🇵🇱 FERROCARBO Sp. z o.o. PL
建筑石油化工与燃料材料与高分子环境水与废水
FERROCARBO Sp. z o.o. 是由 PCA 认可的实验室,认可编号 AB 687(Kraków,波兰)。认可范围涵盖 180 项检测方法,涉及以下领域:建筑、石油化工与燃料、材料与高分子、环境。检测对象包括:骨料、Clay masonry units、Solid fuels: hard coal, coke、Solid fuels: solid biofuels – solid biomass。最常用的技术:重量法、高温燃烧红外检测法、滴定法。
要点速览
- 认可编号: PCA AB 687
- 认可范围内方法数: 180
- 检测对象种类: 44
- 所用技术数: 37
- 城市: Kraków, 波兰
- 认可编号
- AB 687
- 认可机构
- PCA
- 地址
- LABORATORIUM BADAWCZO-ROZWOJOWE, ul. Ujastek 1, 31-752 Kraków
- 城市
- Kraków, 波兰
该实验室检测什么 (44)
- 骨料 — 47 项方法
- Clay masonry units — 11 项方法
- Solid fuels: hard coal, coke — 10 项方法
- Solid fuels: solid biofuels – solid biomass — 9 项方法
- Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* — 8 项方法
- Clay roof tiles — 7 项方法
- Unshaped refractory products — 7 项方法
- Raw materials, building materials, Waste: code 10 01 01, 10 01 02, 03 01 05, 03 03 05, 10 01 03, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82 — 6 项方法
- Fly ashes — 5 项方法
- Recarburiser — 5 项方法
- Admixtures for concrete, mortar and grout — 4 项方法
- Cements — 4 项方法
- Ceramic ventilation blocks — 4 项方法
- Refractory materials and raw materials — 4 项方法
- Waste: code 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 19, 10 01 21, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82, 10 01 99, Combustion waste: ash, slag, ash-slag mixtures — 4 项方法
- 另有 29 项
所用检测技术 (37)
- 重量法 — 38 项方法
- 高温燃烧红外检测法 — 11 项方法
- 滴定法 — 6 项方法
- 筛分法 — 6 项方法
- Thermogravimetric method (TGA); Gravimetric method — 4 项方法
- Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) — 4 项方法
- γ 能谱法 — 3 项方法
- 比重瓶法 — 3 项方法
- 热重法(TGA) — 3 项方法
- 量热法 — 3 项方法
- Los Angeles method — 2 项方法
- Manual method using an apparatus; Method using an automatic Vicat apparatus — 2 项方法
- Micro-Deval method — 2 项方法
- Visual descriptive method — 2 项方法
- 电位法 — 2 项方法
- 另有 22 项
认可范围 — 项检测方法 (180)
| 序号 | 检测对象 | 方法 / 参数 | 技术 | 依据文件 | |
|---|---|---|---|---|---|
| 检测方法 | |||||
| 1 | Refractory products and materials, slags, raw materials, ceramic products | 烧失量 范围 (0,05 – 97,0) % |
重量法 | PN-EN ISO 26845:2009 | |
| 2 | Refractory products and materials, slags, raw materials, ceramic products | Content of SiO2, Fe2O3, Al2O3, TiO2, CaO, MgO, K2O, Na2O, MnO, Cr2O3, P2O5, SO3, ZrO2 SiO2 (0,10 – 99,9) % Fe2O3 (0,10 – 99,8) % Al2O3 (0,10 – 99,9) % TiO2 (0,10 – 3,60) % CaO (0,10 – 98,0) % MgO (0,10 – 98,5) % K2O (0,10 – 11,0) % Na2O (0,10 – 7,50) % MnO (0,10 – 4,50) % Cr2O3 (0,10 – 42,0) % P2O5 (0,10 – 31,0) % SO3 (0,10 – 11,0) % ZrO2 (0,10 – 94,0) % |
Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) | PN-EN ISO 12677:2011 | |
| 3 | Waste: code 10 01 01, 10 01 02, 10 02 01, 10 01 80, 19 12 10, 19 12 11* | Content of SiO2, Fe2O3, Al2O3, CaO, MgO, K2O, Na2O, TiO2, Mn2O3, Cr2O3, P2O5 SiO2 (4,50 – 52,0) % Fe2O3 (0,50 – 80,0) % Al2O3 (1,00 – 30,0) % CaO (3,00 – 50,0) % MgO (0,20 – 6,00) % K2O (0,10 – 2,10) % Na2O (0,20 – 4,00) % TiO2 (0,10 – 12,5) % Mn2O3 (0,10 – 0,60) % Cr2O3 (0,10 – 0,20) % P2O5 (0,10 – 5,00) % |
Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) | PN-EN 196-2:2013-11 | PB 34 wydanie 2 z dnia 21.02.2025 r. | |
| 4 | Cements, cement constituents, clinkers, fly ashes, blast furnace slags, silica fumes, lime, raw materials for cement production, binding materials, mineral-cement binders | SiO2, Fe2O3, Al2O3, TiO2, CaO, MgO, K2O, Na2O, Mn2O3, Cr2O3, P2O5, ZnO, SrO content SiO2 (0,10 – 99,0) % Fe2O3 (0,10 – 80,0) % Al2O3 (0,10 – 90,0) % TiO2 (0,10 – 3,50) % CaO (0,10 – 98,0) % MgO (0,10 – 80,0) % K2O (0,10 – 11,5) % Na2O (0,10 – 9,00) % Mn2O3 (0,10 – 5,00) % Cr2O3 (0,10 – 3,50) % P2O5 (0,10 – 8,50) % ZnO (0,10 – 10,0) % SrO (0,10 – 1,20) % |
Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) | PN-EN 196-2:2013-11 | |
