrophotometric method Cr(III) concentration (calculated) Cr(VI) concentration Range: (0,010 – 50) mg/l Spectrophotometric method Cr(III) concentration (from calculations) | PN-EN ISO 18412:2007 SO-4/ZLGIG/PB.07.93 ed. 1 z dn. 01.08.2025 PN-EN ISO 18412:2007 SO-4/ZLGIG/PB.07.93 ed. 1st of 01/08/2025 | ||
| 330 | Underground water | Adsorbable organically bound halogens (AOX) Range: (0,010 – 5,0) mg/l Cl (10 – 5000) µg/l Cl Microcoulometric titration method Adsorbable organically bound halogens (AOX) Range: (0,010 – 5,0) mg/l Cl (10 – 5000) µg/l Cl Microcoulometric titration method | PN-EN ISO 9562:2007 | ||
| 331 | Surface water | Mercury concentration Range: (0,000050 – 0,10) mg/l (0,050 – 100) µg/l Atomic fluorescence spectrometry method (AFS) | PN-EN ISO 17852:2009 | ||
| 332 | Surface water | Elements concentration Range: Cd (0,0002 – 1,00) mg/l Sb (0,0020 – 1,00) mg/l Ptot. (0,010 – 100) mg/l PO43- (0,0003 – 3,16) mmolr/l PO43- (0,0033 – 32,6) mg/l P (0,0074 – 74,7) mg/l P2O5 Tl (0,002 – 1,00) mg/l Inductively coupled plasma optical emission spectrometry method (ICP-OES) | PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1 z dn. 01.08.2025 PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1st of 01/08/2025 | ||
| 333 | WasteO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 | pH value Range: 2,0 – 12,0 Potentiometric method | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 10523:2012 | ||
| 334 | WasteO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 | Electrical conductivity Range: (10 – 250000) S/cm Conductometric method Electrical conductivity Range: (10 – 250000) S/cm Conductometric method | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN 27888:1999 | ||
| 335 | 炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid | Concentration of chloride Range: (5,0 – 177300) mg/l Titrimetric method | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-ISO 9297:1994 | ||
| 336 | 炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid | Concentration of chloride Range: (5,0 – 177300) mg/l Ion chromatography method with conductometric detection (IC-CD) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 10304-1:2009+AC:2012 | ||
| 337 | 炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid | Concentration of sulphate Range: (10 – 10000) mg/l Gravimetric method | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-ISO 9280:2002 | ||
| 338 | 炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid | Concentration of sulphate Range: (1,0 – 10000) mg/l Ion chromatography method with conductometric detection (IC-CD) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 10304-1:2009+AC:2012 | ||
| 339 | 炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid | Total dissolved solids (TDS) Range: (10 – 50000) mg/I Gravimetric method | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN 15216:2022-03 | ||
| 340 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、 | Concentration of elements Range: Fe (0,0050 – 1000) mg/l Cd (0,0005 – 100) mg/l Mn (0,0050 – 200) mg/l Co, Cr, Ti, V (0,0030 – 100) mg/l As, Cu, Mo, Ni, Pb, Sb, Se, Sn, Zn (0,0050 – 100) mg/l Al (0,050 – 100) mg/l Ba (0,0050 – 2000) mg/l Sr (0,0050 – 1000) mg/l Ca (0,20 – 20000) mg/l Mg (0,12 – 12200) mg/l Na (0,23 – 115000) mg/l K (0,39 – 39100) mg/l Inductively coupled plasma optical emission spectrometry method (ICP-OES) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 11885:2009 | ||
| 341 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、 | Concentration of Cr(VI) Range: (0,010 – 50) mg/l Spectrofotometric method Concentration of Cr(III) (from calculations) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 18412:2007 PN-77/C-04604.08 SO-4/ZLGIG/PB.07.93 ed. 1 z dn. 01.08.2025 PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 18412:2007 PN-77/C-04604.08 SO-4/ZLGIG/PB.07.93 ed. 1st of 01/08/2025 | ||
| 342 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、 | Permanganate index Range: (0,50 – 100) mg/l O2 Titrimetric method | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 8467:2001 | ||
| 343 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、 | Concentration of organic carbon Range: (0,50 – 2500) mg/l C High temp. combustion method with IR detection | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN 1484:1999 | ||
| 344 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、 | Sulphide concentration Range: (0,050 – 500) mg/l Spectrophotometric method Flow injection analysis method (FIA) with spectrophotometric detection Concentration of undissociated hydrogen sulphide (calculated) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 SO-4/ZLGIG/PB.07.39 ed. 1 z dn. 01.08.2025 na podstawie testu kuwetowego MERCK SPECTROQUANT 14779 SO-4/ZLGIG/PB.07.51 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.97 ed.1 z dn. 01.08.2025 PN-74/C-04566.04 | ||
| 345 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste Ground Building materials: mineral aggregates | Concentration of sulfides Range: (0,050 – 500) mg/l Spectrophotometric method Flow injection analysis method (FIA) with spectrophotometric detection Unionized hydrogen sulfide (from calculations) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 SO-4/ZLGIG/PB.07.39 ed. 1st of 01/08/2025 based on cuvette test MERCK SPECTROQUANT 14779 SO-4/ZLGIG/PB.07.51 ed. 1st of 01/08/2025 SO-4/ZLGIG/PB.07.97 ed. 1st of 01/08/2025 PN-74/C-04566.04 | ||
| 346 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste Ground Building materials: mineral aggregates | Concentration of free cyanide and total cyanide Range: (0,0050 – 1000) mg/l Continuous flow analysis method (CFA) with spectrophotometric detection Concentration of cyanide – bound (from calculations) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1 z dn. 01.08.2025 PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1st of 01/08/2025 | ||
| 347 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste Ground Building materials: mineral aggregates | Phenol index Range: (0,0050 – 1000) mg/l Continuous flow analysis method (CFA) with spectrophotometric detection | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14402:2004 pkt 4 PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14402:2004 pt 4 | ||
| 348 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste Ground Building materials: mineral aggregates | Ammonium ion concentration Range: (0,020 – 1000) mg/l Ammonium nitrogen concentration Range: (0,016 – 777) mg/l Flow injection analysis method (FIA) with spectrophotometric detection | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 11732:2007 | ||
| 349 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste Ground Building materials: mineral aggregates | Fluoride concentration Range: (0,10 – 500) mg/l Ion chromatography method with conductometric detection (IC-CD) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 10304-1:2009+AC:2012 | ||
| 350 | 废物O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料;土体;建筑材料:矿物集料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste Ground Building materials: mineral aggregates | Concentration of mercury Range: (0,00050 – 0,10) mg/l (0,50 – 100) µg/l Atomic fluorescence spectrometry method (AFS) | PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 17852:2009 | ||
| 351 | 建筑材料:矿物集料 Building materials: mineral aggregates | Analytical moisture content Range: (0,10 – 10,0) %m/m Gravimetric method Analytical moisture content Range: (0,10 – 10,0) %m/m Gravimetric method | SO-4/ZLGIG/PB.02 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.02 ed. 1st of 01/08/2025 | ||
| 352 | 建筑材料:矿物集料 Building materials: mineral aggregates | Ash content Range: (35,00 – 99,00) %m/m Gravimetric method Loss on ignition (from calculations) | SO-4/ZLGIG/PB.03 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.03 ed. 1st of 01/08/2025 | ||
| 353 | 建筑材料:矿物集料 Building materials: mineral aggregates | Elements content Range: As (1,0 – 100000) mg/kg Ba (1,0 – 100000) mg/kg Cd (1,0 – 100000) mg/kg Co (1,0 – 100000) mg/kg Cr (1,0 – 100000) mg/kg Cu (1,0 – 100000) mg/kg Mn (1,0 – 100000) mg/kg Mo (1,0 – 100000) mg/kg Ni (1,0 – 100000) mg/kg Pb (1,0 – 100000) mg/kg Sb (1,0 – 100000) mg/kg Se (2,0 – 100000) mg/kg Sn (1,0 – 100000) mg/kg Zn (1,0 – 100000) mg/kg Inductively coupled plasma optical emission spectrometry method method (ICP-OES) | SO-4/ZLGIG/PB.11 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.11 ed. 1st of 01/08/2025 | ||
| 354 | 建筑材料:矿物集料 Building materials: mineral aggregates | 汞含量 范围:(0,01 – 20) mg/kg 汞齐化技术原子吸收光谱法 Mercury content Range: (0,01 – 20) mg/kg Atomic absorption spectrometry method with amalgamation | SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1st of 01/08/2025 | ||
| 355 | 建筑材料:矿物集料 Building materials: mineral aggregates | 氧化物含量 范围:SiO2 (1,20 – 89,16) %m/m、Al2O3 (0,12 – 43,72) %m/m、Fe2O3 (0,29 – 70,72) %m/m、CaO (0,18 – 70,81) %m/m、MgO (0,15 – 23,51) %m/m、Na2O (0,01 – 10,52) %m/m、K2O (0,05 – 3,78) %m/m、SO3 (0,30 – 72,02) %m/m、TiO2 (0,01 – 3,25) %m/m、P2O5 (0,04 – 14,66) %m/m X射线荧光法 | SO-4/ZLGIG/PB.05 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.05 ed. 1st of 01/08/2025 | ||
| 356 | 建筑材料:矿物集料 Building materials: mineral aggregates | Oxides content Range: SiO2 (0,01 – 97,35) %m/m Al2O3 (0,01 – 95,50) %m/m Fe2O3 (0,01 – 95,75) %m/m CaO (0,01 – 99,24) %m/m MgO (0,01 – 82,25) %m/m Na2O (0,01 – 39,28) %m/m K2O (0,01 – 48,93) %m/m SO3 (0,02 – 51,40) %m/m TiO2 (0,01 – 39,79) %m/m P2O5 (0,01 – 44,84) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD- XRF) | SO-4/ZLGIG/PB.24 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.24 ed. 1st of 01/08/2025 | ||
| 357 | 土体 Ground | Analytical moisture content Range: (0,10 – 10,0) %m/m Gravimetric method Analytical moisture content Range: (0,10 – 10,0) %m/m Gravimetric method | SO-4/ZLGIG/PB.02 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.02 ed. 1st of 01/08/2025 | ||
| 358 | 土体 Ground | Ash content Range: (35,00 – 99,00) %m/m Gravimetric method Loss on ignition (from calculations) | SO-4/ZLGIG/PB.03 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.03 ed. 1st of 01/08/2025 | ||
