🇵🇱 ORLEN LABORATORIUM S.A. PL
石油化工与燃料水与废水环境材料与高分子汽车建筑
ORLEN LABORATORIUM S.A. 是由 PCA 认可的实验室,认可编号 AB 484(Płock,波兰)。认可范围涵盖 668 项检测方法,涉及以下领域:石油化工与燃料、水与废水、环境、材料与高分子。检测对象包括:水、废水、工作环境 − 空气、液体燃料:液体生物燃料:脂肪酸甲酯(FAME)、污水。最常用的技术:重量法、气相色谱-氢火焰离子化检测法(GC-FID)、分光光度法。
要点速览
- 认可编号: PCA AB 484
- 认可范围内方法数: 668
- 检测对象种类: 144
- 所用技术数: 103
- 城市: Płock, 波兰
- 认可编号
- AB 484
- 认可机构
- PCA
- 地址
- ul. Chemików 7, 09-411 Płock
- 城市
- Płock, 波兰
该实验室检测什么 (144)
- 水、废水 — 71 项方法
- 工作环境 − 空气 — 45 项方法
- 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) — 43 项方法
- 污水 — 37 项方法
- 液体燃料:无铅汽油 — 32 项方法
- 液体燃料:柴油、轻质燃料油 — 32 项方法
- Liquid fuels: aviation turbine fuel — 23 项方法
- 气体燃料:液化石油气(LPG) — 21 项方法
- Gaseous fuels: hydrogen (automotive) — 20 项方法
- 液体燃料:柴油 — 20 项方法
- Lubricants: base oils, engine oils, industrial lubricating oils — 16 项方法
- Other petroleum products: paving bitumens, industrial bitumens and bituminous products — 15 项方法
- Liquid fuels: liquid biofuels: bioethanol — 14 项方法
- Chemical products: terephthalic acid (PTA) — 10 项方法
- Liquid fuels: unleaded petrol, diesel fuel, light fuel oil — 9 项方法
- 另有 129 项
所用检测技术 (103)
- 重量法 — 61 项方法
- 气相色谱-氢火焰离子化检测法(GC-FID) — 55 项方法
- 分光光度法 — 52 项方法
- 目视法 — 33 项方法
- 滴定法 — 26 项方法
- 振荡法 — 25 项方法
- 光学法 — 24 项方法
- 蒸馏法 — 20 项方法
- 电导法 — 17 项方法
- 库仑滴定法 — 15 项方法
- 电感耦合等离子体原子发射光谱法(ICP-OES) — 15 项方法
- 紫外荧光法 — 15 项方法
- 直接测量法 — 12 项方法
- 毛细管法 — 11 项方法
- 红外光谱法 IR — 11 项方法
- 另有 88 项
实验室部门 (17)
- Pracownia Nawozów i Środowiska Naturalnego TT1 — 100 项方法
- Pracownia Przerobu Ropy PP2 — 81 项方法
- Pracownia Paliw i Aromatów PP1 — 76 项方法
- Pracownia Środowiska Pracy PP8 — 66 项方法
- Pracownia Produktów Rafineryjnych w Trzebini PP6 — 64 项方法
- Pracownia Produktów Naftowych w Jedliczu PP5 — 50 项方法
- Pracownia Chromatografii PP3 — 45 项方法
- Pracownia Wód, Ścieków i Produktów Petrochemicznych PP4 — 39 项方法
- Punkt Obsługi Laboratoryjnej we Wrocławiu PP7/5 — 27 项方法
- Punkt Obsługi Laboratoryjnej w Warszawie PP7/4 — 23 项方法
- Punkt Obsługi Laboratoryjnej w Lublinie PP7/1 — 22 项方法
- Punkt Obsługi Laboratoryjnej w Olsztynie PP7/2 — 21 项方法
- Punkt Obsługi Laboratoryjnej w Ostrowie Wielkopolskim PP7/3 — 21 项方法
- Zespół Logistyki Włocławek LL/W — 14 项方法
- Pracownia PTA TT5 — 11 项方法
- 另有 2 项
实验室地点
- Pracownia Wód, Ścieków i Produktów Petrochemicznych PP4 — ul. Chemików 7, 09-411 Płock
- Pracownia Paliw i Aromatów PP1 — ul. Chemików 7, 09-411 Płock
- Pracownia Przerobu Ropy PP2 — ul. Chemików 7, 09-411 Płock
- Pracownia Środowiska Pracy PP8 — ul. Chemików 7, 09-411 Płock
- Pracownia Chromatografii PP3 — ul. Chemików 7, 09-411 Płock
- Zespół Logistyki Płock LL/P — ul. Chemików 7, 09-411 Płock
- Zespół Logistyki Włocławek LL/W — ul. Toruńska 222, 87-800 Włocławek
- Pracownia PTA TT5 — ul. Krzywa Góra 13/15/17, 87-800 Włocławek
- Punkt Obsługi Laboratoryjnej we Wrocławiu PP7/5 — ul. Swojczycka 44, 51-501 Wrocław
- Pracownia Produktów Rafineryjnych w Trzebini PP6 — ul. Fabryczna 22, 32-540 Trzebinia
- Pracownia Produktów Naftowych w Jedliczu PP5 — ul. Trzecieskiego 14, 38-460 Jedlicze
- Punkt Obsługi Laboratoryjnej w Ostrowie Wielkopolskim PP7/3 — ul. Węglowa 1, 63-400 Ostrów Wielkopolski
- Punkt Obsługi Laboratoryjnej w Lublinie PP7/1 — ul. Zemborzycka 116 B, 20-445 Lublin
- Punkt Obsługi Laboratoryjnej w Olsztynie PP7/2 — ul. Gutkowo 54, 11-041 Olsztyn
- Punkt Obsługi Laboratoryjnej w Warszawie PP7/4 — ul. Estrady 8, 05-080 Izabelin
- Pracownia Nawozów i Środowiska Naturalnego TT1 — ul. Toruńska 222, 87-800 Włocławek
- Pracownia Produktów Na ftowych w Jedliczu PP5 —
- Pracownia Prze robu Ropy PP2 —
- Pracownia Wód, Ścieków i Prod uktów Petrochemicznych PP4 —
- Pracownia Środo wiska Pracy PP8 —
认可范围 — 项检测方法 (668)
| 序号 | 检测对象 | 方法 / 参数 | 技术 | 依据文件 | |
|---|---|---|---|---|---|
| Pracownia Wód, Ścieków i Produktów Petrochemicznych PP4 | |||||
| 1 | 水、废水 | Concentration of: total carbon (TC), total organic carbon (TOC) 范围 (0,30 – 1000) mg/l Stężenie ogólnego węgla nieorganicznego (TIC) 范围 (1,00 – 10,0) mg/l |
红外光谱法 IR | PN-EN 1484:1999 | |
| 2 | 水、废水 | 电导率 范围 10,0 μS/cm – 100 mS/cm |
电导法 | PN-EN 27888:1999 | |
| 3 | 水、废水 | Sulphate (VI) concentration 范围 (10 – 1000) mg/l |
重量法 | PN-ISO 9280:2002 | |
| 4 | 水、废水 | 酚指数 范围 (0,010 – 10) mg/l |
分光光度法 | PN-ISO 6439:1994 | |
| 5 | 水、废水 | 生化需氧量 BZT5(BOD5) 范围 (2 – 6000) mg O2/l |
光学法 | PN-EN ISO 5815-1 :2019-12 | |
| 6 | 水 | 六价铬浓度 范围 (2 – 20) μg/l |
分光光度法 | PN-EN ISO 18412:2007 | |
| 7 | 污水 | Phosphorus concentration 范围 (0,01 – 50) mg/l |
分光光度法 | PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 | |
| 8 | 污水 | 氯化物浓度 范围 (10 – 5 000) mg/l |
滴定法 | PN-ISO 9297:1994 | |
| 9 | 污水 | 氨氮浓度 范围 (0,040 – 5,00) mg/l Stężenie amoniaku (jonu amonowego) Z obliczeń |
分光光度法 | PN-ISO 7150-1:2002 | |
| 10 | 污水 | 总悬浮物 范围 (1,0 – 2000) mg/l |
重量法 | PN-EN 872:2007+Ap1:2007 | |
| 11 | 污水 | 凯氏氮浓度 范围 (1,0 – 100) mg/l |
滴定法 | PN-EN 25663:2001 | |
| 12 | 污水 | Chemical oxygen demand (COD) 范围 (10,0 – 10000) mg O2/l |
分光光度法 | PN-ISO 15705:2005 | |
| 13 | 污水 | pH 值 范围 2,0 – 12,0 |
电位法 | PN-EN ISO 10523:2012 | |
| 14 | 污水 | Total nitrogen concentration (sum of Kjeldahl nitrogen, nitrate and nitrite nitrogen) (calculated) | Metoda nr 047 Wydanie 5 z dnia 19.11.2019 | ||
| 15 | 污水 | Chromium +6 concentration 范围 (0,01 – 1,00) mg/l |
分光光度法 | PN-C-04604-08:1977 | |
| 16 | 污水 | 亚硝态氮浓度 范围 (0,010 – 10,0) mg/l Stężenie azotynów (z obliczeń) |
分光光度法 | PN-EN 26777:1999 | |
| 17 | 污水 | Concentration of organic substances extractable with petroleum ether 范围 (2,0 – 420) mg/l |
重量法 | Metoda nr 115 wydanie 4 z dnia 18.12.2020 | |
| 18 | 污水 | Dry residue, residue on ignition and dissolved solids 范围 (10 – 10000) mg/l Straty przy prażeniu (z obliczeń) |
重量法 | Metoda nr 124 wydanie 2 z dnia 03.06.2020 r. | |
| 19 | 污水 | 硝态氮浓度 范围 (0,010 – 30,0) mg/l |
分光光度法 | Metoda nr 125 wydanie 2 z dnia 16.07.2020 r. | |
| 20 | 污水 | Sulfide concentration 范围 (0,10 – 1,50) mg/l |
分光光度法 | Metoda nr 179 wydanie 3 z dnia 13.12.2023 r. | |
| 21 | 污水 | 氨氮浓度 范围 (1,0 – 20) mg/l Stężenie amoniaku (jonu amonowego) (z obliczeń) |
滴定法 | PN-ISO 5664:2002 | |
| 22 | 污泥 | Content of substances extractable with dichloromethane 范围 (0,10 – 20,0) %m/m |
重量法 | Metoda 106 Wydanie 3 z dnia 21.12.2020 | |
| 23 | 污泥 | 干残渣 范围 (0,8 – 48,0) % 水分含量(计算值) |
重量法 | PN-EN 15934:2013-02 Metoda A | |
| 24 | 污泥 | Loss on ignition of dry matter 范围 (7,0 – 85,0)% Pozostałość po prażeniu suchej masy (z obliczeń) |
重量法 | PN-EN 15935:2022-01 | |
| 25 | Construction material: gypsum | 水分含量 范围 (5,0 – 13,0) % |
重量法 | VGB-M 701 e:2008 p. 1.2 | |
| 26 | Construction material: gypsum | Purity (CaSO4x2H2O) 范围 (96,0 – 99,0) % |
重量法 | VGB-M 701 e:2008 p. 2.1 | |
| 27 | Construction material: gypsum | pH 值 范围 4,0 – 9,0 |
电位法 | VGB-M 701 e:2008 p. 4 | |
| 28 | Construction material: gypsum | Degree of whiteness 范围 (35,0 – 78,0) % Ry |
分光光度法 | VGB-M 701 e:2008 p. 5 | |
| 29 | Construction material: gypsum | Particle size – granulometric analysis >32 μm 范围 (48,0 – 86,0) % |
Laser diffraction method | Metoda nr 184 wydanie 2 z dnia 13.12.2023 | |
| 30 | Construction material: gypsum | Determination of carbonates as CaCO3 范围 (0,15 – 1,15) % |
滴定法 | VGB-M 701 e:2008 p. 8.12 | |
| 31 | Construction material: gypsum | Chloride content Cl- 范围 (24 – 130) mg/kg |
滴定法 | VGB-M 701 e:2008 p. 8.8.3 | |
| 32 | Gaseous fuels: natural gas, dry gas, hydrogen gases, high-pressure gases, low-pressure gases | Hydrogen sulphide content 范围 (0,0002 – 0,0650) %(v/v) 范围 (0,0650 – 93) %(v/v) |
Titrimetric method; Titrimetric method | Metoda 041 wydanie 6 z dnia 14.11.2024 | |
| 33 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Iodine value 范围 (105 – 120) g jodu/100g FAME |
滴定法 | PN-EN 14111:2022-11 | |
| 34 | Liquid fuels: liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | 酸值 范围 (0,10 – 1,00) mg KOH/g |
滴定法 | PN-EN 14104:2021-06 | |
| 35 | Liquid fuels: liquid biofuels: bioethanol | 干残渣 范围 (5 – 25) mg/100ml |
重量法 | PN-EN 15691:2023-11 | |
| 36 | Liquid fuels: liquid biofuels: bioethanol | Total acidity 范围 (0,003 – 0,013) %(m/m) |
滴定法 | PN-EN 15491:2025-08 | |
| 37 | Liquid fuels: liquid biofuels: bioethanol | 水分含量 范围 (0,073 – 0,500) %(m/m) |
库仑滴定法 | PN-EN 15489:2009 | |
| 38 | Liquid fuels: liquid biofuels: bioethanol | 磷含量 范围 (0,15 – 1,5) mg/l |
分光光度法 | PN-EN 15487:2009 | |
| 39 | Liquid fuels: liquid biofuels: bioethanol | Inorganic chloride content 范围 (1,0 – 20,0) mg/kg |
Ion chromatography with a conductometric detector (IC-CD) | PN-EN 15492:2012 | |
| Pracownia Paliw i Aromatów PP1 | |||||
| 40 | Liquid fuels: unleaded petrol, Other petroleum products: petroleum distillates | Air saturated vapour pressure 范围 (15,5 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 41 | Liquid fuels: unleaded petrol, Other petroleum products: petroleum distillates | 馏程组成 范围 (30,0 – 360,0) 0C |
蒸馏法 | PN-EN ISO 3405:2019-05 z wyłączeniem pkt. 9 | |
| 42 | Liquid fuels: unleaded petrol, aviation gasoline | 铅含量 范围 (2,5 – 6,0) mg/l |
火焰原子吸收光谱法(FAAS) | PN-EN 237:2007 | |
| 43 | Liquid fuels: unleaded petrol, Other petroleum products: petroleum fractions and/or products with a boiling range of 30°C - 250°C | Octane number LOB 范围 (70 – 115) |
发动机法 | PN-EN ISO 5164 :2014-08 | |
| 44 | Liquid fuels: unleaded petrol, Other petroleum products: petroleum fractions and/or products with a boiling range of 30°C - 250°C | Motor octane number MON 范围 (70 – 107) |