| 5 | Cements, cement constituents, clinkers, fly ashes, blast furnace slags, silica fumes, lime, raw materials for cement production, binding materials, mineral-cement binders | 烧失量 范围 (0,40 – 44,0) % 范围 (0,20 – 28,0) % |
重量法 | PN-EN 196-2:2013-11 | PN-EN 450-1:2012 | PN-EN 13263-1+A1:2010 | PN-EN 459-2:2021-12 | |
| 6 | Ash from solid fuels | SiO2, Fe2O3, Al2O3, TiO2, CaO, MgO, K2O, Na2O, Mn2O3, Cr2O3, P2O5, ZnO, SrO content SiO2 (8,50 – 52,0) % Fe2O3 (2,50 – 12,0) % Al2O3 (4,00 – 30,0) % TiO2 (0,70 – 3,00) % CaO (2,00 – 35,0) % MgO (1,00 – 10,0) % K2O (0,90 – 10,0) % Na2O (0,30 – 2,00) % Mn2O3 (0,10 – 2,00) % Cr2O3 (0,10 – 0,20) % P2O5 (1,00 – 4,50) % ZnO (0,30 – 0,50) % SrO (0,10 – 0,40) % |
Wavelength dispersive X-ray fluorescence spectrometry (WD-XRF) | PN-EN 196-2:2013-11 | |
| 7 | Cements, cement constituents, clinkers, fly ashes, blast furnace slags, silica fumes, lime, binding materials, mineral-cement binders | Chloride content Cl 范围 (0,002 – 0,920) % |
滴定法 | PN-EN 196-2:2013-11 | |
| 8 | Cements, cement constituents, clinkers, fly ashes, blast furnace slags, silica fumes, lime, binding materials, mineral-cement binders | Sulphate content SO3 范围 (0,05 – 52,00) % |
重量法 | PN-EN 196-2:2013-11 | |
| 9 | Cements, fly ashes, binding materials, mineral-cement binders | Content of insoluble matter 范围 (0,40 – 60,00)% |
重量法 | PN-EN 196-2:2013-11 | |
| 10 | Fly ashes, silica fume | Free calcium oxide content 范围 (0,01 – 20,0) % |
滴定法 | PN-EN 451-1:2017-06 | |
| 11 | Lime, aggregates | Active lime content 范围 (0,20 – 95,0) % |
滴定法 | PN-EN 459-2:2021-12 | |
| 12 | Lime | Free water (moisture) 范围 (0,05 – 60,0) % |
重量法 | PN-EN 459-2:2021-12 | |
| 13 | Cements | Particle density 范围 (1,00 – 5,00) g/cm3 |
Method using a pycnometer | PN-EN 196-6:2019-01 | |
| 14 | Cements | Specific surface area | Method using the Blaine apparatus | PN-EN 196-6:2019-01 | |
| 15 | Cements | Water-soluble chromium Cr (VI) content 范围 (0,000005 – 0,00050)% |
分光光度法 | PN-EN 196-10:2016-07 | |
| 16 | Cements | Fly ash content in cement (calculated) | PN-B-19707:2023-05 | ||
| 17 | Fly ashes | Fineness 范围 (0,1 – 70,0) % |
Sieve method | PN-EN 451-2:2017-06 | |
| 18 | Fly ashes | Reactive CaO content (calculated) | PN-EN 197-1:2012 | PN-EN 450-1:2012 | ||
| 19 | Fly ashes | Reactive SiO2 content (calculated) | PN-EN 197-1:2012 | PN-EN 450-1:2012 | ||
| 20 | Cements, raw materials, filler aggregates, fly ash | Carbon dioxide content 范围 (0,01 – 47,0) % |
重量法 | PN-EN 196-2:2013-11 p. 4.5.17 | |
| 21 | Raw materials, ceramic materials, construction materials | Content of inorganic carbon TIC 范围 (0,10 – 12,0) % |
重量法 | PN-EN 15936:2022-07 metoda A | |
| 22 | Silicon carbide, products containing silicon carbide | SiC content 范围 (0,10 – 99,0) % |
重量法 | PN-86/H-04157 p. 3.2 | |
| 23 | 骨料 | Water-soluble chloride content 范围 (0,001 – 0,700) % |
滴定法 | PN-EN 1744-1+A1:2013-05 p.7 | |
| 24 | 骨料 | Content of water-soluble sulfates 范围 (0,01 – 1,00) % |
重量法 | PN-EN 1744-1+A1:2013-05 p.10 | |
| 25 | 骨料 | 全硫含量 范围 (0,1 – 3,0) % |
重量法 | PN-EN 1744-1+A1:2013-05 p.11 | |
| 26 | 骨料 | Content of acid-soluble sulfates 范围 (0,1 – 6,0) % |
重量法 | PN-EN 1744-1+A1:2013-05 p.12 | |
| 27 | 骨料 | Content of light impurities 范围 od 0,1 % |
重量法 | PN-EN 1744-1+A1:2013-05 p.14.2 | |
| 28 | 骨料 | Presence of humus | 目视法 | PN-EN 1744-1+A1:2013-05 p.15.1 | |
| 29 | 骨料 | Fulvic acid content | 目视法 | PN-EN 1744-1+A1:2013-05 p.15.2 | |
| 30 | 骨料 | Solubility in water 范围 (0,1 – 10,0) % |
重量法 | PN-EN 1744-1+A1:2013-05 p.16 | |
| 31 | 骨料 | Loss on ignition 范围 (0,01 – 52,0) % |
重量法 | PN-EN 1744-1+A1:2013-05 p.17 | |
| 32 | 骨料 | Dicalcium silicate disintegration | Visual descriptive method | PN-EN 1744-1+A1:2013-05 p.19.1 | |