| 359 | 土体 Ground | 氧化物含量 范围:SiO2 (1,20 – 89,16) %m/m、Al2O3 (0,12 – 43,72) %m/m、Fe2O3 (0,29 – 70,72) %m/m、CaO (0,18 – 70,81) %m/m、MgO (0,15 – 23,51) %m/m、Na2O (0,01 – 10,52) %m/m、K2O (0,05 – 3,78) %m/m、SO3 (0,30 – 72,02) %m/m、TiO2 (0,01 – 3,25) %m/m、P2O5 (0,04 – 14,66) %m/m X射线荧光法 | SO-4/ZLGIG/PB.05 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.05 ed. 1st of 01/08/2025 | ||
| 360 | 土体 Ground | Oxides content Range: SiO2 (0,01 – 97,35) %m/m Al2O3 (0,01 – 95,50) %m/m Fe2O3 (0,01 – 95,75) %m/m CaO (0,01 – 99,24) %m/m MgO (0,01 – 82,25) %m/m Na2O (0,01 – 39,28) %m/m K2O (0,01 – 48,93) %m/m SO3 (0,02 – 51,40) %m/m TiO2 (0,01 – 39,79) %m/m P2O5 (0,01 – 44,84) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD-XRF) Oxides content Range: SiO2 (0,01 – 97,35) %m/m Al2O3 (0,01 – 95,50) %m/m Fe2O3 (0,01 – 95,75) %m/m CaO (0,01 – 99,24) %m/m MgO (0,01 – 82,25) %m/m Na2O (0,01 – 39,28) %m/m K2O (0,01 – 48,93) %m/m SO3 (0,02 – 51,40) %m/m TiO2 (0,01 – 39,79) %m/m P2O5 (0,01 – 44,84) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD-XRF) | SO-4/ZLGIG/PB.24 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.24 ed. 1st of 01/08/2025 | ||
| 361 | 土体 Ground | Content of elements Range: As (1,0 – 100000) mg/kg Ba (1,0 – 100000) mg/kg Cd (1,0 – 100000) mg/kg Co (1,0 – 100000) mg/kg Cr (1,0 – 100000) mg/kg Cu (1,0 – 100000) mg/kg Mn (1,0 – 100000) mg/kg Mo (1,0 – 100000) mg/kg Ni (1,0 – 100000) mg/kg Pb (1,0 – 100000) mg/kg Sb (1,0 – 100000) mg/kg Se (2,0 – 100000) mg/kg Sn (1,0 – 100000) mg/kg Zn (1,0 – 100000) mg/kg Inductively coupled plasma optical emission spectrometry method (ICP-OES) | SO-4/ZLGIG/PB.11 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.11 ed. 1st of 01/08/2025 | ||
| 362 | 土体 Ground | 汞含量 范围:(0,01 – 20) mg/kg 汞齐化技术原子吸收光谱法 Mercury content Range: (0,01 – 20) mg/kg Atomic absorption spectrometry method with amalgamation | SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1st of 01/08/2025 | ||
| 363 | 土体 Ground | Total Inorganic Carbon content (TIC) Range: (0,10 – 12,00) %m/m IR spectrometry method | PN-EN 15936:2022-07 PN-EN 15936:2022-07 | ||
| 364 | 土体 Ground | Total carbon (TC) content Range: (0,10 – 48,00) %m/m High temp. combustion method with IR detection Organic carbon (TOC) content (from calculations) | PN-ISO 10694:2002 | ||
| 365 | 土体 Ground | Total sulphur (TS) content Range: (0,03 – 0,50) %m/m High temp. combustion method with IR detection | PN-ISO 15178:2004 | ||
| 366 | 土体 Ground | Particle size distribution in the particle range: (2 – 2000) μm Range: (1 – 99) % Laser diffraction method Particle size distribution in the range (2 – 2000) μm Range: (1 – 99) % Laser diffraction method | ISO 13320:2020 | ||
| 367 | 土体 Ground | Particle size distribution in the particle range: (2,0 – 8,0) mm Range: (1 – 90) % Sieve-gravimetric method Particle size distribution in the range (2,0 – 8,0) mm Range: (1 – 90) % Sieve-gravimetric method | PN-ISO 11277:2005 | ||
| 368 | 土体 Ground | pH - in KCl, pH - in H2O Range: 2,0 – 12,0 Potentiometric method pH value - in KCl, pH value - in H2O Range: 2,0 – 12,0 Potentiometric method | PN-ISO 10390:2022-09 | ||
| 369 | 土壤 Soil | Content of elements Range: As (1,0 – 2000) mg/kg Ba (2,0 – 6000) mg/kg Cd (1,0 – 2000) mg/kg Co (1,0 – 2000) mg/kg Cr (1,0 – 2000) mg/kg Cu (1,0 – 2000) mg/kg Mo (1,0 – 2000) mg/kg Ni (1,0 – 2000) mg/kg Pb (1,0 – 2000) mg/kg Sn (1,0 – 2000) mg/kg Zn (1,0 – 6000) mg/kg Inductively coupled plasma optical emission spectrometry method (ICP-OES) | PN-EN 16174:2012 PN-EN ISO 11885:2009 | ||
| 370 | 土壤 Soil | Mercury content Range: (0,005 – 2,0) mg/kg Atomic absorption spectrometry method with amalgamation | SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1st of 01/08/2025 | ||
| 371 | 土壤 Soil | Total carbon (TC) content Range: (0,10 – 48,00) %m/m High temp. combustion method with IR detection Total Organic carbon (TOC) content (from calculations) | PN-ISO 10694:2002 | ||
| 372 | 土壤 Soil | Total Inorganic Carbon (TIC) content Range: (0,10 – 12,00) %m/m IR spectrometry method | PN-EN 15936:2022-07 metoda A PN-EN 15936:2022-07 method A | ||
| 373 | 土壤 Soil | Total Sulfur (TS) content Range: (0,03 – 0,50) %m/m High temp. combustion method with IR detection | PN-ISO 15178:2004 | ||
| 374 | 土壤 Soil | Particle size distribution in the particle range: (2 – 2000) μm Range: (1 – 99) % Laser diffraction method Particle size distribution in the range (2 – 2000) μm Range: (1 – 99) % Laser diffraction method | ISO 13320:2020 | ||
| 375 | 土壤 Soil | Particle size distribution in the particle range: (2,0 – 8,0) mm Range: (1 – 90) % Sieve-gravimetric method Particle size distribution in the range (2,0 – 8,0) mm Range: (1 – 90) % Sieve-gravimetric method | PN-ISO 11277:2005 | ||
| 376 | 土壤 Soil | pH - in KCl, pH - in H2O Range: 2,0 – 12,0 Potentiometric method pH value - in KCl, pH value - in H2O Range: 2,0 – 12,0 Potentiometric method | PN-ISO 10390:2022-09 | ||
| 377 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Analytical moisture Range: (0,10 – 10,0) %m/m Gravimetric method | PN-EN ISO 21660-3:2021-08 | ||
| 378 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Total moisture content Range: (0,10 – 54,0) %m/m Gravimetric method | EN/TS 15414-1:2010 CEN/TS 15414-2:2010 | ||
| 379 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Ash content Range: (0,10 – 50,0) %m/m Gravimetric method Loss on ignition (from calculations) | SO-4/ZLGIG/PB.03 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.03 ed. 1st of 01/08/2025 | ||
| 380 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Ash content Range: (0,50 – 50,0) %m/m Gravimetric method | PN-EN ISO 21656:2021-08 | ||
| 381 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | 氧化物含量 范围:SiO2 (1,20 – 89,16) %m/m、Al2O3 (0,12 – 43,72) %m/m、Fe2O3 (0,29 – 70,72) %m/m、CaO (0,18 – 70,81) %m/m、MgO (0,15 – 23,51) %m/m、Na2O (0,01 – 10,52) %m/m、K2O (0,05 – 3,78) %m/m、SO3 (0,30 – 72,02) %m/m、TiO2 (0,01 – 3,25) %m/m、P2O5 (0,04 – 14,66) %m/m X射线荧光法 | SO-4/ZLGIG/PB.05 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.24 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.05 ed. 1st of 01/08/2025 SO-4/ZLGIG/PB.24 ed. 1st of 01/08/2025 | ||
| 382 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | 汞含量 范围:(0,01 – 20) mg/kg 汞齐化技术原子吸收光谱法 Mercury content Range: (0,01 – 20) mg/kg Atomic absorption spectrometry method with amalgamation | SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1st of 01/08/2025 | ||
| 383 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Elements content Range: As (1,0 – 1 000) mg/kg Ba (1,0 – 100 000) mg/kg Cd (1,0 – 1 000) mg/kg Co (1,0 – 10 000) mg/kg Cr (1,0 – 10 000) mg/kg Cu (1,0 – 10 000) mg/kg Mn (1,0 – 100 000) mg/kg Mo (1,0 – 10 000) mg/kg Ni (1,0 – 10 000) mg/kg Pb (1,0 – 50 000) mg/kg Sb (1,0 – 1 000) mg/kg Se (2,0 – 1 000) mg/kg Sn (1,0 – 1 000) mg/kg Zn (1,0 – 100 000) mg/kg Inductively coupled plasma optical emission spectrometry method (ICP-OES) | SO-4/ZLGIG/PB.11 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.11 ed. 1st of 01/08/2025 | ||
| 384 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Total sulfur (TS) content Range: (0,03 – 5,00) %m/m High temp. combustion method with IR detection | PN-EN 15408:2011 | ||
| 385 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Total carbon (TC), Total hydrogen (TH) content Range: C (20,0 – 95,0) %m/m H (0,11 – 20,00) %m/m High temp. combustion method with IR detection | PN-EN ISO 21663:2021-06 | ||
| 386 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Gross calorific value Range: (6 000 – 46 390) kJ/kg Calorimetric method Net calorific value (from calculations) | PN-EN ISO 21654:2021-12 | ||
| 387 | 废物 O):代码 19 08 05、19 12 01、19 12 04、19 12 06、19 12 07、19 12 08、19 12 10;固体燃料:再生燃料 - 替代燃料 Solid wastesO): code 19 08 05, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 10, solid fuel: solid recovered fuels - refuse derived fuel | Chlorine content Range: (0,07 – 7,00) %m/m Titrimetric method | SO-4/ZLGIG/PB.17 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.17 ed. 1st of 01/08/2025 | ||
| 388 | 固体燃料:烟煤 | First-stage moisture (transient moisture) content Range: (0,20 – 54,0) %m/m Gravimetric method | PN-ISO 589:2006 | ||
| 389 | 固体燃料:烟煤 | Second-stage moisture (analytical moisture) Range: (0,10 – 10,0) %m/m Gravimetric method | PN-ISO 589:2006 | ||
| 390 | 固体燃料:烟煤 Solid fuels: Hard coal | 全水分含量(由计算得出) Total moisture content (from calculations) | PN-ISO 589:2006 | ||
| 391 | 固体燃料:烟煤 Solid fuels: Hard coal | Ash content Range: (0,10 – 50,0) %m/m Gravimetric method Ash content Range: (0,10 – 50,0) %m/m Gravimetric method | PN-ISO 1171:2002 | ||
| 392 | 固体燃料:烟煤 Solid fuels: Hard coal | Loss on ignition (from calculations) | SO-4/ZLGIG/PB.03 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.03 ed. 1st of 01/08/2025 | ||
| 393 | 固体燃料:烟煤 Solid fuels: Hard coal | Total carbon (TC), Total hydrogen (TH) content Range: C (20,0 – 99,0) %m/m H (0,11 – 8,00) %m/m High temp. combustion method with IR detection | PN-G-04571:1998 | ||
| 394 | 固体燃料:烟煤 Solid fuels: Hard coal | Total sulfur (TS) content Range: (0,03 – 5,00) %m/m m High temp. combustion method with IR detection | PN-G-04584:2001 | ||
| 395 | 固体燃料:烟煤 Solid fuels: Hard coal | Kjeldahl’s nitrogen content Range: (0,15 – 4,50) %m/m Titrimetric - potentiometric method | SO-4/ZLGIG/PB.14 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.14 ed. 1st of 01/08/2025 | ||
| 396 | 固体燃料:烟煤 Solid fuels: Hard coal | Gross calorific value Range: (8800 – 40000) kJ/kg Calorimetric method Net calorific value (from calculations) | PN-ISO 1928:2020-05 | ||
| 397 | 固体燃料:烟煤 | Chlorine content Range: (0,07 – 2,00) %m/m Titrimetric method | PN-ISO 587:2000 | ||
| 398 | 固体燃料:烟煤 | 汞含量 范围:(0,01 – 20) mg/kg 汞齐化技术原子吸收光谱法 Mercury content Range: (0,01 – 20) mg/kg Atomic absorption spectrometry method with amalgamation | SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1st of 01/08/2025 | ||
| 399 | 固体燃料:烟煤 | Elements content Range: As (1,0 – 500) mg/kg Ba (1,0 – 50000) mg/kg Cd (1,0 – 500) mg/kg Co (1,0 – 1000) mg/kg Cr (1,0 – 1000) mg/kg Cu (1,0 – 1000) mg/kg Mn (1,0 – 30000) mg/kg Mo (1,0 – 1000) mg/kg Ni (1,0 – 1000) mg/kg Pb (1,0 – 5000) mg/kg Sb (1,0 – 500) mg/kg Se (2,0 – 500) mg/kg Sn (1,0 – 500) mg/kg Zn (1,0 – 50000) mg/kg Inductively coupled plasma optical emission spectrometry method (ICP-OES) | SO-4/ZLGIG/PB.11 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.11 ed. 1st of 01/08/2025 | ||