发动机法 | PN-EN ISO 5163 :2014-08 | |
| 45 | Liquid fuels: unleaded petrol, Other petroleum products: petroleum fractions and/or products with a boiling range of 30°C - 250°C | 氧化安定性 范围 (60 – 700) minut |
Induction period method | PN-EN ISO 7536:2011 | |
| 46 | 液体燃料:无铅汽油 | Manganese content 范围 (2,0 – 4,0) mg/l |
火焰原子吸收光谱法(FAAS) | PN-EN 16135 :2012 | |
| 47 | 液体燃料:无铅汽油 | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 48 | 液体燃料:无铅汽油 | Benzene content 范围 (0,1 – 1,0) %(v/v) |
红外光谱法 IR | PN-EN 238:2000+A1:2008 | |
| 49 | Liquid fuels: unleaded petrol, Other petroleum products: petrol components | Content of hydrocarbon groups and oxygenates całkowita zawartość węglowodorów aromatycznych (10,0 – 50,0) %(v/v) całkowita zawartość olefin: 范围 (0,4 – 26,85) % (v/v) zawartość benzenu (0,38 – 1,96) %(v/v) zawartość związków tlenowych: ETBE (0,61 – 14,8) %(v/v) MTBE (0,61 – 15,0) %(v/v) ETOH (0,61 – 16,0) %(v/v) Całkowita zawartość tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN ISO 22854:2025-07 Procedura A | |
| 50 | Liquid fuels: aviation turbine fuel | Density at 15°C 范围 (700,0 – 860,0) kg/m3 |
Hydrometer method | ASTM D 1298-12b (2017) | |
| 51 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Chemical products: aromatic hydrocarbons, solvents, Other petroleum products: petroleum fractions and/or products with a boiling range 30oC - 300°C | Density at 15°C and 20°C 范围 (650,0 – 1100,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | ASTM D 4052-22 | |
| 52 | Liquid fuels: unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: petroleum fractions and/or products with a boiling range 30oC - 300oC | Gum content 范围 (1 – 10) mg/100ml |
重量法 | PN-EN ISO 6246:2017-05 +A1:2020-03 | |
| 53 | Liquid fuels: unleaded petrol, Other petroleum products: petroleum fractions with a boiling range 30°C - 225°C, petrol components | Detailed composition for hydrocarbons up to n-nonane (C9), Non-aromatic hydrocarbons (0,05 – 24,00) %(m/m), Aromatic hydrocarbons (1,00 – 90,00) %(m/m) | 气相色谱-氢火焰离子化检测法(GC-FID) | ASTM D 5134-21 | |
| 54 | Liquid fuels: diesel fuel, Other petroleum products: petroleum distillates | Aromatic hydrocarbon content jednopierścieniowe (MAH) 范围 (7,0 – 30) %(m/m) dwupierścieniowe (DAH) (1,0 – 9.7) %(m/m) trój- i wielopierścieniowe (T+ AH) (0,1 – 2,0) %(m/m) wielopierścieniowe (POLY-AH) (1,1 – 11,8) %(m/m) Sumaryczna zawartość węglowodorów aromatycznych (z obliczeń) |
高效液相色谱-示差折光检测法(HPLC-RID) | PN-EN 12916+A1:2025-07 Procedura A | |
| 55 | Liquid fuels: diesel fuel, liquid biofuels: fatty acid methyl esters (FAME) | Cetane number 范围 50,0 – 60,0 |
发动机法 | PN-EN ISO 5165:2021-02 | |
| 56 | 液体燃料:柴油、轻质燃料油 | Fatty acid methyl esters (FAME) content 范围 (0,05 – 10,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 57 | Liquid fuels: light heating oil, mixtures of light heating oil with unmarked mineral oil | Solvent Red 19 dye content 范围 (1,0 – 10,0) mg/l |
High-performance liquid chromatography with spectrophotometric detection (HPLC-UV/VIS) | DIN 51430:2018-02 | |
| 58 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: gasoline components, petroleum fractions and/or products with a boiling range of 30°C - 350°C | Copper strip corrosion corrosion class (1 – 4) |
目视法 | PN-EN ISO 2160:2004 | |
| 59 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: gasoline components, petroleum fractions and/or products with a boiling range of 30°C - 350°C | Copper strip corrosion corrosion class (1a – 4c) |
目视法 | ASTM D 130-19 | |
| 60 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: gasoline components, petroleum fractions and/or products with a boiling range of 30°C - 350°C | 硫含量 范围 (20,0 – 500) mg/kg |
Wavelength-dispersive X-ray fluorescence spectrometry | PN-EN ISO 20884:2020-03 +A1:2022-03 | |
| 61 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: gasoline components, petroleum fractions and/or products with a boiling range of 30°C - 350°C | 硫含量 范围 (0,0020 – 2,50) % (m/m) |
Wavelength-dispersive X-ray fluorescence spectrometry | PN-EN ISO 14596:2009 | |
| 62 | Liquid fuels: unleaded petrol, aviation turbine fuel | Hydrocarbon group content węglowodory aromatyczne 范围 (5,0 – 70,0) %(v/v) węglowodory olefinowe (1,0 – 55,0) %(v/v) |
Gel chromatography method (FIA) | ASTM D 1319-20a | PN-EN 15553:2022-05+A1:2025-05 | |
| 63 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: petroleum fractions and/or products with a boiling range of 30°C - 350°C | 馏程组成 范围 (30,0 – 360,0) °C |
Automatic distillation method | ASTM D 86-23aɛ2 | |
| 64 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: petroleum fractions and/or products with a boiling range of 30°C - 350°C | 硫含量 范围 (3,0 – 500) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 65 | Liquid fuels: diesel fuel, unleaded petrol, aviation gasoline, aviation turbine fuel, Other petroleum products: petroleum fractions and/or products with a boiling range of 30°C - 350°C | 硫含量 范围 (1,0 – 1000) mg/kg |
紫外荧光法 | ASTM D 5453-24 | |
| 66 | Liquid fuels: aviation turbine fuel | 全硫含量 范围 (0,0050 – 0,300) %(m/m) |
Energy-dispersive X-ray fluorescence spectrometry | ASTM D 4294-24 | |
| 67 | Liquid fuels: aviation turbine fuel | Maximum height of a smokeless flame 范围 (17,0 – 30,0) mm |
Optical method; Visual method | ASTM D 1322-25 | |
| 68 | Liquid fuels: aviation turbine fuel | 酸度 范围 (0,0001 – 0,100) mg KOH/g |
滴定法 | ASTM D 3242-23 | |
| 69 | Liquid fuels: aviation turbine fuel | 低位发热量(计算值) | ASTM D 3338/D 3338M-20a | ||
| 70 | Liquid fuels: aviation turbine fuel | Thermo-oxidative stability at 260 °C Deposits on the tube 0 – 4 A, P Pressure drop (0,1 – 200) mmHg |
JFTOT method | ASTM D 3241-24 | |
| 71 | Liquid fuels: aviation turbine fuel | Water separation properties 范围 70 – 100 |
浊度法 | ASTM D 3948-22 | |
| 72 | Liquid fuels: aviation turbine fuel | Lubricity 范围 (0,40 – 0,85) mm |
BOCLE method | ASTM D 5001-25 | |
| 73 | Liquid fuels: aviation turbine fuel | Solid particle content using a portable automatic particle counter 范围 dla cząstek o średnicy: ≥ 4 μm (216 – 45061) liczba cząstek ≥ 6 μm (74 – 22483) liczba cząstek ≥ 14 μm (9 – 4105) liczba cząstek ≥ 21 μm (2 – 1444) liczba cząstek ≥ 25 μm (1 – 776) liczba cząstek ≥ 30 μm (1 – 365) liczba cząstek |
光学法 | IP 565-13 | |
| 74 | Liquid fuels: aviation turbine fuel | Hydrogen content (calculated) | ASTM D 3343-22 | ||
| 75 | Liquid fuels: aviation turbine fuel | Anti-icing additive content 范围 (0,01 – 0,25) %(v/v) |
折射法 | ASTM D 5006-25 | |
| 76 | Liquid fuels: aviation turbine fuel | Fatty acid methyl esters (FAME) content 范围 (10,0 – 100,0) mg/kg |
红外光谱法 | ASTM D 7797-23 | |
| 77 | Liquid fuels: aviation turbine fuel | Appearance | 目视法 | NO-91-A258-1:2024 p. 2.1 | |
| 78 | Liquid fuels: aviation turbine fuel, Other petroleum products: petroleum products with a boiling range 15°C - 370°C | 闪点 范围 (4,0 – 70,0) °C |
TAG closed cup method | ASTM D 56-22 | |
| 79 | Liquid fuels: aviation turbine fuel | Specific conductivity 范围 (1 – 800) pS/m |
电导法 | ASTM D 2624-24 | |
| 80 | Liquid fuels: aviation turbine fuel, Other petroleum products: petroleum products with a boiling range 100°C - 350°C, petroleum distillates | Kinematic viscosity at (-20) °C 范围 (2,000 – 8,000) mm2/s |
毛细管法 | ASTM D 445-24 | |
| 81 | Liquid fuels: aviation gasoline, aviation turbine fuel, Other petroleum products: petroleum products with a boiling range 15°C - 350°C | Gum content 范围 (1 – 10) mg/100ml |
重量法 | ASTM D 381-25 | |
| 82 | Liquid fuels: aviation turbine fuel | Reaction of fuel with water and assessment of the interface | 目视法 | ASTM D 1094-24 | |
| 83 | Liquid fuels: aviation turbine fuel | Crystallisation temperature [(-75,0) (-42,0)] oC |
光学法 | ASTM D 5972-25 | |
| 84 | Liquid fuels: aviation turbine fuel | Crystallisation temperature [(-62,0) (-42,0)] oC |
目视法 | ASTM D 2386-19 | |
| 85 | Liquid fuels: aviation turbine fuel | Mercaptan sulphur content 范围 (0,0003 – 0,01) %(m/m) |
电位滴定法 | ASTM D 3227-24 | |
| 86 | Liquid fuels: aviation turbine fuel, aviation turbine fuel containing fuel additives | Water separation properties 范围 70 – 100 |
浊度法 | ASTM D 7224-23 | |
| 87 | Liquid fuels: aviation turbine fuel | Aromatic hydrocarbon content MAH (10,0 – 25,0) %(m/m) MAH (10,0 – 25,0) %(v/v) DAH (0,1 – 7,0) %(m/m) DAH (0,1 – 6,5) %(v/v) |
高效液相色谱-示差折光检测法(HPLC-RID) | ASTM D 6379-21e1 | |
| 88 | Liquid fuels: aviation turbine fuel | Sum of aromatic hydrocarbons (calculated) | ASTM D 6379-21e1 | ||
| 89 | Liquid fuels: aviation turbine fuel, Other petroleum products: petroleum products with a boiling range 15°C - 350°C | 色度 范围 (+10) – (+30) wg skali Saybolt |
目视法 | ASTM D 156-23 | |
| 90 | Liquid fuels: aviation turbine fuel | Particulate matter content 范围 (0,0 – 10,0) mg/l |
重量法 | ASTM D 5452-23 | PN-V-04031:2000 | |
| 91 | Liquid fuels: aviation turbine fuel | Existent gum content 范围 (1 – 10) mg/100ml |
重量法 | IP 540/08(2019) | |
| 92 | Liquid fuels: aviation turbine fuel | Content of naphthalene hydrocarbons 范围 (0,08 – 2,0) %(v/v) |
分光光度法 | ASTM D 1840-24 | |
| 93 | Other petroleum products: petroleum products with a boiling range 30°C - 380°C | Bromine number 范围 (0,1 – 100) g/100 g próbki |
电位滴定法 | ASTM D 1159-23 | |