| 33 | 骨料 | Iron disintegration | Visual descriptive method | PN-EN 1744-1+A1:2013-05 p.19.2 | |
| 34 | 骨料 | Alkali reactivity | 重量法 | PN-B-06714/46:1992 | |
| 35 | 骨料 | Fines content – methylene blue test | PN-EN 933-9:2022-07 | ||
| 36 | 骨料 | Particle density and water absorption 范围 (0,063 – 31,5) mm |
比重瓶法 | PN-EN 1097-6:2022-07 | |
| 37 | 骨料 | Thermal properties and resistance to weathering, Magnesium sulfate test | PN-EN 1367-2:2010 | ||
| 38 | 骨料 | Thermal properties and resistance to weathering, Test for basalt sunburn (Sonnenbrand) by the boiling method | PN-EN 1367-3:2002+AC:2004 | ||
| 39 | Aggregates, Fly ashes | Density of filler | 比重瓶法 | PN-EN 1097-7:2023-04 | |
| 40 | Filler aggregates | Increase in softening point of the filler-bitumen mixture | Ring and ball method | PN-EN 13179-1:2013-10 | |
| 41 | Admixtures for concrete, mortar and grout | pH 值 范围 2,0 – 12,0 |
电位法 | ISO 4316:1977 | |
| 42 | Admixtures for concrete, mortar and grout | Water-soluble chlorides 范围 (0,01 – 0,50) % |
电位滴定法 | PN-EN 480-10:2011 | |
| 43 | Admixtures for concrete, mortar and grout | Conventional dry matter content 范围 (1,0 – 40,0) % |
重量法 | PN-EN 480-8:2012 | |
| 44 | Admixtures for concrete, mortar and grout | 密度 范围 (1,00 – 1,20) g/cm3 |
比重瓶法 | ISO 758:1976 | |
| 45 | Building materials: aggregate, fly ash, mineral-cement binders (aqueous extracts), Soils, ground (aqueous extracts), Waste: code 17 05 04, 20 02 02, 19 12 09 (aqueous extracts) | pH 值 范围 2,0 – 13,0 |
电位法 | PN-EN 12457-2:2006 | PN-EN 12457-4:2006 | PN-EN ISO 10523:2012 | |
| 46 | Building materials: aggregate, fly ash, mineral-cement binders (aqueous extracts), Soils, ground (aqueous extracts), Waste: code 17 05 04, 20 02 02, 19 12 09 (aqueous extracts) | Element concentration and content As (0,023 – 0,700) mg/l 范围 (0,23 – 7,00) mg/kg Ba (0,0010 – 4,20) mg/l (0,010 – 42,0) mg/kg Cd (0,0010 – 0,300) mg/l (0,010 – 3,00) mg/kg Cr całk. (0,0060 – 0,500) mg/l (0,060 – 5,00) mg/kg Cu (0,0090 – 0,800) mg/l (0,090 – 8,00) mg/kg Mo (0,0060 – 0,800) mg/l (0,060 – 8,00) mg/kg Ni (0,0080 – 0,800) mg/l (0,080 – 8,00) mg/kg Pb (0,021 – 2,80) mg/l (0,21 – 28,0) mg/kg Sb (0,038 – 0,600) mg/l (0,38 – 6,00) mg/kg Se (0,037 – 0,200) mg/l (0,37 – 2,00) mg/kg Zn (0,022 – 0,900) mg/l (0,22 – 9,00) mg/kg |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 12457-2:2006 | PN-EN 12457-4:2006 | PN-EN ISO 11885:2009 | |
| 47 | 固体燃料:烟煤 | 化学与物理检测用样品采集 | PN-G-04502:2014-11 p. 5.3.3, 5.3.4 | ||
| 48 | 固体燃料:烟煤 | 全水分含量 范围 (1,0 – 27,0) % |
重量法 | PN-ISO 589:2006 met. B1 | |
| 49 | 固体燃料:烟煤 | 分析样品水分含量 范围 (0,6 – 11,0) % |
重量法 | PN-ISO 11722:2009 | |
| 50 | Solid fuels: hard coal, coke | 全水分含量 范围 (0,1 – 27,0) % |
重量法 | PN-G-04611:2020-06 | |
| 51 | Solid fuels: hard coal, coke | 分析样品水分含量 范围 (0,1 – 15,0) % |
重量法 | PN-G-04611:2020-06 | |
| 52 | Solid fuels: hard coal, coke | Free moisture content 范围 (7,0 – 23,0) % |
重量法 | PN-G-04611:2020-06 | |
| 53 | Solid fuels: hard coal, coke | 灰分含量 范围 (1,0 – 25,0) % |
重量法 | PN-ISO 1171:2002 | |
| 54 | Solid fuels: hard coal, coke | 高位发热量 范围 (15 000 – 36 000) kJ/kg 低位发热量(计算值) |
量热法 | PN-ISO 1928:2020-05 | |
| 55 | Solid fuels: hard coal, coke | 挥发分含量 范围 (1,00 – 30,00) % |
重量法 | PN-G-04516:1998 | |
| 56 | Solid fuels: hard coal, coke | Analytical moisture content 范围 (0,10 – 20,00) % 灰分含量 范围 (0,10 – 50,00) % |
热重法(TGA) | PN-G-04560:1998 | |
| 57 | Solid fuels: hard coal, coke | 氯含量 范围 (0,005 – 1,00) % |
滴定法 | PN-ISO 587:2000 p.7.2.1 | |
| 58 | Solid fuels: hard coal, coke | 全硫含量 范围 (0,01 – 4,50) % |
高温燃烧红外检测法 | PN-G-04584:2001 | |
| 59 | Solid fuels: hard coal, coke | 总碳含量 范围 (12,0 – 99,9) % 氢含量 范围 (0,05 – 6,00) % |
高温燃烧红外检测法 | PN-G-04571:1998 | |
| 60 | Solid fuels: Coke | 全水分含量 范围 (0,5 – 12,5) % |
重量法 | PN-ISO 579:2002 | |