| 400 | 固体燃料:烟煤 | Oxides content Range: SiO2 (3,36 – 69,06) %m/m Al2O3 (2,18 – 43,23) %m/m Fe2O3 (1,16 – 50,20) %m/m CaO (0,40 – 34,58) %m/m MgO (0,80 – 17,84) %m/m Na2O (0,07 – 5,75) %m/m K2O (0,16 – 3,88) %m/m SO3 (0,27 – 33,50) %m/m TiO2 (0,10 – 3,25) %m/m P2O5 (0,02 – 8,84) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD- XRF) | ISO 13605:2018 (E) | ||
| 401 | 固体燃料:烟煤 | Fluorine content Range: (0.002 – 0.15) % m/m Potentiometric method | PN-82/G-04543 | ||
| 402 | 固体燃料:烟煤 | Content of volatile matter Range: (1,00 – 40,00) % m/m Gravimetric method | PN-G-04516:1998 | ||
| 403 | 固体燃料:烟煤 | Bromine content Range: (1 – 40) mg/kg Wavelength dispersive X-ray fluorescence spectrometry method (WD-XRF) | SO-4/ZLGIG/PB.25 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.25 ed. 1st 01/08/2025 | ||
| 404 | Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | 氧化物含量 范围:SiO2 (1,20 – 89,16) %m/m、Al2O3 (0,12 – 43,72) %m/m、Fe2O3 (0,29 – 70,72) %m/m、CaO (0,18 – 70,81) %m/m、MgO (0,15 – 23,51) %m/m、Na2O (0,01 – 10,52) %m/m、K2O (0,05 – 3,78) %m/m、SO3 (0,30 – 72,02) %m/m、TiO2 (0,01 – 3,25) %m/m、P2O5 (0,04 – 14,66) %m/m X射线荧光法 | PN-EN 15309:2010 | ||
| 405 | Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Oxides content Range: SiO2 (0,01 – 97,35) %m/m Al2O3 (0,01 – 95,50) %m/m Fe2O3 (0,01 – 95,75) %m/m CaO (0,01 – 99,24) %m/m MgO (0,01 – 82,25) %m/m Na2O (0,01 – 39,28) %m/m K2O (0,01 – 48,93) %m/m SO3 (0,02 – 51,40) %m/m TiO2 (0,01 – 39,79) %m/m P2O5 (0,01 – 44,84) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD-XRF) Oxides content Range: SiO2 (0,01 – 97,35) %m/m Al2O3 (0,01 – 95,50) %m/m Fe2O3 (0,01 – 95,75) %m/m CaO (0,01 – 99,24) %m/m MgO (0,01 – 82,25) %m/m Na2O (0,01 – 39,28) %m/m K2O (0,01 – 48,93) %m/m SO3 (0,02 – 51,40) %m/m TiO2 (0,01 – 39,79) %m/m P2O5 (0,01 – 44,84) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD-XRF) | PN-EN 15309:2010 | ||
| 406 | Solid wastesO): code 01 03 80, 01 03 81 | Elements content Range: As (2,0 – 2800) mg/kg Ba (2,0 – 2200) mg/kg Cd (1,0 – 10000) mg/kg Co (1,0 – 10000) mg/kg Cr (1,0 – 10000) mg/kg Cu (1,0 – 10000) mg/kg Mn (1,0 – 11000) mg/kg Mo (1,0 – 2000) mg/kg Ni (1,0 – 10000) mg/kg Pb (10,0 – 17000) mg/kg Sb (2,0 – 2000) mg/kg Se (2,0 – 2000) mg/kg Sn (1,0 – 2000) mg/kg Zn (1,0 – 21200) mg/kg Inductively coupled plasma optical emission spectrometry method (ICP- OES) | PN-EN 13657:2006 PN-EN ISO 11885:2009 | ||
| 407 | Solid wastesO): code 19 08 05 Sewage sludge | Loss on ignition content – organic matter content Range: (25,00 – 90,00) % m/m Gravimetric method | PN-EN 15935:2022-01 | ||
| 408 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 | Water and dry matter contents Range: (0,20 – 60,0) %m/m Gravimetric method | PN-EN 15934:2013-02 | ||
| 409 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 | Ash content Range: (0,10 – 99,0) %m/m Gravimetric method Loss on ignition content (from calculations) | SO-4/ZLGIG/PB.03 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.03 ed. 1st of 01/08/2025 | ||
| 410 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 | Content of Total Inorganic carbon (TIC) Range: (0,03 – 14,00) %m/m Infrared spectrometry method (IR) Content of Organic carbon (TOC) (from calculations) | PN-EN 15936:2022-07 | ||
| 411 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 | Mercury content Range: (0,01 – 20) mg/kg Atomic absorption spectrometry with amalgamation | SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1 of 01/08/2025 | ||
| 412 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Elements content Range: As (1,0 – 100000) mg/kg Ba (1,0 – 100000) mg/kg Cd (1,0 – 100000) mg/kg Co (1,0 – 100000) mg/kg Cr (1,0 – 100000) mg/kg Cu (1,0 – 100000) mg/kg Mn (1,0 – 100000) mg/kg Mo (1,0 – 100000) mg/kg Ni (1,0 – 100000) mg/kg Pb (1,0 – 100000) mg/kg Sb (1,0 – 100000) mg/kg Se (2,0 – 100000) mg/kg Sn (1,0 – 100000) mg/kg Zn (1,0 – 100000) mg/kg Inductively coupled plasma optical emission spectrometry metod (ICP-OES) | PN-EN 13657:2006 PN-EN ISO 11885:2009 | ||
| 413 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Total carbon, total sulfur and total hydrogen content, and calculation of non- moisture hydrogen content Range: C (0,12 – 50,00) %m/m H (0,11 – 20,00) %m/m S (0,03 – 13,70) %m/m High temp. combustion method with IR detection | SO-4/ZLGIG/PB.04 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.04 ed. 1st 01/08/2025 | ||
| 414 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Gross calorific value Range:(4030 – 40000) kJ/kg Calorimetric method Net calorific value (from calculations) | SO-4/ZLGIG/PB.22 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.22 ed. 1st of 01/08/2025 | ||
| 415 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Kjeldahl’s nitrogen content Range: (0.15 – 5.60) %m/m Titrimetric method | SO-4/ZLGIG/PB.14 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.14 ed. 1st of 01/08/2025 | ||
| 416 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Chlorine content Range:(0,07 – 60,7) %m/m Titrimetric method | SO-4/ZLGIG/PB.17 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.17 ed. 1st 01/08/2025 | ||
| 417 | 废物 O):代码 01 01 02、01 03 06、01 04 12、01 04 81、10 01 01、10 01 02、10 01 03、10 01 05、10 01 07、10 01 17、10 01 24、10 01 25、10 01 80、10 01 82、10 09 08、17 01 01、17 01 02、17 01 81、17 05 04、17 05 08、17 09 04、19 01 12、19 08 01、19 08 02、19 08 05、19 08 14、19 09 01、19 09 02、19 12 09、19 13 06;炉渣、炉底灰与锅炉粉尘、燃煤飞灰、钙法烟气脱硫产生的固体废物、流化床砂、飞灰与钙法烟气脱硫固体废物的混合物、燃烧废物湿排产生的灰渣混合料 Solid wastesO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 09, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Chlorides content Range: (0,08 – 68,00) %m/m Titrimetric method | SO-4/ZLGIG/PB.18 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.18 ed. 1st 01/08/2025 | ||
| 418 | 固体燃料:固体生物质 - 固体生物燃料 Solid fuels: solid biomass - solid biofuel | Analytical moisture content Range: (0,10 – 20,0) %m/m Gravimetric method | PN-EN ISO 18134-3:2023-12 | ||
| 419 | 固体燃料:固体生物质 - 固体生物燃料 Solid fuels: solid biomass - solid biofuel | Total moisture content Range: (0,50 – 55,0) %m/m Gravimetric method | PN-EN ISO 18134-2:2017-03 | ||
| 420 | 固体燃料:固体生物质 - 固体生物燃料 Solid fuels: solid biomass - solid biofuel | Ash content Range: (0,10 – 50,0) %m/m Gravimetric method Ash content Range: (0,10 – 50,0) %m/m Gravimetric method | PN-EN ISO 18122:2023-05 | ||
| 421 | 固体燃料:固体生物质 - 固体生物燃料 Solid fuels: solid biomass - solid biofuel | Oxides content Range: SiO2 (5,42 – 66,04) %m/m Al2O3 (0,36 – 7,90) %m/m Fe2O3 (0,48 – 23,00) %m/m CaO (2,91 – 41,94) %m/m MgO (0,80 – 8,91) %m/m Na2O (0,16 – 3,89) %m/m K2O (0,64 – 25,17) %m/m SO3 (0,32 – 7,17) %m/m TiO2 (0,02 – 0,90) %m/m P2O5 (0,75 – 27,96) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD-XRF) | SO-4/ZLGIG/PB.24 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.24 ed. 1st of 01/08/2025 | ||
| 422 | 固体燃料:固体生物质 - 固体生物燃料 Solid fuels: solid biomass - solid biofuel | Total carbon, Total hydrogen content Range: C (20,0 – 60,0) %m/m H (0,11 – 11,00) %m/m High temp. combustion method with IR detection | PN-EN ISO 16948:2015-07 | ||
| 423 | 固体燃料:固体生物质 - 固体生物燃料 Solid fuels: solid biomass - solid biofuel | Gross calorific value Range: (6 000 – 25 000) kJ/kg Calorimetric method Net calorific value (from calculations) | PN-EN ISO 18125:2017-07 | ||
| 424 | 固体燃料:固体生物质 - 固体生物燃料 Solid fuels: solid biomass - solid biofuel | Total sulfur content Range: (0,03 – 5,00) %m/m High temp. combustion method with IR detection | PN-EN ISO 16994:2016-10 | ||
| 425 | Building materials: - mineral aggregates Grounds Soil Solid fuels: - secondary fuel – alternative fuel - hard coal - solid biomass - solid biofuel WasteO): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 09, 19 12 10, 19 13 06 Slag, bottom ash and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Oxides content Range: SiO2 (0,505 – 90,36) %m/m Al2O3 (0,042 – 54,50) %m/m Fe2O3 (0,015 – 14,67) %m/m CaO (0,018 – 61,87) %m/m MgO (0,012 – 18,00) %m/m Na2O (0,007 – 3,86) %m/m K2O (0,009 – 3,07) %m/m SO3 (0,010 – 5,80) %m/m TiO2 (0,002 – 2,64) %m/m P2O5 (0,008 – 2,69) %m/m Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) method | ISO/TS 16996:2015(E) ISO 18227:2014(E) PN-EN 15309:2010 | ||
| 426 | Building materials: mineral aggregates Soils Grounds Solid fuels: solid recovered fuels - refuse derived fuel, - coal - solid biomass - solid biofuel Solid waste O): code 01 01 02, 01 03 06, 01 04 12, 01 04 81, 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 82, 10 09 08, 17 01 01, 17 01 02, 17 01 81, 17 05 04, 17 05 08, 17 09 04, 19 01 12, 19 08 01, 19 08 02, 19 08 05, 19 08 14, 19 09 01, 19 09 02, 19 12 01, 19 12 04, 19 12 06, 19 12 07, 19 12 08, 19 12 09, 19 12 10, 19 13 06 Slag, bottom ash, and boiler dust, coal fly ash, solid waste from lime-based flue gas desulfurization methods, sands from fluidized beds, mixtures of fly ash and solid waste from lime-based flue gas desulfurization methods, ash-slag mixtures from wet discharge of combustion waste | Oxides content Range: SiO2 (0,505 – 90,36) %m/m Al2O3 (0,042 – 54,50) %m/m Fe2O3 (0,015 – 14,67) %m/m CaO (0,018 – 61,87) %m/m MgO (0,012 – 18,00) %m/m Na2O (0,007 – 3,86) %m/m K2O (0,009 – 3,07) %m/m SO3 (0,010 – 5,80) %m/m TiO2 (0,002 – 2,64) %m/m P2O5 (0,008 – 2,69) %m/m Wavelength dispersive X-ray fluorescence spectrometry method (WD-XRF) | ISO/TS 16996:2015(E) ISO 18227:2014(E) PN-EN 15309:2010 | ||
| 427 | 水、废水 | Polychlorinated biphenyls concentration (PCB) Range: PCB 28 (0,10 – 2,0) µg/l PCB 52 (0,10 – 2,0) µg/l PCB 101 (0,10 – 2,0) µg/l PCB 118 (0,10 – 2,0) µg/l PCB 138 (0,10 – 2,0) µg/l PCB 153 (0,10 – 2,0) µg/l PCB 180 (0,10 – 2,0) µg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN ISO 6468:2002 | ||
| 428 | 水、废水 | Sum of polychlorinated biphenyls (PCBs) (from calculations) | |||
| 429 | 水、废水 | Mineral oil index Range: (0,10 – 50) mg/l Gas chromatography method with flame ionization detection (GC-FID) | PN-EN ISO 9377-2:2003 | ||
| 430 | 水、废水 | Concentration of volatile halogenated hydrocarbon derivatives Range: trichloromethane (chloroform) (0,40 – 100) μg/l bromodichloromethane (0,40 – 100) μg/l chlorodibromomethane (0,40 – 100) μg/l tribromomethane (bromoform) (0,40 – 100) μg/l | PN-EN ISO 10301:2002 | ||