| 94 | Other petroleum products: petroleum products with a boiling range of 30°C - 250°C, Chemical products: aromatic hydrocarbons | Colour of the acid extract 范围 0 – 14 |
目视法 | ASTM D 848-23 | |
| 95 | Other petroleum products: petroleum products with a boiling range of 30°C - 250°C, Chemical products: aromatic hydrocarbons | 色度 范围 1 – 10 |
目视法 | ASTM D 1209-25 | |
| 96 | Other petroleum products: petroleum products with a boiling range of 30°C - 250°C, Chemical products: aromatic hydrocarbons | 酸度 | 目视法 | ASTM D 847-23 | |
| 97 | Other petroleum products: petroleum products with a boiling range of 30°C - 250°C, Chemical products: aromatic hydrocarbons | Thiophene content 范围 (0,14 – 2,61) mg/kg |
Metoda chromatografii gazowej z pulsacyjną detekcją płomieniowo-fotometryczną (GC-PFPD) | ASTM D 4735-19 | |
| 98 | Other petroleum products: petroleum fractions and/ or products with a boiling range 30°C - 400°C, Chemical products: aromatic hydrocarbons | 氯化物含量 范围 (0,3 – 10,0) mg/kg |
Microcoulometric method | UOP 779-08 | |
| 99 | Chemical products: aromatic hydrocarbons, aromatic hydrocarbon fractions, Other petroleum products: light gasoline components | Total sulphur content 范围 (0,10 – 10,0) mg/kg |
紫外荧光法 | ASTM D 7183-23 | |
| 100 | Chemical products: aromatic hydrocarbons | Distillation characteristics including the dry point 范围 (70,0 – 145,0) °C |
蒸馏法 | ASTM D 850-21 | |
| 101 | Chemical products: aromatic hydrocarbons | 氯化物含量 范围 (1,0 – 25,0) mg/kg |
Microcoulometric method | ASTM D 5808-23 | |
| 102 | Chemical products: aromatic hydrocarbons | Freezing point of benzene 范围 (5,10 – 5,50) °C |
目视法 | ASTM D 852-24 | |
| 103 | Chemical products: aromatic hydrocarbons | 氮含量 范围 (0,10 – 1,20) mg/kg |
化学发光法 | ASTM D 7184-24 | |
| 104 | Chemical products: aromatic hydrocarbons | Bromine index 范围 (1,0 – 100,0) (mg Br/100g) |
库仑滴定法 | ASTM D 1492-21 | |
| 105 | Chemical products: monocyclic aromatic hydrocarbons | Content of trace impurities in monocyclic aromatic hydrocarbons Total content of aliphatic impurities (C4 – C10) and individual monocyclic aromatic impurities (C6 – C10) 范围 (0,0006 – 2,5) %(m/m) Czystość jednopierścieniowych węglowodorów aromatycznych benzenu toluenu paraksylenu 范围 97,60 – 99,99 %(m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | ASTM D 7504-23 | |
| 106 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Methyl alcohol content 范围 (0,01– 0,5) %(m/m) |
Gas chromatography with headspace layer analysis and flame ionization detection (HS-GC-FID) | PN-EN 14110:2019-05 | |
| 107 | Liquid fuels: liquid biofuels: bioethanol | Copper content 范围 (0,07 – 0,20) mg/kg |
电热原子化原子吸收光谱法(ETAAS) | PN-EN 15488:2009 | |
| 108 | Liquid fuels: liquid biofuels: bioethanol | Power 范围 (80,0 – 100,0) %(v/v) |
振荡法 | PN-A-79528-3:2007 p. 5.2 | |
| 109 | Liquid fuels: liquid biofuels: bioethanol | Appearance | 目视法 | PN-EN 15769:2010 | |
| 110 | Liquid fuels: liquid biofuels: bioethanol, methanol | Density at 20°C 范围 (0,780 – 0,870) g/cm3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 111 | Liquid fuels: diesel fuel, liquid biofuels: FAME | Derived cetane number 范围 50,0 – 60,0 |
Combustion chamber method | PN-EN 16715:2015-09 | |
| 112 | Liquid fuels: liquid biofuels: bioethanol, motor petrol with bioethanol | 硫含量 范围 (5,0 – 20,0)mg/kg |
紫外荧光法 | PN-EN 15486:2009 | |
| 113 | Liquid fuels: light heating oil | Butoxybenzene (n-butyl phenyl ether (BPE)) content 范围 (0,05 – 20,00) mg/l |
Gas chromatography with mass spectrometry detection (GC-MS) | ILIADe 606:2024 Procedura B | |
| 114 | Crude oil | Content of organic chlorides in the fraction boiling up to 204°C 范围 (1 –50) mg/kg Zawartość chlorków organicznych (z obliczeń) |
Microcoulometric titration method | ASTM D 4929-22 metoda B | |
| 115 | 水、废水 | 汞浓度 范围 (0,010 – 10,0) μg/l |
Cold vapour atomic fluorescence spectrometry (CVAFS) | PN-EN ISO 17852:2009 | |
| Pracownia Przerobu Ropy PP2 | |||||
| 116 | Liquid fuels: diesel fuel, light heating oil, Crude oil | 馏程组成 范围 (50 – 380) °C |
蒸馏法 | PN-EN ISO 3405:2019-05 z wyłączeniem pkt 9 | ASTM D 86-23aɛ2 | |
| 117 | Liquid fuels: liquid biofuels: diesel fuel with FAME | 馏程组成 范围 (50 – 380) °C |
蒸馏法 | PN-EN ISO 3405:2019-05 z wyłączeniem pkt 9 | |
| 118 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 119 | Liquid fuels: unleaded petrol, diesel fuel, light heating oil, heavy heating oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME), Other petroleum products: pyrolysis oil, Crude oil | Density at 15°C 范围 (630 – 1100) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 120 | Liquid fuels: diesel fuel, light heating oil, heavy heating oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME), Other petroleum products: vacuum residue (tar), petroleum fractions and/or products with a boiling temperature 15°C - 500°C, Crude oil | Density at 15°C 范围 (646 – 1050) kg/m3 |
Hydrometer method | PN-EN ISO 3675:2004 | |
| 121 | Liquid fuels: diesel fuel, light heating oil, heavy heating oil, liquid biofuels: diesel fuel with FAME, Other petroleum products: petroleum fractions and/or products with a boiling temperature 20°C - 550°C, road bitumens, industrial bitumens and bituminous products | 闪点 范围 (40 – 220) °C |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 122 | Liquid fuels: unleaded petrol, diesel fuel, light heating oil, heavy heating oil, marine fuel, Other petroleum products: vacuum residue (tar), Crude oil | 硫含量 范围 (0,03 – 5,00) %(m/m) |
Energy-dispersive X-ray fluorescence spectrometry | PN-EN ISO 8754:2007+Ap1:2014-02 | |
| 123 | 液体燃料:柴油、轻质燃料油 | Solvent Red 164 dye content 范围 (1,0 – 15,0) mg/l |
分光光度法 | PN-C-04426:2013-07 Metoda B | |
| 124 | 液体燃料:柴油、轻质燃料油 | Solvent Red 19 dye content 范围 (1,0 – 15,0) mg/l |
分光光度法 | PN-C-04426:2013-07 Metoda A | |
| 125 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | 氧化安定性 范围 (3 – 100) g/m3 |
重量法 | PN- EN ISO 12205:2011 | |
| 126 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | Lubricity 范围 (180 – 650) μm |
HFRR method | PN-EN ISO 12156-1:2024-02 | |
| 127 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Penetration 范围 (20 – 330) * 0,1 mm |
Needle penetration method | PN-EN 1426:2025-02 | |
| 128 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Softening point 范围 (30 – 110) °C |
Ring and Ball method | PN-EN 1427:2015-08 | |
| 129 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Brittleness temperature at sub-zero temperatures [0 (-30)] °C |
Fraass method | PN-EN 12593:2015-08 | |
| 130 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Paraffin content 范围 (1,0 – 3,5) %(m/m) |
蒸馏法 | PN-EN 12606-1:2015-08 | |
| 131 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Solubility 范围 do 100,00 %(m/m) |
重量法 | PN-EN 12592:2014-12 | |
| 132 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Resistance to ageing under the influence of heat and air procentowa zmiana masy [(-0,20) (+0,20)] %(m/m) Procent pozostałej penetracji w temperaturze 25 °C ( z obliczeń) Zmiana temperatury mięknienia pierścień i kula (w °C) (z obliczeń) |
RTFOT method | PN-EN 12607-1:2025-02 | |
| 133 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Resistance to ageing under the influence of heat and air 范围 procentowa zmiana masy [(-1,5) (+2,0)] %(m/m) |
TFOT method | PN-EN 12607-2:2014-12 | |
| 134 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | 水分含量 范围 (0 – 25,0) %(v/v) %(V/m) |
蒸馏法 | ASTM D 95-23ɛ1 | |
| 135 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Dynamic viscosity at 60 °C . 范围 (50 – 8000) Pa s |
毛细管法 | PN-EN 12596:2024-01 | |
| 136 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Stability during storage (calculated) | PN-EN 13399:2017-12 | ||
| 137 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Mass loss after heating 范围 (0,02 – 0,5) % |
重量法 | PN-EN 13303:2017-10 | |
| 138 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Elastic recovery 范围 (15 – 98) % |
Ductilometric method | PN-EN 13398:2017-12 | |
| 139 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Density and relative density 范围 (940 – 1030) kg/m3 |
比重瓶法 | PN-EN 15326+A1:2010 | |
| 140 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Kinematic viscosity at 135°C 范围 (20 – 2000) mm2/s |
毛细管法 | PN-EN 12595:2024-01 | |
| 141 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Tensile force 范围 (1,0 – 10,0) J/cm2 Energia odkształcenia (z obliczeń) |
Ductilometric method | PN-EN 13589:2018-08 | |
| 142 | Crude oil | 水分含量 范围 (0 – 1,0) %(v/v) |
蒸馏法 | PN-EN ISO 9029:2005 | ASTM D 4006-22 | |
| 143 | Crude oil | 密度 范围 (750,0 – 950,0) kg/m3 |
振荡法 | ASTM D 5002-22 | |
| 144 | Crude oil | 水分含量 范围 (0,02 – 2,00) %(m/m) |
电位滴定法 | ASTM D 4377-00 (2011) | |
| 145 | Crude oil | 水分含量 范围 (0,02 – 5,00) % (m/m lub V/V) |
库仑滴定法 | ASTM D 4928-12(2018) | |
| 146 | Crude oil | 馏程组成 范围 (30 – 300)°C |
蒸馏法 | GOST 2177-99 metoda B | |
| 147 | Crude oil | 馏程组成 [(-1) (+400)] °C |
蒸馏法 | ASTM D 2892-25 | |
| 148 | Crude oil – distillation residue according to ASTM D 2892 | 馏程组成 范围 (380 – 565) °C |
蒸馏法 | ASTM D 5236-25 | |
| 149 | Liquid fuels diesel fuel, light heating oil, heavy heating oil, Other petroleum products: pyrolysis oil, Crude oil | Pour point [10 (-50)] °C |
光学法 | PN-EN ISO 3016:2019-06 | ASTM D 97-17b(2022) | |