| 61 | Solid fuels: Coke | Analytical moisture content 范围 (0,10 – 20,0) % |
重量法 | PN-ISO 687:2005 | |
| 62 | Solid fuels: solid biofuels – solid biomass | 全水分含量 范围 (1,0 – 60,0) % |
重量法 | PN-EN ISO 18134-1:2023-02 | |
| 63 | Solid fuels: solid biofuels – solid biomass | 分析样品水分含量 范围 (1,5 – 21,0) % |
Thermogravimetric method (TGA); Gravimetric method | PN-EN ISO 18134-3:2023-12 | |
| 64 | Solid fuels: solid biofuels – solid biomass | 灰分含量 范围 (0,3 – 22,0) % |
Thermogravimetric method (TGA); Gravimetric method | PN-EN ISO 18122:2023-05 | |
| 65 | Solid fuels: solid biofuels – solid biomass | 挥发分含量 范围 (40,0 – 80,0) % |
重量法 | PN-EN ISO 18123:2023-10 | |
| 66 | Solid fuels: solid biofuels – solid biomass | 高位发热量 范围 (10 000 – 25 000) kJ/kg 低位发热量(计算值) |
量热法 | PN-EN ISO 18125:2017-07 | |
| 67 | Solid fuels: solid biofuels – solid biomass | 总碳含量 范围 (35,0 – 75,0) % 氢含量 范围 (2,50 – 6,50) % |
高温燃烧红外检测法 | PN-EN ISO 16948:2015-07 | |
| 68 | Solid fuels: solid biofuels – solid biomass | 硫含量 范围 (0,01 – 1,00) % |
高温燃烧红外检测法 | PN-EN ISO 16994:2016-10 | |
| 69 | Solid fuels: solid biofuels – solid biomass | Biodegradable fraction content – biomass mass fraction using selective rozpuszczania 范围 (20,0 - 99,9) % Zawartość frakcji niebiodegradowalnej – udział masowy niebiomasy (z obliczeń) Zawartość frakcji biodegradowalnej – udział biomasy na podstawie węgla całkowitego (z obliczeń) |
重量法 | PN-EN ISO 21644:2021-07 Aneks B, p. B.7 i B.9 | |
| 70 | Solid fuels: solid biofuels – solid biomass | 化学与物理检测用样品采集 | PN-EN ISO 18135:2017-06 p. 12.2.3.3 | ||
| 71 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 高位发热量 范围 (4 000 – 36 000) kJ/kg 低位发热量(计算值) |
量热法 | PN-EN ISO 21654:2021-12 | |
| 72 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 全水分含量 范围 (0,1 – 90,0) % |
重量法 | CEN/TS 15414-1:2010 | |
| 73 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 分析样品水分含量 范围 (0,10 – 15,0) % |
Thermogravimetric method (TGA); Gravimetric method | PN-EN ISO 21660-3:2021-08 | |
| 74 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 灰分含量 范围 (0,8 – 73,0) % |
Thermogravimetric method (TGA); Gravimetric method | PN-EN ISO 21656:2021-08 | |
| 75 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 挥发分含量 范围 (10,0 – 80,0) % |
重量法 | PN-EN ISO 22167:2021-08 | |
| 76 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 总碳含量 范围 (10,0 – 75,0) % 氢含量 范围 (1,50 – 10,0) % |
高温燃烧红外检测法 | PN-EN ISO 21663:2021-06 | |
| 77 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 硫含量 范围 (0,05 – 2,00) % |
高温燃烧红外检测法 | PN-EN ISO 21663:2021-06 | |
| 78 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01, 19 12 11* | 氯含量 范围 (0,015 – 2,00) % |
滴定法 | PN-EN 15408:2011 | |
| 79 | Solid fuels: solid recovered fuels, Waste: code 03 03 05, 03 03 07, 03 03 10, 19 12 10, 19 12 12, 20 03 01 | Biodegradable fraction content – biomass mass fraction using selective rozpuszczania 范围 (20,0 – 99,9) % Zawartość frakcji niebiodegradowalnej – udział masowy niebiomasy (z obliczeń) Zawartość frakcji biodegradowalnej – udział biomasy na podstawie węgla całkowitego (z obliczeń) |
重量法 | PN-EN ISO 21644:2021-07 Aneks B, p. B.7 i B.9 | |
| 80 | Solid fuels: solid recovered fuels, Waste: code 19 12 10, 19 12 12 | 化学与物理检测用样品采集 | PN-EN ISO 21645:2021-09 | ||
| 81 | Waste: code 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 19, 10 01 21, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82, 10 01 99, Combustion waste: ash, slag, ash-slag mixtures | 总碳含量 范围 (0,5 – 30,0) % |
高温燃烧红外检测法 | PN-G-04571:1998 | |
| 82 | Waste: code 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 19, 10 01 21, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82, 10 01 99, Combustion waste: ash, slag, ash-slag mixtures | Analytical moisture content 范围 (0,10 – 10,0) % |