| 431 | 水、废水 | Volatile halogenated hydrocarbons concentration Range: trichloromethane (chloroform), (0,40 – 100) μg/l bromodichloromethane, (0,40 – 100) μg/l chlorodibromomethane, (0,40 – 100) μg/l tribromomethane (bromoform), (0,40 – 100) μg/l tetrachloromethane (carbon tetrachhloride), (0,40 – 100) μg/l trichloroethene (trichloroethylene, TRI), (0,40 – 100) μg/l tetrachloroethene (tetrachloroethylene, nadchloroetylen,PER) (0,40 – 100) μg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN ISO 10301:2002 | ||
| 432 | 水、废水 | Sum of volatile halogenated hydrocarbons (from calculations) | |||
| 433 | 水、废水 | Polycyclic aromatic hydrocarbons concentration (PAHs) Range: naphthalene (0,050 – 10) μg/l acenaphtene (0,050 – 10) μg/l fluorene (0,050 – 10) μg/l phenanthrene (0,050 – 10) μg/l anthracene (0,050 – 10) μg/l fluoranthene (0,050 – 10) μg/l pyrene (0,050 – 10) μg/l benzo(a)anthracene (0,050 – 10) μg/l chrysene (0,050 – 10) μg/l benzo(b)fluoranthene (0,050 – 10) μg/l benzo(k)fluoranthene (0,050 – 10) μg/l benzo(a)pyrene (0,050 – 10) μg/l benzo(g,h,i)perylene (0,050 – 10) μg/l indeno(1,2,3-cd)pyrene (0,050 – 10) μg/l dibenzo(a,h)anthracene (0,050 – 10) μg/l High-performance liquid chromatography methopd with fluorescence detection (HPLC-FLD) | PN-EN ISO 17993:2005 z wyłączeniem pkt 8.1-8.4 SO-4/ZLGIG/WYK-07 ed. 1 z dn. 01.08.2025 PN-EN ISO 17993:2005 excluding pt 8.1-8.4 SO-4/ZLGIG/WYK-07 ed. 1st of 01/08/2025 | ||
| 434 | 水、废水 | Sum of polycyclic aromatic hydrocarbons (PAH) (calculated) Sum of polycyclic aromatic hydrocarbons (PAH) (from calculations) | |||
| 435 | 水、废水 | Volatile aromatic hydrocarbon concentration Range: benzene (0,20 – 50) μg/l toluene (0,20 – 50) μg/l ethylobenzene (0,20 – 50) μg/l o-xylene (0,20 – 50) μg/l m,p-xylene (0,40 – 100) μg/l Gas chromatography method with headspace analysis and mass spectrometric detection (HS-GC-MS) | PN-ISO 11423-1:2002 | ||
| 436 | 水、废水 | Sum of volatile aromatic hydrocarbon (from calculations) | |||
| 437 | 水、废水 | Phenols concentration : Range: Pentachlorophenol (PCP) (0,010 – 2,0) μg/l 2,4,6-trichlorophenol (0,050 – 2,0) μg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN 12673:2004 | ||
| 438 | 水、废水 | Chlorobenzenes concentration : Range: hexachlorobenzene (HCB) (0,010 – 2,0) μg/l pentachlorobenzene (0,010 – 2,0) μg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN ISO 6468:2002 | ||
| 439 | 水、废水 | Organochlorine pesticide concentration Range: aldrin (0,020 – 10,0) μg/l endrin (0,020 – 10,0) μg/l dieldrin (0,020 – 10,0) μg/l heptachlor (0,020 – 10,0) μg/l heptachlor epoxide A (0,020 – 10,0) μg/l methoxychlor (0,020 – 10,0) μg/l α-hexachlorocyclohexane (α-HCH) (0,020 – 10,0) μg/l β-hexachlorocyclohexane (β-HCH) (0,020 – 10,0) μg/l γ-hexachlorocyclohexane (lindane, γ- HCH) (0,020 – 10,0) μg/l p,p’–dichlorodiphenyltrichloroethane (p,p’-DDT) (0,020 – 10,0) μg/l p,p’–dichlorodiphenyldichloroethane (p,p’-DDD) (0,020 – 10,0) μg/l p,p’–dichlorodiphenyldichloroethylene (p,p’-DDE) (0,020 – 10,0) μg/l isodrin (0,020 – 10,0) μg/l tetradifon (0,020 – 10,0) μg/l alachlor (0,050 – 10,0) μg/l Gas chromatography with electron capture detection (GC-ECD) | PN-EN ISO 6468:2002 z wyłączeniem pkt 7.2 SO-4/ZLGIG/WYK-08 ed. 1 z dn. 01.08.2025 | ||
| 440 | 水、废水 | Organochlorines pesticides concentration aldrin (0,020 – 10,0) μg/l endrin (0,020 – 10,0) μg/l dieldrin (0,020 – 10,0) μg/l heptachlor (0,020 – 10,0) μg/l heptachlor A epoxide (0,020 - 10,0) μg/l methoxychlor (0,020 – 10,0) μg/l α-hexachlorocyclohexane (α-HCH) (0,020 – 10,0) μg/l β-hexachlorocyclohexane (β-HCH) (0,020 – 10,0) μg/l γ-hexachlorocyclohexane (lindane, γ-HCH) (0,020 – 10,0) μg/l p,p'-dichlorodiphenyltrichloroethane (p,p'-DDT) (0,020 – 10,0) μg/l p,p'-dichlorodiphenyldichloroethane (p,p'-DDD) (0,020 – 10,0) μg/l p,p'-dichlorodiphenyldichloroethylene (p,p'-DDE) (0,020 – 10,0) μg/l isodrine (0,020 – 10,0) μg/l tetradifon (0,020 – 10,0) μg/l alachlor (0,050 – 10,0) μg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN ISO 6468:2002 excluding pt 7.2 SO-4/ZLGIG/WYK-08 edition 1st of 01/08/2025 PN-EN ISO 6468:2002 z wyłączeniem pkt 7.2 SO-4/ZLGIG/WYK-08 ed. 1 z dn. 01.08.2025 PN-EN ISO 6468:2002 excluding pt 7.2 SO-4/ZLGIG/WYK-08 edition 1st of 01/08/2025 | ||
| 441 | 水、废水 | Organonitrogen pesticides concentration Range: trifluralin (0,020 – 10,0) μg/l Gas chromatography method with electron capture detection (GC-ECD) | |||
| 442 | 水、废水 | Organophosphate pesticide concentration Range: chlorpyrifos (0,020 – 10,0) μg/l fenitrothion (0,050 – 10,0) μg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN ISO 6468:2002 z wyłączeniem pkt 7.2 SO-4/ZLGIG/WYK-08 ed. 1 z dn. 01.08.2025 PN-EN ISO 6468:2002 excluding pt 7.2 SO-4/ZLGIG/WYK-08 edition 1st of 01/08/2025 | ||
| 443 | 水、废水 | Organochlorine pesticides concentration Range: o,p'-dichlorodiphenyltrichloroethane (o,p'-DDT) (0,010 – 2,0) μg/l hexachlorobutadiene (HCBD) (0,010 – 2,0) μg/l α-Endosulfan (Endosulfan I) (0,010 – 2,0) μg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN ISO 6468:2002 | ||
| 444 | 水、废水 | Organo-nitrogen (triazine) pesticides concentration : atrazine, simazine water - range: (0,050 – 2,0) μg/l sewage- range: (0,10 – 2,0) μg/l Liquid chromatography method with spectrophotometric detection (HPLC-UV) | PN-EN ISO 11369:2002 | ||
| 445 | 水、废水 | Organophosphate pesticide concentration: chlorfenvinphos water - range: (0,050 – 2,0) μg/l sewage - range: (0,10 – 2,0) μg/l Liquid chromatography method with spectrophotometric detection (HPLC-UV) | PN-EN ISO 11369:2002 | ||
| 446 | 水、废水 | Sum of pesticides (from calculations) | |||
| 447 | 水、废水 | 1,2-Dichloroethane concentration (EDC) Range: (1,0 – 100) μg/l Gas chromatography method with electron capture detection (GC-ECD) | PN-EN ISO 10301:2002 | ||
| 448 | 水 Water | Polycyclic aromatic hydrocarbons concentration (PAH): benzo(b)fluoranthene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l benzo(k)fluoranthene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l benzo(a)pyrene (2,0 – 30) ng/l (0,0020 - 0,030) µg/l benzo(g,h,i)perylene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l indeno(1,2,3-cd)pyrene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l dibenzo(a,h)anthracene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l High-performance liquid chromatography method with fluorescence detection (HPLC-FLD) | PN-EN ISO 17993:2005 z wyłączeniem pkt 8.1-8.4 SO-4/ZLGIG/WYK-04 ed. 1 z dn. 01.08.2025 PN-EN ISO 17993:2005 excluding pt 8.1-8.4 SO-4/ZLGIG/WYK-04 edition 1st of 01/08/2025 | ||
| 449 | 水 Water | Sum of polycyclic aromatic hydrocarbons (PAHs) (from calculations) | |||
| 450 | 土壤、土体 Soil, grounds | Mineral oil content (C - C hydrocarbons) 10 40 Range: (10,0 –8000) mg/kg Gas chromatography method with flame ionization detection(GC-FID) | PN-EN ISO 16703:2011 | ||
| 451 | 土壤、土体 Soil, grounds | Polycyclic aromatic hydrocarbons content(PAH) Range: naphthalene (0,10 – 50) mg/kg acenaphtene (0,10 – 50) mg/kg fluorene (0,10 – 50) mg/kg phenanthrene (0,10 – 50) mg/kg anthracene (0,10 – 50) mg/kg fluoranthene (0,10 – 50) mg/kg pyrene (0,10 – 50) mg/kg benzo(a)anthracene (0,10 – 50) mg/kg chrysene (0,10 – 50) mg/kg benzo(b)fluoranthene (0,10 – 50) mg/kg benzo(k)fluoranthene (0,10 – 50) mg/kg benzo(a)pyrene (0,10 – 50) mg/kg benzo(g,h,i)perylene (0,10 – 50) mg/kg indeno(1,2,3-cd)pyrene (0,10 – 50) mg/kg dibenzo(a,h)anthracene (0,10 – 50) mg/kg High-performance liquid chromatography method with fluorescence detection (HPLC-FLD) | PN-ISO 13877:2004 | ||
| 452 | 土壤、土体 Soil, grounds | Sum of polycyclic aromatic hydrocarbons (PAH) (calculated) Sum of polycyclic aromatic hydrocarbons (PAH) (from calculations) | PN-ISO 13877:2004 | ||
| 453 | 土壤、土体 Soil, grounds | Volatile aromatic hydrocarbons content Range: benzene (0,040 – 20) mg/kg toluene (0,040 – 20) mg/kg ethylbenzene (0,040 – 20) mg/kg o-xylene (0,040 – 20) mg/kg styrene (0,040 – 20) mg/kg m,p-xylene (0,080 – 40) mg/kg Gas chromatography method with headspace analysis and mass spectrometry detection (HS-GC-MS) | PN-EN ISO 22155:2016-07 | ||
| 454 | 土壤、土体 Soil, grounds | Sum of volatile aromatic hydrocarbons (from calculations) | |||
| 455 | 与生活饮用水接触的玻璃与陶瓷;与生活饮用水接触的塑料与橡胶制品 Glass and ceramic products intended to come into contact with water for human consumption Products made from plastic and rubber intended to come into contact with water for human consumption | Total organic carbon (TOC) concentration after migration Range: (0,20 – 20,0) mg/l High temp. combustion method with IR detection | PN-EN 12873-1:2014-09 PN-EN 1484:1999 | ||
| 456 | 与生活饮用水接触的玻璃与陶瓷;与生活饮用水接触的塑料与橡胶制品 Glass and ceramic products intended to come into contact with water for human consumption Products made from plastic and rubber intended to come into contact with water for human consumption | Migration (calculated) | |||
| 457 | 与生活饮用水接触的玻璃与陶瓷;与生活饮用水接触的塑料与橡胶制品 Glass and ceramic products intended to come into contact with water for human consumption Products made from plastic and rubber intended to come into contact with water for human consumption | Elements concentration after migration Range: As (0,0010 – 2,0) mg/l Cd (0,00005 – 2,0) mg/l Cr (0,0010 – 2,0) mg/l Ni (0,0020 – 2,0) mg/l Pb (0,0010 – 2,0) mg/l Inductively coupled plasma mass spectrometry method (ICP-MS) | PN-EN 12873-1:2014-09 PN-EN ISO 17294-2:2024-04 | ||
| 458 | 与生活饮用水接触的玻璃与陶瓷;与生活饮用水接触的塑料与橡胶制品 Glass and ceramic products intended to come into contact with water for human consumption Products made from plastic and rubber intended to come into contact with water for human consumption | Polycyclic aromatic hydrocarbons concentration (PAH) Range: benzo(b)fluoranthene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l benzo(k)fluoranthene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l benzo(a)pyrene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l benzo(g,h,i)perylene (2,0 – 30) ng/l (0,0020 - 0,030) µg/l indeno(1,2,3-cd)pyrene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l dibenzo(a,h)anthracene (2,0 – 30) ng/l (0,0020 – 0,030) µg/l High-performance liquid chromatography method with fluorescence detection (HPLC-FLD) | PN-EN 12873-1:2014-09 PN-EN ISO 17993:2005 z wyłączeniem pkt 8.1-8.4 SO-4/ZLGIG/WYK-04 ed. 1 z dn. 01.08.2025 PN-EN 12873-1:2014-09 PN-EN ISO 17993:2005 excluding pt 8.1-8.4 SO-4/ZLGIG/WYK-04 ed 1st of 01/08/2025 | ||