| 150 | Liquid fuels: diesel fuel, light heating oil, heavy heating oil, Other petroleum products: pyrolysis oil, vacuum residue (tar), Crude oil | Kinematic viscosity at 20 °C, 40 °C, 50 °C, 80 °C and 100 °C 范围 (1,000 – 150,0) mm2/s |
毛细管法 | PN-EN ISO 3104:2024-01 | ASTM D 445-24 | |
| 151 | Liquid fuels: diesel fuel, Other petroleum products: vacuum residue (tar), petroleum fractions and/or products with a boiling temperature 20°C - 550°C, Crude oil | Carbon residue 范围 (0,01 – 24) %(m/m) |
重量法 | PN-ISO 6615:2012 | |
| 152 | Liquid fuels: diesel fuel, light heating oil, Other petroleum products: vacuum residue (tar), Crude oil | 全硫含量 范围 (0,0150 – 2,00) %(m/m) |
Energy-dispersive X-ray fluorescence spectrometry | ASTM D 4294-24 | |
| 153 | Liquid fuels: heavy heating oil, Other petroleum products: pyrolysis oil, Crude oil | 杂质含量 范围 (0,01 – 0,40) %(m/m) |
重量法 | PN-EN ISO 3735:2001 | ASTM D 473-22 | |
| 154 | Liquid fuels: heavy heating oil, Other petroleum products: pyrolysis oil, vacuum residue (tar), petroleum fractions and/or products with a boiling temperature 80°C - 550°C, road bitumens, industrial bitumens and bituminous products | 闪点 范围 (90 – 380) oC |
Cleveland open cup method | PN-EN ISO 2592:2017-10 | |
| 155 | Liquid fuels: diesel fuel, light heating oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME), marine oil | 硫含量 范围 (3,0 – 500) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 156 | Liquid fuels: diesel fuel, light heating oil, heavy heating oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME), Other petroleum products: vacuum residue (tar), petroleum fractions and/or products with a boiling temperature 20°C - 550°C, Crude oil | Carbon residue 范围 (0,01 – 24,00) %(m/m) |
重量法 | PN-EN ISO 10370:2014-12 | |
| 157 | Liquid fuels: diesel fuel, light heating oil, heavy heating oil, liquid biofuels: diesel fuel with FAME, Other petroleum products: pyrolysis oil, vacuum residue (tar), Crude oil | Residue after incineration 范围 (0,001 – 0,180) %(m/m) |
重量法 | PN-EN ISO 6245:2008 | |
| 158 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | 水分含量 范围 (30 – 1000) mg/kg 范围 (0,003 – 0,100) %(m/m) |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 159 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Cloud point [10 (- 41)] oC |
目视法 | PN-EN ISO 3015:2019-06 | |
| 160 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Copper strip corrosion 范围 1a – 4c (skala) |
目视法 | PN-EN ISO 2160:2004 | |
| 161 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Cold filter plugging point [5 (- 45)] oC |
光学法 | PN-EN 116:2015-09 | |
| 162 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 163 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| 164 | Liquid fuels: light heating oil, heavy heating oil, Other petroleum products: vacuum residue (tar) | 高位发热量 范围 (26 500 – 46 300) kJ/kg 低位发热量(计算值) |
量热法 | PN-C-04062:2018-05 | |
| 165 | Liquid fuels: diesel fuel, light heating oil, liquid biofuels: diesel fuel with FAME, Other petroleum products: vacuum residue (tar) | 密度 范围 (600 – 1100) kg/m3 |
振荡法 | ASTM D 4052-22 | |
| 166 | Liquid fuels: diesel fuel, light heating oil, heavy heating oil, Other petroleum products: vacuum residue (tar) | Carbon content 范围 (78 – 88) %(m/m) |
红外光谱法 IR | ASTM D 5291-21 Metoda D | |
| 167 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Corrosion on a steel rod | 目视法 | ASTM D 665-24 | PN-ISO 7120:2011 | |
| 168 | Liquid fuels: heavy heating oil, Other petroleum products: pyrolysis oil, vacuum residue (tar), petroleum fractions and/or products with a boiling temperature 20°C - 550°C, road bitumens, industrial bitumens and bituminous products | 水分含量 范围 (0 – 25) %(v/v) |
蒸馏法 | PN-ISO 3733:2008 | |
| 169 | Liquid fuels: liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Kinematic viscosity at 40 oC 范围 (1,000 – 150,0) mm2/s |
毛细管法 | PN-EN ISO 3104:2024-01 | |
| 170 | Liquid fuels: liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | 氧化安定性 范围 (0,1 – 25,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 171 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Sulfated ash content 范围 (0,005 – 0,25) %(m/m) |
重量法 | PN-ISO 3987:2014-05 | |
| 172 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 氧化安定性 范围 (0,1 – 14,0) h |
电导法 | PN-EN 14112:2021-05 | |
| 173 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Tendency to plug the filter after cooling 范围 (50 – 720) s |
CSFT method | ASTM D 7501-22 | |
| 174 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Group I metal content Na (1 – 10) mg/kg K (1 – 10) mg/kg Suma (Na i K) mg/kg (z obliczeń) |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14538:2008 | |
| 175 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Group II metal content Ca (1 – 10) mg/kg Mg (1,2 – 10) mg/kg Suma (Ca i Mg) mg/kg (z obliczeń) |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14538:2008 | |
| 176 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 磷含量 范围 (4 – 20) mg/kg |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14107:2004 | |
| 177 | 液体燃料:柴油 | Manganese content 范围 (0,5 – 7,0) mg/l |
Inductively coupled plasma atomic emission spectrometry (ICP-OES) | PN-EN 16576:2014-12+Ap1:2017-11 | |
| 178 | 液体燃料:柴油 | 氧化安定性 范围 (5,0 – 50,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 179 | Liquid fuels: diesel fuel, Other petroleum products: pyrolysis oil, vacuum residue (tar), petroleum fractions and/or products with a boiling temperature 50°C - 570°C | 水分含量 范围 (0,003 – 0,100) %(m/m) |
电位滴定法 | PN-ISO 6296:2011 | |
| 180 | Liquid fuels: diesel fuel, heavy heating oil, Other petroleum products: pyrolysis oil, vacuum residue (tar), petroleum fractions and/or products with a boiling temperature 20°C - 550°C | Hydrogen sulphide content 范围 (0,10 – 48,0) mg/kg |
电化学法 | IP 570/15(2021) | |
| 181 | Liquid fuels: heavy heating oil, Other petroleum products: vacuum residues | Total sediment content 范围 (0,01 – 0,50) %(m/m) |
重量法 | PN-ISO 10307-1:2010 | ASTM D 4870-22 | |
| 182 | Liquid fuels: petrol, diesel fuel, light heating oil, heavy heating oil, Other petroleum products: vacuum residue (tar), Lubricants: lubricating base oils | pH of the water extract 范围 zasadowy – kwaśny (wartość pH 2,7 –12,4) |
电化学法 | PN-C-96060:2019-03 Procedura A | |
| 183 | Lubricants: base oils, engine oils, industrial lubricating oils | Viscosity index based on kinematic viscosity at 40 °C and at 100 °C 范围 (85 – 100) dla olejów smarowych bazowych (60 – 150) dla olejów smarowych uszlachetnionych (z obliczeń) |
PN-ISO 2909:2009+Ap1:2010 | ||
| 184 | Lubricants: base oils, engine oils, industrial lubricating oils | 色度 范围 0,5 – 8,0 |
目视法 | ASTM D 1500-24 | |
| 185 | Lubricants: base oils, engine oils, industrial lubricating oils | 闪点 范围 (110 – 280) °C |
Cleveland open cup method | PN-EN ISO 2592:2017-10 | |
| 186 | Lubricants: base oils, engine oils, industrial lubricating oils | Kinematic viscosity at 40°C and 100°C 范围 (2,600 – 200,0) mm2/s |
毛细管法 | PN-EN ISO 3104:2024-01 | |
| 187 | Lubricants: base oils, engine oils, industrial lubricating oils | Pour point [(+6) (-30)] °C |
Optical and visual method | PN-EN ISO 3016:2019-06 | |
| 188 | Lubricants: base oils, engine oils, industrial lubricating oils | 酸值 范围 (0,1 – 5,0) mg KOH/g |
滴定法 | PN-ISO 6618:2011 | |
| 189 | Lubricants: base oils, engine oils, industrial lubricating oils | Residue after incineration 范围 (0,001 – 0,005) %(m/m) |
重量法 | PN-EN ISO 6245:2008 | |
| 190 | Lubricating materials: industrial lubricating oils, Liquid fuels: heavy fuel oil | 水分含量 范围 (0,05 – 5,00) %(v/m) |
蒸馏法 | ASTM D 95-23ɛ1 | |
| 191 | Other petroleum products: slack wax | Oil content 范围 (0,20 – 15,00) %(m/m) |
重量法 | ASTM D 721-25 | |
| 192 | Other petroleum products: slack wax | 凝固点 范围 (45 – 65) °C |
目视法 | PN-ISO 2207:2011 | |
| 193 | 污水 | 金属浓度 Cr, Cd, Pb, Cu, Ni, Zn, Fe, V 范围 (0,010 – 100) mg/l Co, Ag, Ba, B, Al (0,010 – 50,0) mg/l Na, K, Ca, Mg (1,00 – 1000) mg/l Stężenie metali As, Sb (0,010 – 20,0) mg/l |
Inductively coupled plasma atomic emission spectrometry (ICP-OES); Inductively coupled plasma atomic emission spectrometry with hydride generation (HG-ICP-OES) | PN-EN ISO 11885:2009 | |
| 194 | Water, treated wastewater | 金属浓度 Cr, Cd, Cu, Ni, Mn, V (0,010 – 2,00) mg/l Mg, K, Na, Ca (1,00 – 1000) mg/l Zn, Pb, Fe (0,010 – 100) mg/l Ba, Al., Ag (0,010 – 50,0) mg/l Metal concentration As (0,010 – 2,00) mg/l Se, Sb (0.010 – 20,0) mg/l |
Inductively coupled plasma atomic emission spectrometry (ICP-OES); Inductively coupled plasma atomic emission spectrometry with hydride generation (HG-ICP-OES) | PN-EN ISO 11885:2009 | |
| 195 | 水、废水 | Element concentrations As, Cr, Cd, Pb 范围 (0,00010 – 0,050) mg/l |
Atomic emission spectrometry with mass spectrometry detection (ICP-MS) | PN-EN ISO 17294-2:2024-04 | |
| 196 | Building materials: gypsum | Na2O, K2O content Na2O (0,010 – 0,500) %(m/m) K2O (0,010 – 0,500) %(m/m) Content of dissolved MgO MgO (0,001 – 0,100) %(m/m) |
电感耦合等离子体原子发射光谱法(ICP-OES) | VGB-M 701-e/2008 p. 8.7 | |
| Pracownia Środowiska Pracy PP8 | |||||
| 197 | 工作环境 − 空气 | 职业接触评估采样,针对: 粉尘因素 可吸入组分 呼吸性组分 金属及其化合物,包括 可吸入组分 呼吸性组分 有机物质,包括 可吸入组分 无机物质,包括 可吸入组分 呼吸性组分 frakcja torakalna |
个体剂量测定法 | PN-Z-04008-7:2002+Az1:2004 | |
| 198 | 工作环境 − 空气 | 职业接触评估采样,针对: substancje organiczne, 无机物质,包括 可吸入组分 |