热重法(TGA) | PN-G-04560:1998 | |
| 83 | Waste: code 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 19, 10 01 21, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82, 10 01 99, Combustion waste: ash, slag, ash-slag mixtures | 全水分含量 范围 (0,10 – 35,0) % |
重量法 | PN-ISO 589:2006 met. B1 | |
| 84 | Waste: code 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 19, 10 01 21, 10 01 23, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82, 10 01 99, Combustion waste: ash, slag, ash-slag mixtures | 全水分含量 范围 (0,10 – 50,0) % |
重量法 | CEN/TS 15414-1:2010 | |
| 85 | Raw materials, ceramic materials, Building materials | Elemental carbon content 范围 (0,10 – 78,0) % |
高温燃烧红外检测法 | PB 32 wydanie 2 z dnia 01.10.2021 r. | |
| 86 | Raw materials, ceramic materials, Building materials | Total carbon TC content 范围 (0,10 – 78,0) % |
高温燃烧红外检测法 | PN-EN 15936:2022-07 metoda A | |
| 87 | Raw materials, ceramic materials, Building materials | Organic carbon content TOC (calculated) | PN-EN 15936:2022-07 metoda A | ||
| 88 | Recarburiser | 全水分含量 范围 (0,4 – 2,4)% |
重量法 | PN-ISO 589:2006 met. B1 | |
| 89 | Recarburiser | Analytical moisture content 范围 (0,10 – 2,25)% 灰分含量 范围 (1,60 – 33,00)% |
热重法(TGA) | PN-G-04560:1998 | |
| 90 | Recarburiser | 总碳含量 范围 (60,0 – 98,0)% |
高温燃烧红外检测法 | PN-G-04571:1998 | |
| 91 | Recarburiser | 全硫含量 范围 (0,10 – 0,95)% |
高温燃烧红外检测法 | PN-G-04584:2001 | |
| 92 | Recarburiser | 挥发分含量 范围 (1,00 – 2,10)% |
重量法 | PN-G-04516:1998 | |
| 93 | Refractory materials and raw materials | True density | PN-EN 993-2:1997+A1:2004 | ||
| 94 | Refractory materials and raw materials | Bulk density | Method A and B | PN-80/C-04532 | |
| 95 | Refractory materials and raw materials | Open porosity, Water absorption | PB 05 wydanie 5 z dnia 01.08.2025 r. | ||
| 96 | Refractory materials and raw materials | Apparent density | Vacuum method | PN-EN ISO 8840:2024-12 | |
| 97 | Refractory materials | 吸水率 | PN-92/H-04185 | ||
| 98 | Refractory materials | Apparent density, Open porosity, Total porosity | PN-EN 993-1:2019-01 | ||
| 99 | Refractory materials | 抗压强度 力值范围 (30 – 500) kN |
PN-EN 993-5:2019-01 | PN-EN ISO 8895:2007 | ||
| 100 | Insulating refractory materials | Apparent density, Total porosity | PN-EN 1094-4:1998 | ||
| 101 | Refractory raw materials, mortars | Sieve analysis 范围 (0,063 – 16) mm |
筛分法 | PN-EN ISO 1927-3:2013-06 | |
| 102 | Slags, ceramic raw materials and products, refractory products and materials | 水分含量 范围 (0,1 – 60,0) % |
重量法 | PN-EN ISO 1927-3:2013-06 | |
| 103 | Unshaped refractory products | Particle size distribution 范围 (0,063 – 16) mm |
筛分法 | PN-EN ISO 1927-3:2013-06 | |
| 104 | Unshaped refractory products | Geometric apparent density | PN-EN ISO 1927-6:2013-06 | ||
| 105 | Unshaped refractory products | Apparent density | PN-EN ISO 1927-6:2013-06 | ||
| 106 | Unshaped refractory products | Open porosity | PN-EN ISO 1927-6:2013-06 | ||
| 107 | Unshaped refractory products | Total porosity | PN-EN ISO 1927-6:2013-06 | ||
| 108 | Unshaped refractory products | 抗压强度 力值范围 (30 – 500) kN Próbki o wymiarach 230x114x64mm Próbki o wymiarach 230x64x64mm |
PN-EN ISO 1927-6:2013-06 | ||
| 109 | Unshaped refractory products | Permanent linear change | PN-EN ISO 1927-6:2013-06 | ||
| 110 | Clay masonry units | Freeze-thaw resistance | PN-B-12012:2022-07 | ||
| 111 | Clay roof tiles | Frost resistance 范围 (od -19 do +17) oC |
PN-EN 539-2:2013-07 | ||
| 112 | Clay roof tiles | Water absorption | PN-EN 539-2:2013-07 | ||
| 113 | 骨料 | 样品采集 | PN-EN 932-1:1999 | ||
| 114 | Clay masonry units | 抗压强度 力值范围 (100 – 5000) kN |
PN-EN 772-1+A1:2015-10 | ||
| 115 | Clay masonry units | Net volume, % of voids | PN-EN 772-3:2000 | ||
| 116 | Clay masonry units | Water absorption by the boiling method | PN-EN 772-7:2000 | ||