| 459 | 与生活饮用水接触的玻璃与陶瓷;与生活饮用水接触的塑料与橡胶制品 Glass and ceramic products intended to come into contact with water for human consumption Products made from plastic and rubber intended to come into contact with water for human consumption | Sum of polycyclic aromatic hydrocarbons (PAH) (from calculations) | PN-EN 12873-1:2014-09 PN-EN ISO 17993:2005 excluding pt. 8.1-8.4 SO-4/ZLGIG/WYK-04 ed 1st of 01/08/2025 | ||
| 460 | Water E | Elements concentration Inductively coupled plasma mass spectrometry method (ICP-MS) | PN-EN ISO 17294-2 | ||
| 461 | 固体燃料:烟煤、褐煤 Solid fuels: hard coal, brown coal | Pyritic sulphat content Range: (0,01 – 5,40) % Weight method | PN-G-04582:1997 | ||
| 462 | 固体燃料:烟煤、褐煤 Solid fuels: hard coal, brown coal | Sulphate sulphur content Range: (0,01 – 1,60) % Weight method | PN-G-04582:1997 | ||
| 463 | 固体燃料:烟煤、褐煤 Solid fuels: hard coal, brown coal | The true relative density content Range: (1,275 – 2,675) g/cm3 Pycnometric method | PN-G-04537:1998 | ||
| 464 | 固体燃料:烟煤、褐煤 Solid fuels: hard coal, brown coal | Chlorine content Range: (0,043 – 0,640) % Titration method | SW/ZLGIG/PB-13 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-13, 2nd edition of 18 August 2025 | ||
| 465 | 固体燃料:烟煤、褐煤 Solid fuels: hard coal, brown coal | Chlorine content Range: (0,005 - 1,100) % High-temperature combustion method with coulometric detection | SW/ZLGIG/PB-12 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-12, 2nd edition of 18 August 2025 | ||
| 466 | Solid fuels: brown coal | Moisture content in the analytical sample (moisture in the sample for analysis) Range: (5,50 – 10,20) % Weight method | PN-ISO 5068:2004 | ||
| 467 | 固体燃料:烟煤 | Sampling for chemical and physical analysis | PN-G-04502:2014-11 pkt 5.3.1.2 | ||
| 468 | 固体燃料:烟煤 | Caking power Range: 0 – 90 Roga method | PN-G-04508:2020-05 | ||
| 469 | 固体燃料:烟煤 | Crucible swelling number Range: 0 – 9 Optical method | PN-ISO 501:2007 | ||
| 470 | 固体燃料:烟煤 | Dilatometric indices Range: a (10 – 35) % b (-20 – 300) % Temperature (330 – 550) oC Audibert-Arnu dilatometer method | PN-81/G-04517 | ||
| 471 | 固体燃料:烟煤 | Plastic properties indices Range: (3 – 29 400) ddpm Gieseler method | PN-G-04565:1994 | ||
| 472 | 固体燃料:烟煤 | Plastometric indices Range: x 8 mm – 42 mm Y 5 mm – 21 mm Sapoznikow method | PN-88/G-04545 | ||
| 473 | 固体燃料:烟煤 | Expension pressure in constant volume Range: P (0,04 – 0,42) kG/cm2 max Manometric method | PN-73/G-04522 | ||
| 474 | 固体燃料:烟煤 | Hardgrove grindability index Range: 25 – 100 Hardgrove method | PN-ISO 5074:2002 | ||
| 475 | 固体燃料:烟煤 | Reflectance of vitrinite Range: (0,40 – 2,85) % Microcope method | PN-ISO 7404-5:2002 | ||
| 476 | 固体燃料:烟煤 | Maceral group composition Range: (1 – 85) % Microcope method | PN-ISO 7404-3:2001 | ||
| 477 | 固体燃料:烟煤 | Fixed carbon indices (from calculations) | PN-G-04516:1998 | ||
| 478 | 固体燃料:烟煤 | First degree moisture content (transient moisture) Range: (0,50 – 23,50) % Weight method | PN-ISO 589:2006 Metoda A2 PN-ISO 589:2006 A2 method | ||
| 479 | 固体燃料:烟煤 | Second degree moisture content (moisture remaining in the sample) Range: (0,20 – 17,00) % Weight method | PN-ISO 589:2006 Metoda A2 PN-ISO 589:2006 A2 method | ||
| 480 | 固体燃料:烟煤 | Second degree moisture content (moisture remaining in the sample) Range: (1,10 – 9,70) % Weight method | PN-ISO 589:2006 A1 metoda PN-ISO 589:2006 A1 method | ||
| 481 | 固体燃料:烟煤 | Size analysis by sieving Class (0,2 – 200,0) mm Range: (0,0 – 100,0) % Sieve method Size analysis by sieving Class (0,2 – 200,0) mm Range: (0,0 – 100,0) % Sieve method | PN-ISO 1953:1999 | ||
| 482 | 固体燃料:烟煤 | Autioinflammability index Range: Sza’ (1 – 62) °C/min Sza (10 – 172) °C/min Olpiński method | PN-G-04558:1993 | ||
| 483 | 固体燃料:烟煤 | Transportability index using by the GIG method Range: (68 – 10 844) Pa Tensiometric method | PN-82/G-04544 | ||
| 484 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Transient moisture Range: (0,50 – 45,00) % Weight method | PN-80/G-04511 | ||
| 485 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Analytical moisture content Range: (0,20 - 17,20) % Thermogravimetric method (TGA) | PN-G-04560:1998 | ||
| 486 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Analytical moisture content Range: (0,05 – 17,00) % Weight method | PN-80/G-04511 | ||
| 487 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Total moisture content Range: (0,10 – 22,10) % Gravimetric method Total moisture content Range: (0,10 – 22,10) % Weight method | PN-80/G-04511 pkt 2.3.4 | ||
| 488 | 固体燃料:烟煤、褐煤、烟煤焦炭 | 全水分含量(由计算得出) Total moisture content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. PN-ISO 589:2006 SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 489 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Ash content Range: (1,10 – 95,85) % Thermogravimetric method (TGA) | PN-G-04560:1998 | ||
| 490 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Ash content Range: (1,05 – 96,30) % Weight method | PN-ISO 1171:2002 | ||
| 491 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Volatile matter content Range: (0,40 – 48,10) % Weight method | PN-G-04516:1998 | ||
| 492 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Volatile matter content Range: (0,40 – 48,90) % Weight method | PN-ISO 562:2000 | ||
| 493 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Gross calorific value Range: (1460 – 35900) kJ/kg Calorimetric method | PN-81/G-04513 PN-ISO 1928:2020-05 | ||
| 494 | 固体燃料:烟煤、褐煤、烟煤焦炭 | 低位发热量(由计算得出) Net calorific value (from calculations) | PN-81/G-04513 PN-ISO 1928:2020-05 | ||
| 495 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Total sulphur content Range: (0,20 – 7,00) % High-temperature combustion method with IR detection | PN-G-04584:2001 | ||
| 496 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Total sulphur content Range: (0,20 – 7,00) % Weight method | PN-ISO 334:1997 | ||
| 497 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Sulphur content in ash and ash sulphur content Range: (0,06 – 0,60) % High-temperature combustion method with IR detection | PN-G-04584:2001 | ||
| 498 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Combustible sulphur content (from calculations) | PN-G-04584:2001 | ||
| 499 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Organic sulphur content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 500 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Carbon content Range: (1,00 – 100,00) % High-temperature combustion method with IR detection | PN-G-04571:1998 | ||
| 501 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Nitrogen content Range: (0,30 – 2,50) % High-temperature combustion method with TC detection | PN-G-04571:1998 | ||
| 502 | 固体燃料:烟煤、褐煤、烟煤焦炭 | 氧含量(由计算得出) Oxygen content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 503 | 固体燃料:烟煤、褐煤、烟煤焦炭 | Characteristic temperatures of fusibility of ash Range: (860 – 1550) °C High-temperature microscopy method | PN-82/G-04535 PN-ISO 540:2001 | ||
| 504 | Solid fuels: coke from hard coal | Total moisture content Range: (0,10 – 22,10) % Gravimetric method Total moisture content Range: (0,10 – 22,10) % Weight method | PN-G-04611:2020-06 | ||
| 505 | Solid fuels: coke from hard coal | Hydrogen content Range: (0,04 – 1,80) % High-temperature combustion method with IR detection | PN-G-04571:1998 | ||
| 506 | 固体燃料:烟煤 | Hydrogen content Range: (1,30 - 6,40) % High-temperature combustion method with IR detection | PN-G-04571:1998 | ||
| 507 | Solid fuels: brown coal | Hydrogen content Range: (3,60 – 6,20) % High-temperature combustion method with IR detection | PN-G-04571:1998 | ||
| 508 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Transient moisture Range: (1,30 – 19,70) % Weight method | SW/ZLGIG/PB-03 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-03, 2nd edition of 18 August 2025 | ||
| 509 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Moisture content in analytical sample Range: (0,40 – 16,30) % Thermogravimetric method (TGA) | SW/ZLGIG/PB-04 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-04, 2nd edition of 18 August 2025 | ||
| 510 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Moisture content in analytical sample Range: (0,35 – 16,60) % Weight method | SW/ZLGIG/PB-05 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-05, 2nd edition of 18 August 2025 | ||
| 511 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | 全水分含量(由计算得出) Total moisture content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 512 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Ash content Range: (3,60 – 81,00) % Thermogravimetric method (TGA) | SW/ZLGIG/PB-07 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-07, 2nd edition of 18 August 2025 | ||
| 513 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Ash content Range: (3,60 – 81,00) % Weight method (slow burning) | SW/ZLGIG/PB-06 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-06, 2nd edition of 18 August 2025 | ||
| 514 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Carbon content Range: (34,00 – 85,50) % High-temperature combustion method with IR detection | SW/ZLGIG/PB-11 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-11, 2nd edition of 18 August 2025 | ||
| 515 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Hydrogen content Range: (3,20 – 8,00) % High-temperature combustion method with IR detection | SW/ZLGIG/PB-11 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-11, 2nd edition of 18 August 2025 | ||
| 516 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Nitrogen content Range: (0,70 – 2,30) % High-temperature combustion method with TC detection | SW/ZLGIG/PB-11 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-11, 2nd edition of 18 August 2025 | ||
| 517 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Total sulfur content Range: (0,50 – 2,20) % High-temperature combustion method with IR detection | SW/ZLGIG/PB-10 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-10, 2nd edition of 18 August 2025 | ||