Stationary method | PN-Z-04008-7:2002+Az1:2004 | |
| 199 | 工作环境 − 空气 | 暴露指数(计算得出) | PN-Z-04008-7:2002+Az1:2004 | ||
| 200 | 工作环境 − 空气 | Ethylene glycol concentration/content 范围 (0,83 – 333,3)mg/m3 范围 (0,025 – 1,00) mg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-88/Z-04203.02 | |
| 201 | 工作环境 − 空气 | Concentration/content of buta-1,3-diene 范围 (0,13 – 6,67) mg/m3 范围 (0,004 – 0,150) mg w próbce 范围 (0,06 – 2,97) ppm |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-84/Z-04014.02 | |
| 202 | 工作环境 − 空气 | Concentration/content of buta-1,3-diene 范围 (0,22 – 4,44) mg/m3 范围 (0,00098 – 0,02) mg w próbce 范围 (0,10 – 1,98) ppm |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-Z-04438:2021-07 | |
| 203 | 工作环境 − 空气 | NN-Dimethylformamide concentration/content 范围 (1,00 – 333,3) mg/m3 范围 (0,03 – 1,00) mg w próbce 范围 (0,33 – 109,9) ppm |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-89/Z-04209.02 | |
| 204 | 工作环境 − 空气 | Ethylene oxide concentration/content 范围 (0,07 – 2,13) mg/m3 范围 (0,002 – 0,048) mg w próbce 范围 (0,04 – 1,17) ppm |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-Z-04300:2002 | |
| 205 | 工作环境 − 空气 | Extraction naphtha concentration/content 范围 (2,08 – 1041,7) mg/m3 范围 (0,15 – 7,5) mg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-81/Z-04134.02 | |
| 206 | 工作环境 − 空气 | Phenol concentration/content 范围 (0,50 – 35,00) mg/m3 范围 (0,002 – 0,070) mg w próbce |
分光光度法 | PN-Z-04044:1970 | |
| 207 | 工作环境 − 空气 | 一氧化碳浓度 范围 (2,3 – 232,4) mg/m3 范围 (2,0 – 200,0) ppm |
电化学法 | Metoda nr 213 wydanie 1 z dnia 08.09.2025 | |
| 208 | 工作环境 − 空气 | 暴露指数(计算得出) | Metoda nr 213 wydanie 1 z dnia 08.09.2025 | ||
| 209 | 工作环境 − 空气 | Methanol concentration/content 范围 (0,05 – 1,0) mg w próbce 范围 (10,0 – 666,7) mg/m3 |
气相色谱-氢火焰离子化检测法(GC-FID) | Podstawy i Metody Oceny Środowiska Pracy 2014, nr 3(81) s 89 – 101 | |
| 210 | 工作环境 − 空气 | Stężenie/zawartość propan-2-ol 范围 (11,11 – 2400) mg/m3 范围 (0,10 – 16,25) mg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | Podstawy i Metody Oceny Środowiska Pracy 2020, nr 1(103) s 159 – 169 | |
| 211 | 工作环境 − 空气 | Stężenie/zawartość olejów mineralnych wysokorafinowanych, z wyłączeniem cieczy obróbkowych 范围 (0,14 – 10,00) mg/m3 范围 (0,100 – 7,200) mg w próbce |
分光光度法 | PN-Z-04108-06:2006+Az1:2009 | |
| 212 | Środowisko pracy − powietrze *) | Stężenie substancji organicznych*) butane (380 – 3800) mg/m3 propane (288 – 2880) mg/m3 isobutane (380 – 3800) mg/m3 |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda nr 045 wydanie 2 z dnia 14.02.2017 | |
| 213 | 工作环境 − 空气 | Concentration/content of organic substances Aceton (0,1 – 10) mg w próbce 范围 (3,33 – 3333,3) mg/m3 Butan-2-on (0,036 – 9,0) mg w próbce (3,00 – 1800,0) mg/m3 Butan (0,78 – 3888,9) mg/m3 (0,056 – 7,000) mg w próbce Etylobenzen (0,016 – 4,0) mg w próbce (1,33 – 800) mg/m3 Benzen (0,0015 – 0,15) mg w próbce (0,05 – 5,0) mg/m3 (0,02 – 1,54) ppm Heksan (0,008 – 2,0) mg w próbce (0,67 – 200,0) mg/m3 Cykloheksan (0,028 – 7,0) mg w próbce (2,33 – 2333,3) mg/m3 Metylocykloheksan (0,040 – 10,0) mg w próbce (3,33 – 6666,7) mg/m3 Heptan (0,040 – 10,0) mg w próbce (3,33 – 4000,0) mg/m3 Ksylen - mieszanina izomerów (1,2-; 1,3-; 1,4-) (0,008 – 2,0) mg w próbce (0,67 – 666,7) mg/m3 Kumen (0,008 – 2,0) mg w próbce (0,67 – 666,7) mg/m3 Oktan (0,040 – 10,0) mg w próbce (3,33 – 4000,0) mg/m3 Toluen (0,080 – 2,0) mg w próbce (0,67 – 66,7) mg/m3 Etanol (0,1 – 10) mg w próbce (3,33 – 3333,3) mg/m3 Izopentan (0,04 – 10) mg w próbce (3,33 – 6666,7) mg/m3 Pentan (0,04 – 10) mg w próbce (3,33 – 6666,7) mg/m3 Eter tert-butylometylowy (0,008 – 4) mg w próbce (1,33 – 800,0) mg/m3 |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda nr 031 Wydanie 5 z dnia 20.02.2026 | |
| 214 | 工作环境 − 空气 | Chlorine concentration/content 范围 (0,05 – 5,00) mg/m3 范围 (0,0002 – 0,0050) mg w próbce |
分光光度法 | PN-75/Z-04037/03 | |
| 215 | 工作环境 − 空气 | Ammonia concentration/content 范围 (1,20 – 60,00) mg/m3 范围 (0,006 – 0,300) mg w próbce |
分光光度法 | PN-71/Z-04041 | |
| 216 | 工作环境 − 空气 | Hydrogen fluoride concentration/content 范围 (0,15 – 2,25) mg/m3 范围 (0,008 – 0,113) mg w próbce |
分光光度法 | PN-82/Z-04093.03 | |
| 217 | 工作环境 − 空气 | Formaldehyde concentration/content 范围 (0,048 – 5,33) mg/m3 范围 (0,0008 – 0,040) mg w próbce |
分光光度法 | PN-76/Z-04045.02 | |
| 218 | 工作环境 − 空气 | Concentration/content of 2-furaldehyde 范围 (1,00 – 50,00) mg/m3 范围 (0,005 – 0,250) mg w próbce |
分光光度法 | PN-71/Z-04058 | |
| 219 | 工作环境 − 空气 | Ozone concentration/content 范围 (0,0125 – 0,3000) mg/m3 范围 (0,0005 – 0,0120) mg w próbce |
分光光度法 | PN-Z-04007-2:1994 | |
| 220 | 工作环境 − 空气 | Nitrogen monoxide concentration/content 范围 (0,22 – 23,1) mg/m3 范围 (0,18 – 18,6) ppm 范围 (0,001 – 0,104) mg w próbce |
分光光度法 | PN-Z-04009-11:2008 | |
| 221 | 工作环境 − 空气 | Nitrogen dioxide concentration/content 范围 (0,07 – 3,56) mg/m3 范围 (0,0003 – 0,016) mg w próbce 范围 (0,04 – 1,86) ppm |
分光光度法 | PN-Z-04009-11:2008 | |
| 222 | 工作环境 − 空气 | Sulphur dioxide concentration/content 范围 (0,12 – 6,00) mg/m3 范围 (0,0012 – 0,0600) mg w próbce 范围 (0,05 – 2,26) ppm |
分光光度法 | PN-Z-04015-12:1996+Ap1:2001 | |
| 223 | 工作环境 − 空气 | Concentration/content of carbon disulphide 范围 (1,0 – 14,0) mg/m3 范围 (0,010 – 0,140) mg w próbce |
分光光度法 | PN-85/Z-04015.10 | |
| 224 | 工作环境 − 空气 | Hydrogen sulphide concentration/content 范围 (0,20 – 28,00) mg/m3 范围 (0,002 – 0,280) mg w próbce |
分光光度法 | PN-Z-04015-13:1996 | |
| 225 | 工作环境 − 空气 | Concentration/content of chromium (VI) compounds - calculated as Cr (VI) 范围 (0,00038 – 0,011) mg/m3 范围 (0,0008 – 0,021) mg w próbce |
分光光度法 | PN-87/Z-04126/02 | |
| 226 | 工作环境 − 空气 | Acetic acid concentration/content 范围 (0,83 – 100,00) mg/m3 范围 (0,025 – 1,500) mg w próbce 范围 (0,33 – 40,13) ppm |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-Z-04323:2004 | |
| 227 | 工作环境 − 空气 | Hydrogen chloride concentration/content 范围 (0,50 –20,00) mg/m3 范围 (0,20 – 8,00) mg w próbce |
分光光度法 | PN-Z-04450:2014-08 | |
| 228 | 工作环境 − 空气 | Stężenie/zawartość krystalicznej krzemionki (kwarc, krystobalit) 呼吸性组分 范围 (0,005 – 0,988) mg/m3 范围 (0,005 – 0,400) mg w próbce |
Fourier transform infrared spectrometry (FT-IR) | Podstawy i Metody Oceny Środowiska Pracy 2012, nr 4(74) s. 117-130 | |
| 229 | 工作环境 − 空气 | Concentration/content of harmful dust agents - inhalable fraction 未按毒性分类的粉尘 木粉尘 面粉粉尘 asfalt naftowy 范围 (0,08 – 40,83) mg/m3 范围 (0,06 – 2,45) mg w próbce |
重量法 | PN-Z-04507:2022-05+Ap1:2022-08 | |
| 230 | 工作环境 − 空气 | Concentration/content of chloroethene 范围 (0,11 – 11,11) mg/m3 范围 (0,0020 – 0,200) mg w próbce 范围 (0,04 – 4,28) ppm |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 231 | 工作环境 − 空气 | Concentration/content of 1,2-dichloroethane 范围 (0,53 – 55,56) mg/m3 范围 (0,010 – 1,000) mg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 232 | 工作环境 − 空气 | Tetrachloroethene concentration/content 范围 (4,0 – 200) mg/m3 范围 (0,040 – 2,00) mg w próbce 范围 (0,58 – 29,1) ppm |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 233 | 工作环境 − 空气 | Concentration/content of chloroethane 范围 (6,67 – 2666,7) mg/m3 范围 (0,020 – 2,000) mg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 234 | Workplace environment − emergency electric lighting | 照度 范围 (0,5 – 500) lx |
直接测量法 | PN-EN 1838:2025-05 z wyłączeniem punktów normy 5.1.3, 5.1.4, 5.2.3, 5.2.4, 5.3.4, 5.3.5, 5.3.7, 6.0 | |
| 235 | Workplace environment − emergency electric lighting | 最小与最大照度之比(计算值) | PN-EN 1838:2025-05 z wyłączeniem punktów normy 5.1.3, 5.1.4, 5.2.3, 5.2.4, 5.3.4, 5.3.5, 5.3.7, 6.0 | ||
| 236 | Workplace environment − emergency electric lighting | Illuminance uniformity for the high-risk zone (calculated) | PN-EN 1838:2025-05 z wyłączeniem punktów normy 5.1.3, 5.1.4, 5.2.3, 5.2.4, 5.3.4, 5.3.5, 5.3.7, 6.0 | ||
| 237 | Workplace environment − emergency electric lighting | Closing time 范围 (1 – 80) s |
直接测量法 | PN-EN 1838:2025-05 z wyłączeniem punktów normy 5.1.3, 5.1.4, 5.2.3, 5.2.4, 5.3.4, 5.3.5, 5.3.7, 6.0 | |
| 238 | Workplace environment − emergency electric lighting | Minimum duration of lighting operation 范围 (1 – 3600) s |
直接测量法 | PN-EN 1838:2025-05 z wyłączeniem punktów normy 5.1.3, 5.1.4, 5.2.3, 5.2.4, 5.3.4, 5.3.5, 5.3.7, 6.0 | |
| 239 | 工作场所环境 − 室内电气照明 | 照度 范围 (5 – 5 000) lx |
直接测量法 | Metoda 032 wyd. 7 z dnia 19.02.2026 | |
| 240 | 工作场所环境 − 室内电气照明 | 照度均匀度(计算值) | Metoda 032 wyd. 7 z dnia 19.02.2026 | ||
| 241 | Workplace environment − outdoor electric lighting | 照度 范围 (5 – 500) lx |
直接测量法 | Metoda 032 wyd. 7 z dnia 19.02.2026 | |
| 242 | Workplace environment − outdoor electric lighting | Uniformity of lighting (calculated), Variation in illuminance (calculated) | Metoda 032 wyd. 7 z dnia 19.02.2026 | ||
| 243 | 工作场所环境 − 中等微气候 | 空气温度 范围 (10 – 40) oC 黑球温度 范围 (10 - 40) oC 空气湿度 范围 (25 – 75) % 空气流速 范围 (0,15 – 10) m/s |
直接测量法 | PN-EN ISO 7730:2006+Ap1:2014 | |
| 244 | 工作场所环境 − 中等微气候 | PMV 指数、PPD 指数(计算值) | PN-EN ISO 7730:2006+Ap1:2014 | ||
| 245 | 工作场所环境 − 高温微气候 | 空气温度 范围 (20 – 40) oC 自然湿球温度 范围 (20 – 40) oC 黑球温度 范围 (20 – 40) oC |
直接测量法 | PN-EN ISO 7243:2018-01+Ap2:2020-04 | |
| 246 | 工作场所环境 − 高温微气候 | WBGT, WBGTeff index (calculated) | PN-EN ISO 7243:2018-01+Ap2:2020-04 | ||