| 117 | Clay masonry units | Gross volume, Net volume, % of voids | PN-EN 772-9:2006 | ||
| 118 | Clay masonry units | Initial water absorption | PN-EN 772-11:2011 | ||
| 119 | Clay masonry units | Dry mass, Net dry density, Gross dry density | PN-EN 772-13:2001 | ||
| 120 | Clay masonry units | Dimensions: length, width, height, parallelism of bed faces, flatness of bed faces Shape and structure: thickness of external and internal walls, depth of holes total thickness of internal and external walls |
PN-EN 772-16:2011 | ||
| 121 | Clay masonry units | Flatness of the facing surfaces | PN-EN 772-20:2002+A1:2005 | ||
| 122 | Clay masonry units | Water absorption | PN-EN 772-21:2011 | ||
| 123 | Clay masonry units | Freeze-thaw resistance | PN-B-12012:2022-07 | PN-EN 772-22:2019-01 | ||
| 124 | Ceramic ventilation blocks | 抗压强度 力值范围 (100 – 3000) kN |
PN-EN 772-1+A1:2015-10 | ||
| 125 | Ceramic ventilation blocks | Dry mass, Net dry density, Gross dry density | PN-EN 772-13:2001 | ||
| 126 | Ceramic ventilation blocks | Dimensions: length, width, height, Shape and configuration: thickness of external and internal walls, area of the ventilation openings | PN-EN 772-16:2011 | PN-B-12014:2023-07 | ||
| 127 | Ceramic ventilation blocks | Water absorption | PN-EN 772-21:2011 | ||
| 128 | Clay roof tiles | Bending load capacity 力值范围 (0,5 – 20,0) kN |
PN-EN 538:1999 | ||
| 129 | Clay roof tiles | Water penetration | Method 2 | PN-EN 539-1:2007 | |
| 130 | Clay roof tiles | Frost resistance 范围 (od -19 do +17) oC |
PN-EN 539-2:2013-07 | ||
| 131 | Clay roof tiles | Water absorption | PN-EN 539-2:2013-07 | ||
| 132 | Clay roof tiles | Linear geometric dimensions | PN-EN 1024:2012 | ||
| 133 | Cements, mineral-cement binders, fly ashes, binding materials | 抗压强度 范围 (0,5 – 100) kN 抗弯强度 范围 (0,5 – 50) kN |
PN-EN 196-1:2016-07 | ||
| 134 | Cements, mineral-cement binders, fly ashes, binding materials | Setting time Vicat |
Manual method using an apparatus; Method using an automatic Vicat apparatus | PN-EN 196-3:2016-12 | PN-EN 450-1:2012 | |
| 135 | Cements, mineral-cement binders, fly ashes, binding materials | Soundness 范围 (0 – 5) mm Le Chateliera |
Method using a ring | PN-EN 196-3:2016-12 | PN-EN 450-1:2012 | |
| 136 | Cements, mineral-cement binders, binding materials | Consistency (water demand) | Method using the Vicat apparatus | PN-EN 196-3:2016-12 | |
| 137 | Fly ashes | Consistency (water demand) | Method using a flow table | PN-EN 450-1:2012 | |
| 138 | Fly ashes | Activity index (calculated) | PN-EN 450-1:2012 | ||
| 139 | Blast furnace slags | Setting time Vicat |
Manual method using an apparatus; Method using an automatic Vicat apparatus | PN-EN 15167-1:2007 | PN-EN 196-3:2016-12 | |
| 140 | 骨料 | 粒度分布 范围 (0,063 – 90,0) mm |
筛分法 | PN-EN 933-1:2012 | |
| 141 | 骨料 | Fines content <0,063 mm | PN-EN 933-1:2012 | ||
| 142 | 骨料 | Content of fine grains <0,5 mm | PN-EN 933-1:2012 | ||
| 143 | 骨料 | Flakiness index 范围 (4 – 100) mm |
筛分法 | PN-EN 933-3:2012 WTWiOPK Id-110:2024 | |
| 144 | 骨料 | Shape index | Method using the Schultz calliper | PN-EN 933-4:2008 | |
| 145 | 骨料 | Content of crushed particles 范围 (4 – 63) mm |
重量法 | PN-EN 933-5:2023-05 | |
| 146 | 骨料 | Flow coefficient of aggregates 范围 (0 – 2) mm |
PN-EN 933-6:2023-06 | ||
| 147 | 骨料 | 砂当量 | PN-EN 933-8+A1:2015-07 | ||
| 148 | 骨料 | 耐磨性 | Micro-Deval method | PN-EN 1097-1:2024-05 | |
| 149 | 骨料 | Resistance to fragmentation | Los Angeles method | PN-EN 1097-2:2020-09 | |
| 150 | 骨料 | Bulk density and voids 范围 (0 – 63) mm |
重量-容量法 | PN-EN 1097-3:2000 | |
| 151 | 骨料 | 水分含量 范围 (0,1 – 13,0) % |
重量法 | PN-EN 1097-5:2008 | |
| 152 | 骨料 | Particle density and water absorption 范围 (31,5 – 63,0) mm |