| 518 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Volatile matter content Range: (10,40 – 81,50) % Weight method | SW/ZLGIG/PB-08 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-08, 2nd edition of 18 August 2025 | ||
| 519 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | Gross calorific value Range: (1200 – 31500) kJ/kg Calorimetric method | SW/ZLGIG/PB-09 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-09, 2nd edition of 18 August 2025 | ||
| 520 | 固体燃料:固体生物燃料与固体燃料的混合物、固体再生燃料与固体燃料的混合物 Solid fuels: mixture of solid biofuel with solid fuel, mixture of solid recovered fuel with solid fuel | 低位发热量(由计算得出) Net calorific value (from calculations) | SW/ZLGIG/PB-09 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-09, 2nd edition of 18 August 2025 | ||
| 521 | 固体燃料:烟煤、烟煤焦炭、烟煤半焦 Solid fuels: hard coal, coke from hard coal char from hard coal | Transient moisture Range: (0,03 – 18,90) % Weight method | PN-G-04611:2020-06 | ||
| 522 | 固体燃料:烟煤、烟煤焦炭、烟煤半焦 Solid fuels: hard coal, coke from hard coal char from hard coal | Analytical moisture content Range: (0,10 – 8,80) % Weight method | PN-G-04611:2020-06 | ||
| 523 | 固体燃料:烟煤、烟煤焦炭、烟煤半焦 Solid fuels: hard coal, coke from hard coal char from hard coal | 全水分含量(由计算得出) Total moisture content (from calculations) | PN-G-04611:2020-06 | ||
| 524 | 固体燃料:固体回收燃料 | Transient moisture Range: (2,40 – 25,60) % Weight method | SW/ZLGIG/PB-03 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-03, 2nd edition of 18 August 2025 | ||
| 525 | 固体燃料:固体回收燃料 | Moisture content in analytical sample Range: (0,50 – 9,20) % Thermogravimetric method (TGA) | PN-EN ISO 21660-3:2021-08 | ||
| 526 | 固体燃料:固体回收燃料 | Moisture content in analytical sample Range: (0,50 – 9,00) % Weight method | PN-EN ISO 21660-3:2021-08 | ||
| 527 | 固体燃料:固体回收燃料 | 全水分含量(由计算得出) Total moisture content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 528 | 固体燃料:固体回收燃料 | Ash content Range: (13,50 – 63,50) % Thermogravimetric method (TGA) | PN-EN ISO 21656:2021-08 | ||
| 529 | 固体燃料:固体回收燃料 | Ash content Range: (12,60 – 64,00) % Weight method (slow burning) | PN-EN ISO 21656:2021-08 | ||
| 530 | 固体燃料:固体回收燃料 | Carbon content Range: (33,00 – 72,00)% High-temperature combustion method with IR detection | PN-EN ISO 21663:2021-06 | ||
| 531 | 固体燃料:固体回收燃料 | Hydrogen content Range: (0,40 – 9,50) % High-temperature combustion method with IR detection | PN-EN ISO 21663:2021-06 | ||
| 532 | 固体燃料:固体回收燃料 | Nitrogen content Range: (0,10 – 1,50) % High-temperature combustion method with TC detection | PN-EN ISO 21663:2021-06 | ||
| 533 | 固体燃料:固体回收燃料 | 氧含量(由计算得出) Oxygen content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 534 | 固体燃料:固体回收燃料 | Total sulfur content Range: (0,05 – 0,80)% High-temperature combustion method with IR detection | PN-EN ISO 21663:2021-06 | ||
| 535 | 固体燃料:固体回收燃料 | Combustible sulphur and ash sulpfur content (calculated) | SW/ZLGIG/PB-10 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-10, 2nd edition of 18 August 2025 | ||
| 536 | 固体燃料:固体回收燃料 | Volatile matter content Range: (55,35 – 65,40) % Weight method | PN-EN ISO 22167:2021-08 | ||
| 537 | 固体燃料:固体回收燃料 | Gross calorific value Range: (14735–31800) kJ/kg Calorimetric method | PN-EN ISO 21654:2021-12 | ||
| 538 | 固体燃料:固体回收燃料 | 低位发热量(由计算得出) Net calorific value (from calculations) | PN-EN ISO 21654:2021-12 | ||
| 539 | 固体燃料:固体回收燃料 | Biodegradable fraction content – mass fraction of biomass Non-biodegradable fraction content – mass fraction of non-biomass Range: (1,80 – 89,50) % Weight method | PN-EN 21644:2021-07 | ||
| 540 | 固体燃料:固体回收燃料 | Chlorine content Range: (0,112 – 3,221) % Titration method | SW/ZLGIG/PB-13 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-13, 2nd edition of 18 August 2025 | ||
| 541 | 固体燃料:固体回收燃料 | Chlorine content Range: (0,070 – 4,300) % High-temperature combustion method with coulometric detection | SW/ZLGIG/PB-12 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-12, 2nd edition of 18 August 2025 | ||
| 542 | 固体燃料:固体生物燃料 | Transient moisture Range: (3,60 – 36,60) % Weight method | SW/ZLGIG/PB-03 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-03, 2nd edition of 18 August 2025 | ||
| 543 | 固体燃料:固体生物燃料 | Moisture content in analytical sample Range: (0,60 – 10,61) % Thermogravimetric method (TGA) | PN-EN ISO 18134-3:2023-12 | ||
| 544 | 固体燃料:固体生物燃料 | Moisture content in analytical sample Range: (0,50 – 10,30) % Weight method | PN-EN ISO 18134-3:2023-12 | ||
| 545 | 固体燃料:固体生物燃料 | Total moisture content Range: (0,50 – 72,80) % Weight method | PN-EN ISO 18134-2:2017-03 | ||
| 546 | 固体燃料:固体生物燃料 | 全水分含量(由计算得出) Total moisture content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 547 | 固体燃料:固体生物燃料 | Ash content Range: (0,15 – 34,50) % Thermogravimetric method (TGA) | PN-EN ISO 18122:2023-05 | ||
| 548 | 固体燃料:固体生物燃料 | Ash content Range: (0,10 – 34,50) % Weight method (slow burning) | PN-EN ISO 18122:2023-05 | ||
| 549 | 固体燃料:固体生物燃料 | Carbon content Range: (10,00 – 72,00) % High-temperature combustion method with IR detection | PN-EN ISO 16948:2015-07 | ||
| 550 | 固体燃料:固体生物燃料 | Hydrogen content Range: (2,50 – 11,50) % High-temperature combustion method with IR detection | PN-EN ISO 16948:2015-07 | ||
| 551 | 固体燃料:固体生物燃料 | Nitrogen content Range: (0,01 – 5,60) % High-temperature combustion method with TC detection | PN-EN ISO 16948:2015-07 | ||
| 552 | 固体燃料:固体生物燃料 | 氧含量(由计算得出) Oxygen content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 553 | 固体燃料:固体生物燃料 | Total sulfur content Range: (0,01 – 0,40)% High-temperature combustion method with IR detection | SW/ZLGIG/PB-10 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-10, 2nd edition of 18 August 2025 | ||
| 554 | 固体燃料:固体生物燃料 | Ash sulphur and combustible sulfur content (from calculated) | SW/ZLGIG/PB-10 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-10, 2nd edition of 18 August 2025 | ||
| 555 | 固体燃料:固体生物燃料 | Volatile matter content Range: (59,30 – 87,30) % Weight method | PN-EN ISO 18123:2023-05 | ||
| 556 | 固体燃料:固体生物燃料 | Gross calorific value Range: (8055 – 37581) kJ/kg Calorimetric method | PN-EN ISO 18125:2017-07 | ||
| 557 | 固体燃料:固体生物燃料 | 低位发热量(由计算得出) Net calorific value (from calculations) | PN-EN ISO 18125:2017-07 | ||
| 558 | 固体燃料:固体生物燃料 | Biodegradable fraction content – mass fraction of biomass Non-biodegradable fraction content – mass fraction of non-biomass Range: (61.50 – 99.50) % Weight method | SW/ZLGIG/PB-14 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-14, 2nd edition of 18 August 2025 | ||
| 559 | 固体燃料:固体生物燃料 | Chlorine content Range: (0,023 – 0,322) % Titration method | SW/ZLGIG/PB-13 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-13, 2nd edition of 18 August 2025 | ||
| 560 | 固体燃料:固体生物燃料 | Chlorine content Range: (0,005 – 0,370) % High-temperature combustion method with coulometric detection | SW/ZLGIG/PB-12 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-12, 2nd edition of 18 August 2025 | ||
| 561 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | Transient moisture Range: (0,01 – 44,00) % Weight method | SW/ZLGIG/PB-03 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-03, 2nd edition of 18 August 2025 | ||
| 562 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | Moisture content in analytical sample Range: (0,05 – 5,60) % Thermogravimetric method (TGA) | SW/ZLGIG/PB-04 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-04, 2nd edition of 18 August 2025 | ||
| 563 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | Moisture content in analytical sample Range: (0,05 – 5,80) % Weight method | SW/ZLGIG/PB-05 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-05, 2nd edition of 18 August 2025 | ||
| 564 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | 全水分含量(由计算得出) Total moisture content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 565 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | Ash content Range: (31,60 – 100,00) % Thermogravimetric method (TGA) | SW/ZLGIG/PB-07 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-07, 2nd edition of 18 August 2025 | ||
| 566 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | Ash content Range: (31,50 – 100,00) % Weight method | SW/ZLGIG/PB-06 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-06, 2nd edition of 18 August 2025 | ||
| 567 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | Combustible parts content (from calculations) | SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025 | ||
| 568 | 废物 O):代码 10 01 01、10 01 02、10 01 15、10 01 17、10 01 80、10 01 82 炉渣、灰、灰渣混合料 Wastes O): code 10 01 01, 10 01 02, 10 01 15, 10 01 17, 10 01 80, 10 01 82 slag, ash, ash-slag mixture | Carbon content Range: (2,00 – 44,00) % High-temperature combustion method with IR detection | SW/ZLGIG/PB-11 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-11, 2nd edition of 18 August 2025 | ||
| 569 | Mechanical and automatical sampling systems for hard coal | Accuracy and precision of sampling, preparation and analysis samples | PN-G-04502:2014-11 pkt. 10 | ||
| 570 | Solid fuels E | Mercury content Atomic absorption spectrometry method with amalgamation technique | SW/ZLGIG/PB-15 | ||
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PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN 15216:2022-03
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN 27888:1999
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 10304-1:2009+AC:2012
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 10523:2012
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 11732:2007
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 11885:2009
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14402:2004 pkt 4 PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14402:2004 pt 4
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1 z dn. 01.08.2025 PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1st of 01/08/2025
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 17852:2009
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 18412:2007 PN-77/C-04604.08 SO-4/ZLGIG/PB.07.93 ed. 1 z dn. 01.08.2025 PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 18412:2007 PN-77/C-04604.08 SO-4/ZLGIG/PB.07.93 ed. 1st of 01/08/2025
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-EN ISO 8467:2001
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-ISO 9280:2002