| 247 | 工作场所环境 − 全身振动 | 频率计权振动加速度有效值 范围 (0,10 – 50) m/s2 Ekspozycja dzienna, wyrażona w postaci równoważnego energetycznie dla 8 godzin działania skutecznego, skorygowanego częstotliwościowo przyspieszenia drgań, dominującego wśród przyspieszeń drgań, wyznaczonych dla trzech składowych kierunkowych z uwzględnieniem właściwych współczynników (1.4awx, 1.4awy, awz) Ekspozycja trwająca 30 minut i krócej, wyrażona w postaci skutecznego, ważonego częstotliwościowo przyspieszenia drgań, dominującego wśród przyspieszeń drgań, wyznaczonych dla trzech składowych kierunkowych z uwzględnieniem właściwych współczynników (1.4awx, 1.4awy, awz) (计算得出) |
直接测量法 | PN-EN 14253+A1:2011 | |
| 248 | 工作场所环境 — 手传振动 | 频率计权振动加速度有效值 范围 (0,20 – 100) m/s2 Ekspozycja dzienna, wyrażona w postaci równoważnej energetycznie dla 8 godzin działania sumy wektorowej skutecznych, skorygowanych częstotliwościowo przyspieszeń drgań, wyznaczonych dla trzech składowych kierunkowych (ahwx, ahwy, ahwz) Ekspozycja trwająca 30 minut i krócej, wyrażona w postaci sumy wektorowej skutecznych, ważonych częstotliwościowo przyspieszeń drgań, wyznaczonych dla trzech składowych kierunkowych (ahwx, ahwy, ahwz) (z obliczeń) |
直接测量法 | PN-EN ISO 5349-1:2004 | PN-EN ISO 5349-2:2004 | PN-EN ISO 5349-2:2004/A1:2015-11 | |
| 249 | 工作环境 − 噪声 | A 计权等效声级 A 计权最大声级 范围 (34 – 139) dB C 计权峰值声级 范围 (34 – 139) dB |
直接测量法 | PN-N-01307:1994 | PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 i 3 – punkt 10 i 11 | |
| 250 | 工作环境 − 噪声 | 噪声暴露级,参照: 8 小时日工作时间 平均每周工作时间(计算值) |
PN-N-01307:1994 | PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 i 3 – punkt 10 i 11 | ||
| 251 | Workplace environment - electromagnetic field in the workspace during the use of power systems and AC electrical supply installations in the power industry | 电场强度: 频率范围 50 Hz 范围 (0,1 – 20) kV/m 法规领域: Pomiary pola elektromagnetycznego w środowisku pracy wykonane dla celów obszaru regulowanego prawnie Potwierdzono kompetencje laboratorium z uwzględnieniem mających zastosowanie wymagań Rozporządzenia Ministra Rodziny, Pracy i Polityki Społecznej z dnia 29.06.2016 r. (tekst jednolity Dz. U. z 2018 poz. 331). |
直接测量法 | Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4(90), s. 91 - 150 | |
| 252 | Workplace environment - electromagnetic field in the workspace during the use of power systems and AC electrical supply installations in the power industry | 磁感应强度: 频率范围 50 Hz 范围 1 μT – 10 mT 法规领域: Pomiary pola elektromagnetycznego w środowisku pracy wykonane dla celów obszaru regulowanego prawnie Potwierdzono kompetencje laboratorium z uwzględnieniem mających zastosowanie wymagań Rozporządzenia Ministra Rodziny, Pracy i Polityki Społecznej z dnia 29.06.2016 r. (tekst jednolity Dz. U. z 2018 poz. 331). |
直接测量法 | Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4(90), s. 91 - 150 | |
| 253 | Workplace environment - electromagnetic field in the workspace during the use of power systems and AC electrical supply installations in the power industry | Magnetic field strength at a frequency of 50 Hz (calculated) 法规领域: Pomiary pola elektromagnetycznego w środowisku pracy wykonane dla celów obszaru regulowanego prawnie Potwierdzono kompetencje laboratorium z uwzględnieniem mających zastosowanie wymagań Rozporządzenia Ministra Rodziny, Pracy i Polityki Społecznej z dnia 29.06.2016 r. (tekst jednolity Dz. U. z 2018 poz. 331). |
Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4(90), s. 91 - 150 | ||
| 254 | 工作环境 − 空气 | Concentration/content of nickel compounds calculated as Ni – inhalable fraction 范围 (0,0009 – 0,16) mg/m3 范围 (0,001 – 0,12) mg w próbce – frakcja respirabilna 范围 (0,0006 – 0,11) mg/m3 范围 (0,001 – 0,12) mg w próbce |
火焰原子吸收光谱法(FAAS) | Podstawy i Metody Oceny Środowiska Pracy 2021, nr4(110), s. 179-189 | |
| 255 | 工作环境 − 空气 | Metallic nickel concentration/content 范围 (0,014 – 0,55) mg/m3 范围 (0,010 – 0,400) mg w próbce |
火焰原子吸收光谱法(FAAS) | PN-Z-04502:2019-10 | |
| 256 | 工作环境 − 空气 | Concentration/content of lead and its inorganic compounds, excluding lead (II) arsenate (V) and lead (II) chromate (VI) calculated as Pb 可吸入组分 范围 (0,0035 – 0,185) mg/m3 范围 (0,0025 – 0,100) mg w próbce |
火焰原子吸收光谱法(FAAS) | PN-Z-04487:2017-10 | |
| 257 | 工作环境 − 空气 | Concentration/content of manganese and its inorganic compounds expressed as Mn 可吸入组分 范围 (0,008 – 0,444) mg/m3 范围 (0,006 – 0,320) mg w próbce 呼吸性组分 范围 (0,001 – 0,148) mg/m3 范围 (0,0015 – 0,1600) mg w próbce |
Atomic absorption spectrometry (FAAS) | PN-Z-04472:2015-10+Ap:1:2015-12 | |
| 258 | 工作环境 − 空气 | Concentration/content of metallic chromium, chromium compounds: chromium (II), chromium (III), chromium (VI) – calculated as Cr 范围 (0,017 – 1,389) mg/m3 范围 (0,012 – 1,000) mg w próbce |
火焰原子吸收光谱法(FAAS) | PN-Z-04434:2011 | |
| 259 | 工作环境 − 空气 | Concentration/content of iron oxides calculated as Fe iron(III) oxide iron(II) oxide triiron tetraoxide 呼吸性组分 范围 (0,23 – 6,94) mg/m3 范围 (0,125 – 3,750) mg w próbce 可吸入组分 范围 (0,35 – 10,42) mg/m3 范围 (0,25 – 7,50) mg w próbce |
Atomic absorption spectrometry (FAAS) | PN-Z-04469:2025-02 | |
| 260 | 工作环境 − 空气 | Potassium hydroxide concentration/content 范围 (0,02 –2,00) mg/m3 范围 (0,014 –1,435) mg w próbce |
火焰原子吸收光谱法(FAAS) | PN-Z-04436:2011 | |
| 261 | 工作环境 − 空气 | Sodium hydroxide concentration/content 范围 (0,012 – 2,420) mg/m3 范围 (0,0087 – 1,7400) mg w próbce |
火焰原子吸收光谱法(FAAS) | PN-Z-04435:2011 | |
| 262 | 工作环境 − 空气 | Concentration/content of cobalt and its inorganic compounds calculated as Co 范围 (0,002 – 0,042) mg/m3 范围 (0,0013 – 0,0300) mg w próbce |
火焰原子吸收光谱法(FAAS) | PN-Z-04291:2003 | |
| Pracownia Chromatografii PP3 | |||||
| 263 | 气体燃料:液化石油气(LPG) | Motor octane number (MON) (calculated) | PN-EN 589:2024-08 załącznik B | ||
| 264 | 气体燃料:液化石油气(LPG) | Total sulphur content 范围 (1,0 – 55,0) mg/kg 范围 (0,0001 – 0,0055) %(m/m) |
紫外荧光法 | ASTM D 6667-21 | |
| 265 | 气体燃料:液化石油气(LPG) | Vapour pressure estimated at the temperature 40 oC (calculated) | PN-EN ISO 8973:2000+A1:2020-10 | PN-EN 589:2024-08 załącznik C | ||
| 266 | 气体燃料:液化石油气(LPG) | Temperature at which the estimated relative vapour pressure is not less than 150 kPa (calculated) | PN-EN ISO 8973:2000+A1:2020-10 | PN-EN 589:2019-04 załącznik C | ||
| 267 | 气体燃料:液化石油气(LPG) | Vapour pressure estimated at the temperature (-10)°C, (-5)°C, 0°C, 10°C, 20°C (calculated) | PN-EN ISO 8973:2000+A1:2020-10 | PN-EN 589:2024-08 załącznik C | ||
| 268 | 气体燃料:液化石油气(LPG) | Hydrocarbon composition 范围 (0,1 – 100,0) %(m/m) 范围 (0,1 – 100,0) %(mol) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-ISO 7941:1993+Ap1:2002 | PN-EN 27941:2015-12 | |
| 269 | 气体燃料:液化石油气(LPG) | Total diene content 范围 (0,1 – 2,1) %(m/m) 范围 (0,1 – 2,0) %(mol) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-ISO 7941:1993+Ap1:2002 | PN-EN 27941:2015-12 | |
| 270 | 气体燃料:液化石油气(LPG) | Copper strip corrosion corrosion class (1 – 4) |
目视法 | PN-EN ISO 6251:2001 | |
| 271 | 气体燃料:液化石油气(LPG) | Presence of hydrogen sulfide | 目视法 | PN-EN ISO 8819:2000 | |
| 272 | 气体燃料:液化石油气(LPG) | Presence of water | 目视法 | PN-EN 15469:2009 | |
| 273 | 气体燃料:液化石油气(LPG) | Odour | Organoleptic method | PN-EN 589:2024-08 załącznik A | |
| 274 | 气体燃料:液化石油气(LPG) | 低位发热量(计算值) | PN-C-96008:1998 p. 4.4.8 | ||
| 275 | 气体燃料:液化石油气(LPG) | Absolute vapour pressure at temp. (-15) °C (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 276 | 气体燃料:液化石油气(LPG) | Absolute vapour pressure at temp. 40 °C (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 277 | 气体燃料:液化石油气(LPG) | Absolute vapour pressure at temp. 70 °C (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 278 | 气体燃料:液化石油气(LPG) | Density at temp. 15,6 °C (calculated) | PN-C-96008:1998 p. 4.4.9 | ||
| 279 | 气体燃料:液化石油气(LPG) | Soluble residue 范围 (5 – 100) mg/kg |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 15470:2017-08 | |
| 280 | 气体燃料:液化石油气(LPG) | Total diene content 范围 (0,01 – 0,50) %(m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | DIN 51619:2004-02 | |
| 281 | 气体燃料:液化石油气(LPG) | 1,3-butadiene content 范围 (0,01 – 0,50) %(m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | DIN 51619:2004-02 | |
| 282 | 气体燃料:液化石油气(LPG) | Hydrocarbon composition 范围 (0,10 – 100,00) %(m/m) dla każdego ze składników |
气相色谱-氢火焰离子化检测法(GC-FID) | DIN 51619:2004-02 | |
| 283 | Gaseous fuels: liquefied petroleum gases | Presence of hydrogen sulfide | 目视法 | PN-C-96008:1998 p. 4.4.2 | |
| 284 | Gaseous fuels: liquefied petroleum gases | Mineral oil content 范围 (0,0003 – 0,0050) %(m/m) |
重量法 | PN-C-96008:1998 p. 4.4.4 | |
| 285 | Gaseous fuels: liquefied petroleum gases | Presence of water | 目视法 | PN-C-96008:1998 p. 4.4.5 | |
| 286 | Gaseous fuels: liquefied petroleum gases | Presence of ammonia | 目视法 | PN-C-96008:1998 p. 4.4.6 | |
| 287 | Gaseous fuels: gases from technological processes: fuel gases, hydrogen gases, post-oxidation gases, hydrocarbon gases | Detailed composition Węglowodory od C1 do C6 范围 (0,10 – 99,90) % (mol/mol) Tlen (0,10 – 20,00) %(mol/mol) Azot (0,10 – 90,00) %(mol/mol) CO2 (0,10 – 45,00) %(mol/mol) CO (0,10 – 1,00) %(mol/mol) H2 (0,10 – 99,70) %(mol/mol) |
Gas chromatography with flame ionization and thermal conductivity detection (GC-FID/TCD) | UOP 539-12 | |
| 288 | Gaseous fuels: gases from technological processes: post-oxidation gases, hydrocarbon gases | Elemental carbon content (calculated) | Metoda 103 wydanie 3 z dnia 07.01.2022 | ||