Wire basket method | PN-EN 1097-6:2022-07 | |
| 153 | 骨料 | Frost resistance in water 范围 (od -17,5 do +20) oC |
PN-EN 1367-1:2007 | PN-EN 13450:2004+AC:2004 | ||
| 154 | 骨料 | Resistance to thermal shock | PN-EN 1367-5:2011 | ||
| 155 | 骨料 | Freeze-thaw resistance in salt 范围 (od -17,5 do +20) oC |
PN-EN 1367-6:2008 | ||
| 156 | 骨料 | Grain length | PN-EN 13450:2004+AC:2004 | ||
| 157 | 骨料 | Simplified petrographic description | Method: macroscopic assessment | PN-EN 932-3:2022-12 | |
| 158 | 骨料 | Alkali reactivity | Accelerated bar method | Procedura Badawcza GDDKiA PB/1/18 | |
| 159 | 骨料 | Alkali reactivity | Long-term bar method | Procedura Badawcza GDDKiA PB/2/18 | |
| 160 | 骨料 | Impurities – foreign and solid | PN-B-06714/12:1976 WTWiOPK Id-110:2024 | ||
| 161 | Filler aggregates | Voids in dry compacted filler | PN-EN 1097-4:2008 | ||
| 162 | Filler aggregates | Bitumen number | PN-EN 13179-2:2002 | ||
| 163 | Aggregates and soils | Optimum moisture content 范围 (1,0 – 40,0) % Maksymalna gęstość szkieletu gruntowego 范围 (1,00 – 3,00) g/cm3 |
Proctor method | PN-88/B-04481 | PN-EN 13286-2:2010 | PN-EN 13286-2:2010/AC:2014-07 | |
| 164 | Unbound and hydraulically bound mixtures, Soils, aggregates | Linear swelling 范围 (0 – 5) mm |
PN-EN 13286-47:2022-04 | PN-S-06102:1997 Załącznik A | PN-S-02205:1998 Załącznik A | ||
| 165 | Unbound and hydraulically bound mixtures, Soils, aggregates | Bearing ratio | PN-EN 13286-47:2022-04 | PN-S-06102:1997 Załącznik A | PN-S-02205:1998 Załącznik A | ||
| 166 | Raw materials, building materials, Waste: code 10 01 01, 10 01 02, 03 01 05, 03 03 05, 10 01 03, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82 | 放射性核素活度浓度 40K 范围 (60 – 9 000) Bq/kg |
γ 能谱法 | PB 33 wydanie 2 z dnia 22.04.2024 r. | |
| 167 | Raw materials, building materials, Waste: code 10 01 01, 10 01 02, 03 01 05, 03 03 05, 10 01 03, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82 | 放射性核素活度浓度 214Bi 范围 (15 – 5 000) Bq/kg |
γ 能谱法 | PB 33 wydanie 2 z dnia 22.04.2024 r. | |
| 168 | Raw materials, building materials, Waste: code 10 01 01, 10 01 02, 03 01 05, 03 03 05, 10 01 03, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82 | 放射性核素活度浓度 208Tl 范围 (7 – 5 000) Bq/kg |
γ 能谱法 | PB 33 wydanie 2 z dnia 22.04.2024 r. | |
| 169 | Raw materials, building materials, Waste: code 10 01 01, 10 01 02, 03 01 05, 03 03 05, 10 01 03, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82 | 放射性核素活度浓度 226Ra (计算得出) |
PB 33 wydanie 2 z dnia 22.04.2024 r. | ||
| 170 | Raw materials, building materials, Waste: code 10 01 01, 10 01 02, 03 01 05, 03 03 05, 10 01 03, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82 | 放射性核素活度浓度 232Th (计算得出) |
PB 33 wydanie 2 z dnia 22.04.2024 r. | ||
| 171 | Raw materials, building materials, Waste: code 10 01 01, 10 01 02, 03 01 05, 03 03 05, 10 01 03, 10 01 17, 10 01 24, 10 01 25, 10 01 80, 10 01 81, 10 01 82 | 放射性浓度指数 I(计算得出) | PB 33 wydanie 2 z dnia 22.04.2024 r. | ||
| 172 | 骨料 | 粒度分布 范围 (0,063 – 90,0) mm |
筛分法 | PN-EN 933-1:2012 | |
| 173 | 骨料 | Fines content <0,063 mm | PN-EN 933-1:2012 | ||
| 174 | 骨料 | Content of fine grains <0,5 mm | PN-EN 933-1:2012 | ||
| 175 | 骨料 | Flakiness index 范围 (4 – 100) mm |
筛分法 | PN-EN 933-3:2012 WTWiOPK Id-110:2024 | |
| 176 | 骨料 | Shape index Schultz |
Method using a calliper | PN-EN 933-4:2008 | |
| 177 | 骨料 | 耐磨性 | Micro-Deval method | PN-EN 1097-1:2024-05 | |
| 178 | 骨料 | Resistance to fragmentation | Los Angeles method | PN-EN 1097-2:2020-09 | |
| 179 | 骨料 | Impurities – foreign and solid | PN-B-06714/12:1976 WTWiOPK Id-110:2024 | ||
| 180 | 骨料 | 样品采集 | PN-EN 932-1:1999 p. 8.2 i 8.8 | ||
引用标准 (132)
CEN/TS 15414-1:2010
ISO 4316:1977
ISO 758:1976
PB 05 wydanie 5 z dnia 01.08.2025 r.