PN-EN 12457-2:2006 PN-EN 12457-4:2006 PN-ISO 9297:1994
PN-EN 12457-2:2006 PN-EN 12457-4:2006 SO-4/ZLGIG/PB.07.39 ed. 1 z dn. 01.08.2025 na podstawie testu kuwetowego MERCK SPECTROQUANT 14779 SO-4/ZLGIG/PB.07.51 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.97 ed.1 z dn. 01.08.2025 PN-74/C-04566.04
PN-EN 12457-2:2006 PN-EN 12457-4:2006 SO-4/ZLGIG/PB.07.39 ed. 1st of 01/08/2025 based on cuvette test MERCK SPECTROQUANT 14779 SO-4/ZLGIG/PB.07.51 ed. 1st of 01/08/2025 SO-4/ZLGIG/PB.07.97 ed. 1st of 01/08/2025 PN-74/C-04566.04
PN-EN 12673:2004
PN-EN 12814-1:2002+AC:2004 PN-EN 12814-8:2021-07
PN-EN 12814-2:2021-06 PN-EN 12814-8:2021-07
PN-EN 12873-1:2014-09 PN-EN 1484:1999
PN-EN 12873-1:2014-09 PN-EN ISO 17294-2:2024-04
PN-EN 12873-1:2014-09 PN-EN ISO 17993:2005 excluding pt. 8.1-8.4 SO-4/ZLGIG/WYK-04 ed 1st of 01/08/2025
PN-EN 12873-1:2014-09 PN-EN ISO 17993:2005 z wyłączeniem pkt 8.1-8.4 SO-4/ZLGIG/WYK-04 ed. 1 z dn. 01.08.2025 PN-EN 12873-1:2014-09 PN-EN ISO 17993:2005 excluding pt 8.1-8.4 SO-4/ZLGIG/WYK-04 ed 1st of 01/08/2025
PN-EN 1337-3:2010 załączniki/ annexes F
PN-EN 13577:2008
PN-EN 13657:2006 PN-EN ISO 11885:2009
PN-EN 13755:2008+AC:2004
PN-EN 1484:1999
PN-EN 15216:2022-03
PN-EN 15309:2010
PN-EN 15408:2011
PN-EN 15934:2013-02
PN-EN 15935:2022-01
PN-EN 15936:2022-07
PN-EN 15936:2022-07 PN-EN 15936:2022-07
PN-EN 15936:2022-07 metoda A PN-EN 15936:2022-07 method A
PN-EN 16174:2012 PN-EN ISO 11885:2009
PN-EN 1804-2:2021-05 Załączniki/annexes A i/and B
PN-EN 1804-3:2021-06 (załącznik normatywny A) / (normative annex A)
PN-EN 1936:2010
PN-EN 21644:2021-07
PN-EN 25663:2001
PN-EN 26777:1999
PN-EN 27888:1999
PN-EN 27888:1999 PN-EN 27888:1999
PN-EN 295-3:2012
PN-EN 50182:2002 p. 6.4.3 PN-EN 50540:2010 p. 6.4.3
PN-EN 50182:2002 p. 6.4.5 PN-EN 50540:2010 p. 6.4.5
PN-EN 50182:2002 p. 6.4.7 + Zał. C/ annex C IEC 62420:2008 Zał. B/annex B
PN-EN 50182:2002 p. 6.4.7 IEC 62420:2008 + Zał. B/annex B PN-EN 50183:2002 p. 11.3
PN-EN 50182:2002 p. 6.4.7 i/and Aneks C/Annex C PN-IEC 1089:1994/A1:2000 – Aneks B/Annex B
PN-EN 50182:2002 p. 6.5.2 PN-EN 50183:2002 p. 11.4 PN-EN 60889:2002 p. 10.2
PN-EN 50182:2002 p. 6.5.2 PN-EN IEC 62641:2022-12 p. 6.4.5
PN-EN 50326:2003 PN-ISO 2176:2011
PN-EN 50397-1:2007 Zał. D/annex D
PN-EN 50397-1:2021-04 Zał. C / annex C
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PN-EN 60695-11-10:2014-02
PN-EN 60794-1-21:2015-07 p. 3 metoda E1/method E1
PN-EN 60794-1-22:2018-04 p. 5 Metoda/method F5B
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PN-EN 61284:2002 p. 11.4.2
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PN-EN 61284:2002 p. 8
PN-EN 61340-2-3:2016 IEC 61340-4-10:2012 PN-E-05203:1992 PN-EN 60079-32-2:2015-08
PN-EN 61340-2-3:2016 IEC 61340-4-10:2012 PN-EN IEC 60079-0:2018-09 PN-E-05203:1992 PN-EN 60079-32-2:2015-08
PN-EN 61340-2-3:2016 PN-E-05203:1992 PN-EN 60079-32-2:2015-08
PN-EN 61340-4-1:2006
PN-EN 61340-4-9:2016-11
PN-EN 61395:2002
PN-EN 62567:2014-04 p. 8.2 PN-EN 62567:2014-04 p. 8.3
PN-EN 727:1998 PN-EN ISO 2507-1:2017-11 PN-EN ISO 2507-2:2017-12 PN-EN ISO 2507-3:2017-12 PN-EN ISO 306:2023-05
PN-EN 744:1997 PN-EN ISO 3127:2017-12
PN-EN 872:2007+Ap1:2007
PN-EN 903:2002 z wył. pkt 7.1 PN-EN 903:2002 exc. pt 7.1
PN-EN 9969:2016
PN-EN IEC 61340-4-3:2018-04
PN-EN IEC 61340-4-5:2018-09
PN-EN IEC 61854:2020-11 p 7.1
PN-EN IEC 61854:2020-11 p. 7.2
PN-EN IEC 61854:2020-11 p. 7.3.1 PN-EN ISO 1461:2011 tab./tables 3 i/and 4
PN-EN IEC 61854:2020-11 p. 7.5.1
PN-EN IEC 61854:2020-11 p. 7.5.2
PN-EN IEC 61854:2020-11 p. 7.5.3
PN-EN IEC 61854:2020-11 p. 7.5.4. b)
PN-EN IEC 61854:2020-11 p. 7.5.4. c)
PN-EN IEC 61854:2020-11 p. 7.5.5
PN-EN IEC 62641:2022-12 p. 6.4.2 PN-EN IEC 63248:2022-12 p. 7.4.2 PN-EN IEC 62641:2022-12 p. 6.4.1
PN-EN IEC 62641:2022-12 p. 6.4.3 PN-EN IEC 63248:2022-12 p. 7.4.3 CEI IEC 62219:2002 p. 6.6.4
PN-EN IEC 62641:2022-12 p. 6.4.4
PN-EN IEC 63248:2022-12 p. 7.4.3
PN-EN ISO 10301:2002
PN-EN ISO 10304-1:2009+AC:2012 PN-EN ISO 10304-3:2001
PN-EN ISO 10304-4:2022-08
PN-EN ISO 10523:2012
PN-EN ISO 10523:2012 PN-EN ISO 10523:2012
PN-EN ISO 11173:2017-12
PN-EN ISO 1133-1:2022-12
PN-EN ISO 11357-6:2018-04
PN-EN ISO 11369:2002
PN-EN ISO 1167-1:2007 PN-EN ISO 1167-2:2007 PN-EN ISO 1167-3:2008 PN-EN ISO 1167-4:2008
PN-EN ISO 11732:2007
PN-EN ISO 1183-1:2019-05
PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1 z dn. 01.08.2025
PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1 z dn. 01.08.2025 PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1st of 01/08/2025
PN-EN ISO 11885:2009 SO-4/ZLGIG/PB.07.92 ed. 1st of 01/08/2025
PN-EN ISO 13260:2012+A1:2017-11
PN-EN ISO 13968:2009
PN-EN ISO 14402:2004 pkt 4 PN-EN ISO 14402:2004 pt 4
PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1 z dn. 01.08.2025 PN-EN ISO 14403-2:2012 SO-4/ZLGIG/PB.07.90 ed. 1st of 01/08/2025
PN-EN ISO 15061:2003
PN-EN ISO 15630-3:2011 p. 5.3.1
PN-EN ISO 15630-3:2011 p. 5.3.2
PN-EN ISO 16265:2012
PN-EN ISO 16703:2011
PN-EN ISO 16948:2015-07
PN-EN ISO 16994:2016-10
PN-EN ISO 17294-2
PN-EN ISO 17852:2009
PN-EN ISO 17892-11:2019-05 z wyłączeniem pkt. 5.2.2.2 i pkt. 5.2.3 SC/ZLGIG/PB.02 1st edition of 01.08.2025 PN-EN ISO 17892-11:2019-05 (excluding clauses 5.2.2.2 and 5.2.3)
PN-EN ISO 178:2019-06 PN-EN ISO 14125:2001+AC:2003+ A1:2011
PN-EN ISO 179-1:2010 PN-EN ISO 179-1:2023-11
PN-EN ISO 17993:2005 z wyłączeniem pkt 8.1-8.4 SO-4/ZLGIG/WYK-04 ed. 1 z dn. 01.08.2025 PN-EN ISO 17993:2005 excluding pt 8.1-8.4 SO-4/ZLGIG/WYK-04 edition 1st of 01/08/2025
PN-EN ISO 17993:2005 z wyłączeniem pkt 8.1-8.4 SO-4/ZLGIG/WYK-07 ed. 1 z dn. 01.08.2025 PN-EN ISO 17993:2005 excluding pt 8.1-8.4 SO-4/ZLGIG/WYK-07 ed. 1st of 01/08/2025
PN-EN ISO 18122:2023-05
PN-EN ISO 18123:2023-05
PN-EN ISO 18125:2017-07
PN-EN ISO 18134-2:2017-03
PN-EN ISO 18134-3:2023-12
PN-EN ISO 18412:2007 SO-4/ZLGIG/PB.07.93 ed. 1 z dn. 01.08.2025 PN-EN ISO 18412:2007 SO-4/ZLGIG/PB.07.93 ed. 1st of 01/08/2025
PN-EN ISO 19458:2007 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-EN ISO 19458:2007 SC/ZLGIG/PB.01 1st edition of 01.08.2025
PN-EN ISO 20236:2025-05 SO-4/ZLGIG/PB.07.94 ed. 1 z dn. 01.08.2025 PN-EN ISO 20236:2025-05 SO-4/ZLGIG/PB.07.94 ed. 1st of 01/08/2025
PN-EN ISO 20238:2019-05
PN-EN ISO 21654:2021-12
PN-EN ISO 21656:2021-08
PN-EN ISO 21660-3:2021-08
PN-EN ISO 21663:2021-06
PN-EN ISO 22155:2016-07
PN-EN ISO 22167:2021-08
PN-EN ISO 2505:2024-04 PN-EN ISO 11501:2005
PN-EN ISO 252:2023-09
PN-EN ISO 283:2023-10
PN-EN ISO 284:2013
PN-EN ISO 3126:2006
PN-EN ISO 3386-1:2000+A1:2010 PN-EN ISO 3386-2:2001+A1:2010 PN-ISO 5893:2015-12 PN-EN 12390-3:2019-07 PN-93/C-89071 PN-EN ISO 604:2006
PN-EN ISO 340:2013-07 PN-EN ISO 340:2022-12
PN-EN ISO 3744:2011
PN-EN ISO 4589-2:2017-06
PN-EN ISO 4671:2008 p. 10 PN-EN ISO1402:2010 p. 8.1
PN-EN ISO 527-1:2020-01 PN-EN ISO 527-2:2012 PN-EN ISO 527-3:2019-01 PN-EN ISO 527-4:2023-10 PN-EN ISO 527-5:2022-06 PN-ISO 37:2007+AC1:2008 PN-EN ISO 6259-1:2015-05 PN-EN ISO 6259-3:2015-08
PN-EN ISO 580:2006 PN-ISO 12091:2009
PN-EN ISO 5814:2013-04
PN-EN ISO 5814:2013-04 PN-EN ISO 5814:2013-04
PN-EN ISO 5815-1:2019-12 PN-EN 1899-2:2002
PN-EN ISO 62:2008
PN-EN ISO 6468:2002
PN-EN ISO 6468:2002 excluding pt 7.2 SO-4/ZLGIG/WYK-08 edition 1st of 01/08/2025 PN-EN ISO 6468:2002 z wyłączeniem pkt 7.2 SO-4/ZLGIG/WYK-08 ed. 1 z dn. 01.08.2025 PN-EN ISO 6468:2002 excluding pt 7.2 SO-4/ZLGIG/WYK-08 edition 1st of 01/08/2025
PN-EN ISO 6468:2002 z wyłączeniem pkt 7.2 SO-4/ZLGIG/WYK-08 ed. 1 z dn. 01.08.2025
PN-EN ISO 6468:2002 z wyłączeniem pkt 7.2 SO-4/ZLGIG/WYK-08 ed. 1 z dn. 01.08.2025 PN-EN ISO 6468:2002 excluding pt 7.2 SO-4/ZLGIG/WYK-08 edition 1st of 01/08/2025
PN-EN ISO 6878:2006 rozdz. 4 + Ap1:2010 + Ap2:2010 PN-EN ISO 6878:2006 cl 4 + Ap1:2010 + Ap2:2010
PN-EN ISO 7027-1:2016-09
PN-EN ISO 75-1:2020-09 PN-EN ISO 75-2:2013-06 PN-EN ISO 75-3:2005
PN-EN ISO 7887:2012+Ap1:2015-06 metoda C PN-EN ISO 7887:2012+Ap1:2015-06 method C
PN-EN ISO 80079-36:2016-07
PN-EN ISO 8031:2021-01
PN-EN ISO 8256:2024-06
PN-EN ISO 8467:2001
PN-EN ISO 9377-2:2003
PN-EN ISO 9562:2007
PN-EN ISO 9773:2003+A1:2005
PN-EN ISO 9852:2017-11
PN-EN ISO 9963-1:2001+Ap1:2004 SO-4/ZLGIG/PB.07.95 ed. 1 z dnia 01.08.2025 PN-EN ISO 9963-1:2001+Ap1:2004 SO-4/ZLGIG/PB.07.95 ed. 1st of 01/08/2025
PN-EN ISO 9967:2016-02 PN-EN 761:2001
PN-EN ISO 9969:2016-02 PN-EN 1228:1999 PN-EN ISO 13967:2011
PN-G-04302:1997
PN-G-04303:1997 PN-EN 1926:2007 Procedure BL-2/ZLGIG/PB-GG-01 2nd edition of 25 August 2023 PN-G-04303:1997 PN-EN 1926:2007
PN-G-04304:1997+Az1:1999
PN-G-04305:1997 PN-EN 12372:2010
PN-G-04502:2014-11 pkt 5.3.1.2
PN-G-04502:2014-11 pkt. 10
PN-G-04508:2020-05
PN-G-04511:1980
PN-G-04511:1980 punkt 2.2.1
PN-G-04511:1980 punkt 2.4.1
PN-G-04516:1998
PN-G-04537:1998
PN-G-04558:1993
PN-G-04560:1998
PN-G-04565:1994
PN-G-04571:1998
PN-G-04582:1997
PN-G-04584:2001
PN-G-04611:2020-06
PN-G-15000-12:1994
PN-G-15000-9:1998 PN-G-06021:1997 z wyłączeniem /excluding p. 5.3.3 PN-G-15541:1997 DIN 21530-4:2003 p. 4.1.1.2.2.5
PN-G-15022:2018-11
PN-G-15023:2019-03
PN-G-15024:2017-10
PN-G-15026:2017-04 DIN 21530-4:2003 p. 4.1.2.2.2 i/and 4.1.2.2.3 PN-EN ISO 898-1 PN-EN ISO 898-2
PN-G-15050:2018-01
PN-G-15533:1997
PN-G-15536:2013 p. 6.4.2.4
PN-G-15536:2013 p. 6.4.4, 6.4.4.4, 6.5 i/and 6.4.2.5
PN-G-15536:2013 z wyłączeniem / /excluding p. 6.4.2.4 i/and 6.4.4 PN-EN 1804-2:2021-05 z wyłączeniem/excluding p. A.1.2.3.2
PN-G-32000:2011
PN-G-46701:1997/Az1:2001 p. 3.4.6
PN-G-46701:1997/Az1:2001 p. 3.4.6 DIN 22252:2001 p. 6.4.2
PN-G-46701:1997/Az1:2001 p. 3.4.6 DIN 22252:2001 p. 6.4.2.3
PN-G-46701:1997/Az1:2001 p. 3.4.7 DIN 22252:2001 p. 6.5
PN-G-46701:1997/Az1:2001 p. 3.4.9 DIN 22252:2001 p. 7.2
PN-G-46705:1997 p. 3.7.6
PN-G-46705:1997 p. 3.7.7
PN-IEC 1089:1994 Zał. NA/annex NA p. 5 PN-IEC 1089:1994 Zał. NB/annex NB p. 5 PN-IEC 1089:1994 Zał. NC/annex NC p. 5
PN-IEC 1089:1994 p. 6.5.3 PN-EN 50182:2002 p. 6.4.8 + Zał. C /annex C IEC 62420:2008 p. 6.2.5 + Zał. B /annex B PN-EN 60889:2002 p. 10.1 PN-EN 50189:2002 p. 11.4 PN-EN 60889:2002 p. 6.4.10 + Zał. A/annex B PN-EN 50183:2002 p. 11.3
PN-IEC 1089:1994 p. 6.5.3 PN-EN 50182:2002 p. 6.4.8 + Zał. C/ annex C IEC 62420:2008 p. 6.2.5 + Zał. B/ annex B PN-IEC 1089:1994 p. 6.6.4 PN-IEC 1089:1994 Zał. NA/annex NA p. 10.1 PN-IEC 1089:1994 Zał. NB/annex NB p. 10.2 PN-IEC 1089:1994 Zał. NC/annex NC p. 10