| 289 | Gaseous fuels: gases from technological processes: post-oxidation gases, hydrocarbon gases | 低位发热量(计算值) | PN-EN ISO 6976:2016-11 | ||
| 290 | Gaseous fuels: gases from technological processes: post-oxidation gases, hydrocarbon gases | Density (calculated) | PN-EN ISO 6976:2016-11 | ||
| 291 | Gaseous fuels: natural gas | Hydrocarbon composition 范围 (0,0002 – 99,0000) %mol |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 27941:2015-12 | |
| 292 | Gaseous fuels: natural gas | 氮含量 范围 (0,05 – 5,00) %mol |
Gas chromatography with thermal conductivity detection (GC-TCD) | ASTM D 1946-24 | |
| 293 | Gaseous fuels: natural gas | Carbon dioxide content 范围 (0,0010 – 1,0000) %mol |
Gas chromatography with thermal conductivity detection (GC-TCD) | Metoda 048 pkt 1.1 wyd. 4 z dnia 27.12.2023 | |
| 294 | Gaseous fuels: natural gas | Density (calculated) | PN-EN ISO 6976:2016-11 | ||
| 295 | Gaseous fuels: natural gas | 低位发热量(计算值) | PN-EN ISO 6976:2016-11 | ||
| 296 | Gaseous fuels: fuel gas | Hydrocarbon composition 范围 (0,01 – 99,00) %mol |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 27941:2015-12 | |
| 297 | Gaseous fuels: fuel gas | 氮含量 范围 (0,05 – 10,00) %mol |
Gas chromatography with thermal conductivity detection (GC-TCD) | ASTM D 1946-24 | |
| 298 | Gaseous fuels: fuel gas | 氢含量 范围 (0,01 – 60,00) %mol |
Gas chromatography with thermal conductivity detection (GC-TCD) | ASTM D 1946-24 | |
| 299 | Gaseous fuels: fuel gas | Density (calculated) | PN-EN ISO 6976:2016-11 | ||
| 300 | Gaseous fuels: fuel gas | 低位发热量(计算值) | PN-EN ISO 6976:2016-11 | ||
| 301 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Fatty acid methyl esters (FAME) content Sum of esters (90,0 – 100,0) %(m/m) Linolenic acid methyl ester content (1,0 – 15,0) % (m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 14103:2020-06 | |
| 302 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Content of the sum of polyunsaturated fatty acid methyl esters (≥4 double bonds) (PUFA) 范围 (0,30 – 3,00) %(m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 15779+A1:2013-12 | |
| 303 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Content of free and total glycerol and of mono-, di- and triacylglycerols Monoacyloglicerole 范围 (0,05 – 1,25) % (m/m) Diacyloglicerole (0,05 – 0,50) %(m/m) Triacyloglicerole (0,05 – 0,50) %(m/m) Wolny glicerol (0,001 – 0,050) %(m/m) Ogólny glicerol (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 14105:2025-04 | |
| 304 | Liquid fuels: liquid biofuels: bioethanol | Content of higher alcohols, methanol and other impurities metanol (0,010 – 3,000) %(m/m) Wyższe alkohole (C3-C5) 范围 (0,010 – 2,500) %(m/m) etanol wraz z wyższymi alkoholami – powyżej 95,000 %(m/m) inne zanieczyszczenia (0,010 – 2,000) %(m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 15721:2013-10 Procedura A | |
| 305 | 水、废水 | Concentration of volatile aromatic hydrocarbons 苯 (3,0 – 14000) μg/l 甲苯 (3,0 – 14000) μg/l 乙苯 (3,0 – 14000) μg/l (m+p)-ksylen (3,0 – 27000) μg/l 邻二甲苯 (3,0 – 14000) μg/l kumen (3,0 – 14000) μg/l Suma ksylenów, suma BTEX (z obliczeń) |
Headspace gas chromatography with flame ionization detection (HS-GC-FID) | PN-ISO 11423-1:2002 | |
| 306 | 污水 | 矿物油指数 范围 (0,10 – 100) mg/l |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN ISO 9377-2:2003 | |
| 307 | Workplace environment – air samples collected on filters and sorbent tubes | 多环芳烃(PAHs)含量 antracen (0,005 – 0,500) μg w próbce benzo(a)antracen 范围 (0,010 – 1,000) μg w próbce chryzen (0,020 – 2,000) μg w próbce benzo(b)fluoranten (0,010 – 1,000) μg w próbce benzo(k)fluoranten (0,010 – 1,000) μg w próbce benzo(a)piren (0,020 – 2,000) μg w próbce dibenzo(ah)antracen (0,040 – 4,000) μg w próbce benzo(ghi)perylen (0,020 – 2,000) μg w próbce indeno (123cd)piren (0,020 – 0,100) μg w próbce |
高效液相色谱-荧光检测法(HPLC-FLD) | PN-Z-04240-5:2006 | |
| Zespół Logistyki Płock LL/P | |||||
| 308 | Paliwa ciekłe: olej napędowy, benzyna, olej opałowy lekki, olej opałowy ciężki, paliwo do turbinowych silników lotniczych, biopaliwo ciekłe: estry metylowe kwasów tłuszczowych (FAME), bioetanol | Sampling from tanks for chemical and physical testing 法规领域: Badania wykonywane poza siedzibą laboratorium |
PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.5, 8.3.1.8, 8.3.2, 8.7,8.8, 10.6, 10.7 | ||
| 309 | Liquid fuels: diesel fuel, petrol | Sampling from a dispenser for chemical and physical testing 法规领域: Badania wykonywane poza siedzibą laboratorium |
PN-EN 14275:2013-06 | ||
| 310 | 气体燃料:液化石油气(LPG) | 化学与物理检测用样品采集 法规领域: Badania wykonywane poza siedzibą laboratorium |
PN-EN ISO 4257:2004 ZN/MG/CN-18:2007 | ||
| 311 | 污水 | 化学与物理检测用样品采集 所采废水样品的温度 范围 (2,0 – 50,0) °C 法规领域: Badania wykonywane poza siedzibą laboratorium |
手工法 | PN-ISO 5667-10:2021-11 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | |
| 312 | 污水 | pH 值 范围 2,0 – 12,0 法规领域: Badania wykonywane poza siedzibą laboratorium |
电位法 | PN-EN ISO 10523:2012 | |
| 313 | Gaseous fuels: hydrogen (automotive) | 化学与物理检测用样品采集 from tanks from the refuelling station from pipelines in the installation 法规领域: Badania wykonywane poza siedzibą laboratorium |
ASTM D 7606-24a | ISO 21087:2019-06 p. 8 | ISO 19880-1:2020-03 załącznik K p. K1, K2, K3 | ISO 19880-09:2024 z wyłączeniem załącznika A, C, D, E, F | ||
| 314 | Gaseous fuels: hydrogen (automotive) | Sampling for particulate matter content from tanks from the refuelling station from pipelines 法规领域: Badania wykonywane poza siedzibą laboratorium |
ASTM D 7650-21 z wyłączeniem 7.9 | ISO 21087:2019-06 p. 8 | ISO 19880-1:2020-03 załącznik K p. K1, K2, K7 z wyłączeniem p. K.7.1 | ISO 19880-9:2024-07 z wyłączeniem załącznika A, B, C, E, F | ||
| Zespół Logistyki Włocławek LL/W | |||||
| 315 | 污水 | 化学与物理检测用样品采集 Temperature of the collected sample Range: (2,0 – 50,0) °C 法规领域: Badania wykonywane poza siedzibą laboratorium |
手工法 | PN-ISO 5667-10:2021-11 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | |
| 316 | 污水 | 化学与物理检测用样品采集 法规领域: Badania wykonywane poza siedzibą laboratorium |
Automatic method | PN-ISO 5667-10:2021-11 | |
| 317 | 污水 | pH 值 范围 2,0 – 12,0 法规领域: Badania wykonywane poza siedzibą laboratorium |
电位法 | PN-EN ISO 10523:2012 | |
| 318 | Surface waters | Sampling for chemical and physical testing Temperature of the sample taken 范围 (2,0 – 50,0) °C 法规领域: Badania wykonywane poza siedzibą laboratorium |
PN-EN ISO 5667-6:2016-12 z wyłączeniem 7.6, 9.4 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | ||
| 319 | Surface waters | pH 值 范围 (2,0 – 12,0) 法规领域: Badania wykonywane poza siedzibą laboratorium |
电位法 | PN-EN ISO 10523:2012 | |
| 320 | Surface waters | 电导率 范围 (0,100 – 20,00) mS/cm 法规领域: Badania wykonywane poza siedzibą laboratorium |
电导法 | PN-EN 27888:1999 | |
| 321 | Groundwater | Sampling for chemical and physical testing Temperature of the sample taken 范围 (2,0 – 50,0) °C 法规领域: Badania wykonywane poza siedzibą laboratorium |
PN-ISO 5667-11:2017-10 z wyłączeniem pkt 4.2.2, 4.2.4, 4.3, 6.2, 6.3 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | ||
| 322 | Groundwater | pH 值 范围 2,0 – 12,0 法规领域: Badania wykonywane poza siedzibą laboratorium |
电位法 | PN-EN ISO 10523:2012 | |
| 323 | Groundwater | 电导率 范围 (0,100 – 20,00) mS/cm 法规领域: Badania wykonywane poza siedzibą laboratorium |
电导法 | PN-EN 27888:1999 | |
| 324 | Waters, including drinking waters | 微生物检测用样品采集 法规领域: Badania wykonywane poza siedzibą laboratorium |
PN-EN ISO 19458:2007 z wył. punktów 4.4.2, 4.4.3, 4.4.4, 4.4.5, 4.4.6 | ||
| 325 | Drinking water | Sampling for chemical and physical testing Temperature of the sample taken 范围 (2,0 – 30,0) °C 法规领域: Badania wykonywane poza siedzibą laboratorium |
PN-ISO 5667-5:2017-10 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | ||
| 326 | 水 | Free chlorine concentration Range: free chlorine (0,20 – 1,6) mg/l 法规领域: Badania wykonywane poza siedzibą laboratorium |
比色法 | Metoda nr 195 Wydanie 1 z dnia 26.09.2019 Test HACH Nr 8021 (chlor wolny) | |
| 327 | Gaseous fuel: hydrogen (automotive) | 化学与物理检测用样品采集 from tanks from the refuelling station from pipelines in the installation 法规领域: Badania wykonywane poza siedzibą laboratorium |
ASTM D 7606-24a | ISO 21087:2019-06 p. 8 | ISO 19880-1:2020-03 załącznik K p. K1, K2, K3 | ISO 19880-09:2024 z wyłączeniem załącznika A, C, D, E, F | ||
| 328 | Gaseous fuel: hydrogen (automotive) | Sampling for particulate matter content from tanks from the refuelling station from pipelines 法规领域: Badania wykonywane poza siedzibą laboratorium |
ASTM D 7650-21 z wyłączeniem 7.9 | ISO 21087:2019-06 p. 8 | ISO 19880-1:2020-03 załącznik K p. K1, K2, K7 z wyłączeniem p. K.7.1 | ISO 19880-9:2024-07 z wyłączeniem załącznika A, B, C, E, F | ||
| Pracownia PTA TT5 | |||||
| 329 | Chemical products: terephthalic acid (PTA) | Alkaline transparency 范围 (87,4 – 99,6)% |
分光光度法 | Metoda nr 117 wydanie 4 z dnia 05.12.2025 | |
| 330 | Chemical products: terephthalic acid (PTA) | 元素含量 Ca (0,01 – 1,00) mg/kg Co (0,01 – 1,00) mg/kg Cr (0,01 – 1,00) mg/kg Fe (0,01 – 1,00) mg/kg Na (0,01 – 1,00) mg/kg Ni (0,01 – 1,00) mg/kg Mn (0,01 – 1,00) mg/kg Mo (0,01 – 1,00) mg/kg Sumaryczna zawartość pierwiastków (z obliczeń) |
电感耦合等离子体原子发射光谱法(ICP-OES) | Metoda 118 wyd. 7 z dnia 07.04.2026 | |
| 331 | Chemical products: terephthalic acid (PTA) | Appearance | 目视法 | Metoda nr 122 wydanie 4 z dnia 05.12.2025 | |