PB 32 wydanie 2 z dnia 01.10.2021 r.
PB 33 wydanie 2 z dnia 22.04.2024 r.
PB 34 wydanie 2 z dnia 21.02.2025 r.
PN-80/C-04532
PN-86/H-04157 p. 3.2
PN-88/B-04481
PN-92/H-04185
PN-B-06714/12:1976 WTWiOPK Id-110:2024
PN-B-06714/46:1992
PN-B-12012:2022-07
PN-B-12014:2023-07
PN-B-19707:2023-05
PN-EN 1024:2012
PN-EN 1094-4:1998
PN-EN 1097-1:2024-05
PN-EN 1097-2:2020-09
PN-EN 1097-3:2000
PN-EN 1097-4:2008
PN-EN 1097-5:2008
PN-EN 1097-6:2022-07
PN-EN 1097-7:2023-04
PN-EN 12457-2:2006
PN-EN 12457-4:2006
PN-EN 13179-1:2013-10
PN-EN 13179-2:2002
PN-EN 13263-1+A1:2010
PN-EN 13286-2:2010
PN-EN 13286-2:2010/AC:2014-07
PN-EN 13286-47:2022-04
PN-EN 13450:2004+AC:2004
PN-EN 1367-1:2007
PN-EN 1367-2:2010
PN-EN 1367-3:2002+AC:2004
PN-EN 1367-5:2011
PN-EN 1367-6:2008
PN-EN 15167-1:2007
PN-EN 15408:2011
PN-EN 15936:2022-07 metoda A
PN-EN 1744-1+A1:2013-05 p.10
PN-EN 1744-1+A1:2013-05 p.11
PN-EN 1744-1+A1:2013-05 p.12
PN-EN 1744-1+A1:2013-05 p.14.2
PN-EN 1744-1+A1:2013-05 p.15.1
PN-EN 1744-1+A1:2013-05 p.15.2
PN-EN 1744-1+A1:2013-05 p.16
PN-EN 1744-1+A1:2013-05 p.17
PN-EN 1744-1+A1:2013-05 p.19.1
PN-EN 1744-1+A1:2013-05 p.19.2
PN-EN 1744-1+A1:2013-05 p.7
PN-EN 196-10:2016-07
PN-EN 196-1:2016-07
PN-EN 196-2:2013-11
PN-EN 196-2:2013-11 p. 4.5.17
PN-EN 196-3:2016-12
PN-EN 196-6:2019-01
PN-EN 197-1:2012
PN-EN 450-1:2012
PN-EN 451-1:2017-06
PN-EN 451-2:2017-06
PN-EN 459-2:2021-12
PN-EN 480-10:2011
PN-EN 480-8:2012
PN-EN 538:1999
PN-EN 539-1:2007
PN-EN 539-2:2013-07
PN-EN 772-1+A1:2015-10
PN-EN 772-11:2011
PN-EN 772-13:2001
PN-EN 772-16:2011
PN-EN 772-20:2002+A1:2005
PN-EN 772-21:2011
PN-EN 772-22:2019-01
PN-EN 772-3:2000
PN-EN 772-7:2000
PN-EN 772-9:2006
PN-EN 932-1:1999
PN-EN 932-1:1999 p. 8.2 i 8.8
PN-EN 932-3:2022-12
PN-EN 933-1:2012
PN-EN 933-3:2012 WTWiOPK Id-110:2024
PN-EN 933-4:2008
PN-EN 933-5:2023-05
PN-EN 933-6:2023-06
PN-EN 933-8+A1:2015-07
PN-EN 933-9:2022-07
PN-EN 993-1:2019-01
PN-EN 993-2:1997+A1:2004
PN-EN 993-5:2019-01
PN-EN ISO 10523:2012
PN-EN ISO 11885:2009
PN-EN ISO 12677:2011
PN-EN ISO 16948:2015-07
PN-EN ISO 16994:2016-10
PN-EN ISO 18122:2023-05
PN-EN ISO 18123:2023-10
PN-EN ISO 18125:2017-07
PN-EN ISO 18134-1:2023-02
PN-EN ISO 18134-3:2023-12
PN-EN ISO 18135:2017-06 p. 12.2.3.3
PN-EN ISO 1927-3:2013-06
PN-EN ISO 1927-6:2013-06
PN-EN ISO 21644:2021-07 Aneks B, p. B.7 i B.9
PN-EN ISO 21645:2021-09
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 22167:2021-08
PN-EN ISO 26845:2009
PN-EN ISO 8840:2024-12
PN-EN ISO 8895:2007
PN-G-04502:2014-11 p. 5.3.3, 5.3.4
PN-G-04516:1998
PN-G-04560:1998
PN-G-04571:1998
PN-G-04584:2001
PN-G-04611:2020-06
PN-ISO 1171:2002
PN-ISO 11722:2009
PN-ISO 1928:2020-05
PN-ISO 579:2002
PN-ISO 587:2000 p.7.2.1
PN-ISO 589:2006 met. B1
PN-ISO 687:2005
PN-S-02205:1998 Załącznik A
PN-S-06102:1997 Załącznik A
Procedura Badawcza GDDKiA PB/1/18
Procedura Badawcza GDDKiA PB/2/18