PN-IEC 1089:1994 p. 6.6.1 PN-EN 50540:2010 p. 6.4.6 PN-EN 62219:2003 p. 6.6.1 PN-EN 62420:2008 p. 6.3.1
PN-IEC 1089:1994 p. 6.6.2 PN-EN 50182:2002 p. 6.4.2 PN-EN 50540:2010 p. 6.4.2 PN-IEC 1089:1994 Zał. NA/annex NA p. 5 PN-IEC 1089:1994 Zał. NB/annex NB p. 5 PN-IEC 1089:1994 Zał. NC/annex NC p. 5
PN-IEC 1089:1994 p. 6.6.2 PN-EN 50182:2002 p. 6.4.2 PN-EN 60889:2002 p. 5 PN-EN 50189:2002 p. 7 PN-EN 50540:2010 p. 6.4.2 PN-EN 50183:2002 p. 11.2
PN-IEC 1089:1994 p. 6.6.3+Zał. C /annex C PN-EN 50182:2002 p. 6.4.6+Zał. B /annex B PN-EN 50540:2010 p. 6.4.7 PN-EN 62219:2003 p. 6.6.3+Zał. C /annex C PN-EN 62420:2008 p. 6.3.3+Zał. C /annex C
PN-IEC 1089:1994 p. 6.6.3+Zał. C/ annex C PN-EN 50182:2002 p. 6.4.6+Zał. B/ annex B PN-EN 50540:2010 p. 6.4.7 PN-EN 62219:2003 p. 6.6.3+Zał. C/ annex C PN-EN 62420:2008 p. 6.3.3+Zał. C/ annex C
PN-IEC 1089:1994 p. 6.6.4 PN-IEC 1089:1994 Zał. NA/annex NA p. 10.1 PN-IEC 1089:1994 Zał. NB/annex NB p. 10.2 PN-IEC 1089:1994 Zał. NC/annex NC p. 10
PN-IEC 1089:1994 p. 6.6.5 PN-EN 50182:2002 p. 6.4.1 PN-EN 50540:2010 p. 6.4.1 PN-EN 62219:2003 p. 6.6.5 PN-EN 62420:2008 p. 6.3.4
PN-IEC 1089:1994 p. 6.6.6 PN-EN 50182:2002 p. 6.4.4 PN-EN 50540:2010 p. 6.4.4 PN-EN 62219:2003 p. 6.6.6 PN-EN 62420:2008 p. 6.3.5
PN-ISO 10381-5:2009 PN-ISO 10381-5:2009
PN-ISO 10390:2022-09
PN-ISO 10694:2002
PN-ISO 10847:2002
PN-ISO 11277:2005
PN-ISO 11423-1:2002
PN-ISO 1171:2002
PN-ISO 13877:2004
PN-ISO 15178:2004
PN-ISO 15705:2005
PN-ISO 1928:2020-05
PN-ISO 1953:1999
PN-ISO 3108:1996 PN-ISO 3154:1997 p. 5.1.4.2
PN-ISO 3154:1997 p. 5.1.1
PN-ISO 3154:1997 p. 5.2.2
PN-ISO 3154:1997 p. 5.2.3
PN-ISO 334:1997
PN-ISO 501:2007
PN-ISO 5068:2004
PN-ISO 5074:2002
PN-ISO 562:2000
PN-ISO 5667-10:2021-11 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-10:2021-11 SC/ZLGIG/PB.01 1st edition of 01.08.2025
PN-ISO 5667-11:2017-10 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-11:2017-10 SC/ZLGIG/PB.01 1st edition of 01.08.2025
PN-ISO 5667-4:2017-10 PN-EN ISO 5667-6:2016-12 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-4:2017-10 PN-EN ISO 5667-6:2016-12 SC/ZLGIG/PB.01 1st edition of 01.08.2025
PN-ISO 5667-5:2017-10 SC/ZLGIG/PB.01 edycja 1 z dnia 01.08.2025 PN-ISO 5667-5:2017-10 SC/ZLGIG/PB.01 1st edition of 01.08.2025
PN-ISO 587:2000
PN-ISO 589:2006
PN-ISO 589:2006 A1 metoda PN-ISO 589:2006 A1 method
PN-ISO 589:2006 Metoda A2 PN-ISO 589:2006 A2 method
PN-ISO 6332:2001+Ap1:2016-06
PN-ISO 7404-3:2001
PN-ISO 7404-5:2002
PN-ISO 7800:1996
PN-ISO 7801:1996
PN-ISO 9277:2000
PN-ISO 9280:2002
PN-ISO 9297:1994
PN-M-46606:2010 Procedure BL-2/ZLGIG/PB-KR 01 3rd edition of 25 August 2023 PN-M-46606:2010
PN-R-04031:1997 PN-R-04031:1997
PN-Z-04008-7:2002 PN-Z-04008-7/Az1:2004 PN-G-04035:2002+Az1:2005
Procedura BD-3/ZLGIG/PB-AE.07 edycja 3 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-AE.07 3rd edition of 6 November 2023
Procedura BD-3/ZLGIG/PB-CO.04 edycja 3 z dnia 06.11.2023 r. . Procedure BD-3/ZLGIG/PB-CO.04 3rd edition of 6 November 2023
Procedura BD-3/ZLGIG/PB-CO.04 edycja 3 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-CO.04 3rd edition of 6 November 2023
Procedura BD-3/ZLGIG/PB-PO.03 edycja 2 z dnia 25.08.2023 r. Procedure BD-3/ZLGIG/PB-PO.03 2nd edition of 25 August 2023
Procedura BD-3/ZLGIG/PB-TL.05 edycja 4 z dnia 23.11.2023 r. Procedure BD-3/ZLGIG/PB-TL.05 4th edition of 23 November 2023
Procedura BD-3/ZLGIG/PB-WN.08 edycja 4 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-WN.08 4th edition of 6 November 2023
Procedura BD-3/ZLGIG/PB-WO.06 edycja 4 z dnia 06.11.2023 r. Procedure BD-3/ZLGIG/PB-WO.06 4th edition of 6 November 2023
Procedura BL-2/ZLGIG/PB-EK 01 edycja 3 z dnia 25.08.2023 r. Procedure BL-2/ZLGIG/PB-EK 01 3rd edition of 25 August 2023
Procedura BL-2/ZLGIG/PB-GG-02 edycja 2 z dnia 25.08.2023 r. Procedure BL-2/ZLGIG/PB-GG-02 2nd edition of 25 August 2023
Procedura BL-2/ZLGIG/PB-GG-03 edycja 3 z dnia 05.11.2025 r. Procedure BL-2/ZLGIG/PB-GG-03 3nd edition of 05 November 2025
Procedura BL-2/ZLGIG/PB-GG-04 edycja 2 z dnia 25.08.2023 r. Procedure BL-2/ZLGIG/PB-GG-04 2nd edition of 25 August 2023
Procedura KD-2.2/ZLGIG/PB-2205-1 edycja 4 z 25.08.2023 r. Procedure KD-2.2/ZLGIG/PB-2205-1 4th edition of 25 August 2023
Procedura KD-2.2/ZLGIG/PB-2205-2 edycja 3 z 25.08.2023 r. Procedure KD-2.2/ZLGIG/PB-2205-2 3rd edition of 25 August 2023
Procedura KD-2.2/ZLGIG/PB-2207 edycja 4 z 25.08.2023 r. Procedura KD-2.2/ZLGIG/PB-2208 edycja 4 z 25.08.2023 r. Procedura KD-2.2/ZLGIG/PB-2209 edycja 3 z 25.08.2023 r. Procedura KD-2.2/ZLGIG/PB-2210 edycja 6 z 25.08.2023 r. Procedure KD-2.2/ZLGIG/PB-2207 4th edition of 25 August 2023 Procedure KD-2.2/ZLGIG/PB-2208 4th edition of 25 August 2023 Procedure KD-2.2/ZLGIG/PB-2209 3rd edition of 25 August 2023 Procedure KD-2.2/ZLGIG/PB-2210 6th edition of 25 August 2023
Procedura SCR /ZLGIG/3-003 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/3-003 4th edition of 25 August 2023
Procedura SCR/ZLGIG/1-002 edycja 7 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-002 7th edition of 25 August 2023
Procedura SCR/ZLGIG/1-002 edycja 7 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-002 7th edition of 25.08.2023
Procedura SCR/ZLGIG/1-017 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-017 4th edition of 25.08.2023
Procedura SCR/ZLGIG/1-020 edycja 5 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-020 5th edition of 25 August 2023
Procedura SCR/ZLGIG/1-021 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-021 4th edition of 25 August 2023
Procedura SCR/ZLGIG/1-021 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-021 4th edition of 25.08.2023
Procedura SCR/ZLGIG/1-022 edycja 3 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/1-022 3rd edition of 25 August 2023
Procedura SCR/ZLGIG/1-023 edycja 1 z dnia 24.02.2025 r. Procedure SCR/ZLGIG/1-023 1st edition of 24 February 2025
Procedura SCR/ZLGIG/2-004 edycja 8 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/2-004 8th edition of 25 August 2023
Procedura SCR/ZLGIG/2-005 edycja 3 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/2-005 3rd edition of 25 August 2023
Procedura SCR/ZLGIG/2-011 edycja 4 z dnia 05.05.2025 Procedure SCR/ZLGIG/2-011 4th edition of 05 May 2025
Procedura SCR/ZLGIG/3-001 edycja 4 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/3-001 4th edition of 25 August 2023
Procedura SCR/ZLGIG/3-010 edycja 5 z dnia 25.08.2023 r. Procedure SCR/ZLGIG/3-010 5th edition of 25 August 2023
SC/ZLGIG/PB.03 edycja 1 z dnia 01.08.2025 SC/ZLGIG/PB.03 1st edition of 01.08.2025
SO-4/ZLGIG/PB.02 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.02 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.03 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.03 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.04 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.04 ed. 1st 01/08/2025
SO-4/ZLGIG/PB.05 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.05 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.05 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.24 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.05 ed. 1st of 01/08/2025 SO-4/ZLGIG/PB.24 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.07.29 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.29 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.07.39 ed. 1 z dn. 01.08.2025 na podstawie testu kuwetowego MERCK SPECTROQUANT 14779 SO-4/ZLGIG/PB.07.39 ed. 1st of 01/08/2025 based on cuvette test MERCK SPECTROQUANT 14779
SO-4/ZLGIG/PB.07.50 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.50 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.07.51 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.07.51 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.07.97
SO-4/ZLGIG/PB.11 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.11 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.14 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.14 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.17 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.17 ed. 1st 01/08/2025
SO-4/ZLGIG/PB.17 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.17 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.18 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.18 ed. 1st 01/08/2025
SO-4/ZLGIG/PB.22 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.22 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1 of 01/08/2025
SO-4/ZLGIG/PB.23 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.23 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.24 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.24 ed. 1st of 01/08/2025
SO-4/ZLGIG/PB.25 ed. 1 z dn. 01.08.2025 SO-4/ZLGIG/PB.25 ed. 1st 01/08/2025
SW/ZLGIG/PB-03 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-03, 2nd edition of 18 August 2025
SW/ZLGIG/PB-04 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-04, 2nd edition of 18 August 2025
SW/ZLGIG/PB-05 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-05, 2nd edition of 18 August 2025
SW/ZLGIG/PB-06 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-06, 2nd edition of 18 August 2025
SW/ZLGIG/PB-07 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-07, 2nd edition of 18 August 2025
SW/ZLGIG/PB-08 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-08, 2nd edition of 18 August 2025
SW/ZLGIG/PB-09 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-09, 2nd edition of 18 August 2025
SW/ZLGIG/PB-10 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-10, 2nd edition of 18 August 2025
SW/ZLGIG/PB-11 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-11, 2nd edition of 18 August 2025
SW/ZLGIG/PB-12 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-12, 2nd edition of 18 August 2025
SW/ZLGIG/PB-13 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-13, 2nd edition of 18 August 2025
SW/ZLGIG/PB-14 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-14, 2nd edition of 18 August 2025
SW/ZLGIG/PB-15
SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. PN-ISO 589:2006 SW/ZLGIG/PB-16, 2nd edition of 18 August 2025
SW/ZLGIG/PB-16 edycja 2 z dnia 18.08.2025 r. SW/ZLGIG/PB-16, 2nd edition of 18 August 2025
Załącznik nr 3 do Rozporządzenia
and No. 288, item 1697)
i nr 288, poz. 1697)