| 332 | Chemical products: terephthalic acid (PTA) | Colour on the Pt-Co scale 范围 5 – 15 |
目视法 | Metoda nr 126 wydanie 4 z dnia 05.12.2025 | |
| 333 | Chemical products: terephthalic acid (PTA) | 水分含量 范围 (0,10 – 1,00) %(m/m) |
电位滴定法 | Metoda nr 127 wydanie 4 z dnia 05.12.2025 | |
| 334 | Chemical products: terephthalic acid (PTA) | Colour b 范围 (0,1 – 2,0) |
分光光度法 | Metoda nr 128 wydanie 4 z dnia 05.12.2025 | |
| 335 | Chemical products: terephthalic acid (PTA) | Delta Y 范围 (1,0 – 10,0) |
分光光度法 | Metoda nr 129 wydanie 4 z dnia 05.12.2025 | |
| 336 | Chemical products: terephthalic acid (PTA) | 酸值 范围 (673 – 677) mg KOH/g |
滴定法 | Metoda nr 130 wydanie 4 z dnia 05.12.2025 | |
| 337 | Chemical products: terephthalic acid (PTA) | Residue after incineration 范围 (1 – 5) mg/kg |
重量法 | Metoda nr 132 wydanie 3 z dnia 12.01.2023 | |
| 338 | Chemical products: terephthalic acid (PTA) | Dp50 value 范围 (70 – 130) μm |
Metoda sitowa (i z obliczeń) | Metoda nr 133 wydanie 4 z dnia 05.12.2025 | |
| 339 | 水、废水 | Total organic carbon content 范围 (0,3 – 24000) mg/l |
高温燃烧红外检测法 | PN-EN 1484:1999 | |
| Punkt Obsługi Laboratoryjnej we Wrocławiu PP7/5 | |||||
| 340 | Liquid fuels: unleaded petrol, diesel fuel, light heating oil, Liquid biofuels: fatty acid methyl esters, bioethanol | Sampling from tanks for chemical and physical testing | PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7, 8.8,9.8, 10.6, 10.7 | ||
| 341 | Liquid fuels: unleaded petrol, diesel fuel | Sampling from a dispenser for chemical and physical testing | PN-EN 14275:2013-06 | ||
| 342 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | 硫含量 范围 (3,0 – 60) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 343 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Density at 15°C 范围 (700,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 344 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | 馏程组成 范围 (30,0 – 370,0) oC |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 345 | 液体燃料:无铅汽油 | Air saturated vapour pressure 范围 (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 346 | 液体燃料:无铅汽油 | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 347 | 液体燃料:无铅汽油 | Content of oxygenated organic compounds 范围 (0,17 – 15,0) %(v/v) Całkowita zawartość organicznie związanego tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13132:2005 | |
| 348 | 液体燃料:柴油、轻质燃料油 | 闪点 范围 (40,0 – 90,0) oC |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 349 | 液体燃料:柴油、轻质燃料油 | 水分含量 范围 (30 – 1000) mg/kg |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 350 | 液体燃料:柴油、轻质燃料油 | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 351 | 液体燃料:柴油、轻质燃料油 | Fatty acid methyl esters (FAME) content 范围 (3,0 – 20,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 352 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Cloud point 范围 [(- 20) – 0] °C |
光学法 | PN-EN ISO 3015:2019-06 | |
| 353 | 液体燃料:柴油 | 氧化安定性 范围 (5,0 – 48,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 354 | 液体燃料:柴油 | Cold filter plugging point 范围 [(- 40) – 0] °C |
光学法 | PN-EN 116:2015-09 | |
| 355 | 液体燃料:柴油 | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 356 | Liquid fuels: light fuel oil | Pour point [(- 45) (-15)] °C |
光学法 | PN-EN ISO 3016:2019-06 | |
| 357 | Liquid fuels: light fuel oil | Solvent Red 19 dye content 范围 (1,0 – 10,0) mg/l |
分光光度法 | PN-C-04426:2013-07 Metoda A | |
| 358 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 硫含量 范围 (3,0 – 10,0) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 359 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Cold filter plugging point 范围 [(- 20) – 0] °C |
光学法 | PN-EN 116:2015-09 | |
| 360 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 水分含量 范围 (30 – 1000) mg/kg |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 361 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Density at 15 °C 范围 (850 – 900) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 362 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Tendency to plug the filter after cooling 范围 (50 – 720) s |
Filtration after cooling method | ASTM D 7501-22 | |
| 363 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 氧化安定性 范围 (1,0 – 16,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 364 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| 365 | Liquid fuels: liquid biofuels: bioethanol | Power 范围 (95,0 – 100,0) %(v/v) |
振荡法 | PN-A-79528-3:2007 p. 5.2 | |
| 366 | Liquid fuels: liquid biofuels: bioethanol | Density at 20°C 范围 (789,0 – 830,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| Punkt Obsługi Laboratoryjnej we Wrocławiu PP7/5 (Działalność techniczna) | |||||
| 367 | 液体燃料:无铅汽油 | Motor octane number MON 范围 80,0 – 90,0 |
发动机法 | PN-EN ISO 5163:2014-08 | |
| Pracownia Produktów Rafineryjnych w Trzebini PP6 | |||||
| 368 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Sampling from tanks for chemical and physical testing | PN-EN ISO 3170:2025-12 z wyłączeniem pkt 8.3.1.3- 8.3.1.5, 8.3.1.8, 8.3.2, 8.5 - 8.9, 9.8, 10.6, 10.7 | ||
| 369 | Paliwa ciekłe: olej opałowy lekki, olej opałowy ciężki, Materiały smarne: olej silnikowy, przemysłowe oleje smarowe | Pour point 范围 (–38 – 40) °C |
Optical method, visual method | PN-EN ISO 3016:2019-06 | ASTM D 97-17b(2022) | |
| 370 | Paliwa ciekłe: olej opałowy lekki, olej opałowy ciężki, Materiały smarne: olej silnikowy, przemysłowe oleje smarowe | 硫含量 范围 (0,050 – 1,00) %(m/m) |
Energy-dispersive X-ray fluorescence spectrometry | PN –EN ISO 8754:2007+Ap1:2014-02 | |
| 371 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil, heavy fuel oil, liquid biofuels: fatty acid methyl esters (FAME), Lubricants: engine oil, industrial lubricating oils | 密度 范围 (700,0 – 950,0) kg/m3 |
Hydrometer method | PN-EN ISO 3675:2004 | |
| 372 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil, heavy fuel oil, liquid biofuels: fatty acid methyl esters (FAME), Lubricants: engine oil, industrial lubricating oils | Density at 15°C and 20°C 范围 (700,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | ASTM D 4052-22 | |
| 373 | Liquid fuels: diesel fuel, light fuel oil, heavy fuel oil, liquid biofuels: fatty acid methyl esters (FAME), Lubricants: engine oil, industrial lubricating oils | Kinematic viscosity at 20°C, 40°C and 100°C 范围 (1,500 – 100,0) mm2/s Lepkość dynamiczna (z obliczeń) |
毛细管法 | PN-EN ISO 3104:2024-01 | |
| 374 | Liquid fuels: diesel fuel, light fuel oil, heavy fuel oil, liquid biofuels: fatty acid methyl esters (FAME), Lubricants: engine oil, industrial lubricating oils | Kinematic viscosity at 20 °C, 40 °C and 100 °C 范围 (1,500 – 100,0) mm2/s |
毛细管法 | ASTM D 445-24 | |
| 375 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | 水分含量 范围 (0,003 – 0,100) %(m/m) |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 376 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Carbon residue 范围 (0,10 – 3,50) %(m/m) |
重量法 | PN-EN ISO 10370:2014-12 | |
| 377 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Cold filter plugging point 范围 (0 – (–30)) °C |
光学法 | PN-EN 116:2015-09 | |
| 378 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Cloud point 范围 (-38) – (+10) °C |
光学法 | PN-EN ISO 3015:2019-06 | |
| 379 | 液体燃料:柴油、轻质燃料油 | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 380 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| 381 | Liquid fuels: diesel fuel, unleaded petrol, liquid biofuels: fatty acid methyl esters (FAME) | 硫含量 范围 (1,0 – 20,0) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 382 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME), Lubricants: engine oil, industrial lubricating oils | Sulfated ash content 范围 (0,005 – 2,00) %(m/m) |
重量法 | PN ISO 3987:2014-05 | |
| 383 | Liquid fuels: diesel fuel, light fuel oil, heavy fuel oil | 闪点 范围 (40,0 – 250,0) °C Pensky’ego-Martensa |
Closed cup method | PN-EN ISO 2719:2016-08+A1: 2021-06 z wyłączeniem procedury C | ASTM D 93-25 | |
| 384 | Liquid fuels: unleaded petrol, liquid biofuels: fatty acid methyl esters (FAME), Lubricants: engine oil, industrial lubricating oils | Copper strip corrosion corrosion class (1 – 4) |
目视法 | PN-EN ISO 2160:2004 | ASTM D 130-19 | |
| 385 | 液体燃料:柴油 | Fatty acid methyl ester FAME content 范围 (0,05 – 10,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 386 | Liquid fuels: diesel fuel, unleaded petrol | 馏程组成 范围 (40,0 – 360,0) 0C |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 387 | Liquid fuels: light heating oil, heavy heating oil | 高位发热量 范围 (35000 – 45000) kJ/kg 低位发热量(计算值) |
量热法 | PN-C-04062:2018-05 | |
| 388 | Liquid fuels: heavy fuel oil | Content of iron, vanadium and nickel Fe (1,00 – 150) mg/kg V (1,00 – 150) mg/kg Ni (1,00 – 150) mg/kg |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | ASTM D 5708-15 (Reapproved 2020)e1 – Metoda A | |
| 389 | 液体燃料:无铅汽油 | Content of oxygenated organic compounds 范围 (0,17 – 15,0) %(m/m), %(v/v) Całkowita zawartość organicznie związanego tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13132:2005 | |
| 390 | 液体燃料:无铅汽油 | Air saturated vapour pressure 范围 (30,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 391 | Liquid fuels: light fuel oil | Butoxybenzene (n-butyl phenyl ether (BPE)) content 范围 (1,00 – 15,00) mg/l |
Gas chromatography with mass spectrometry detection (GC-MS) | ILIADe 606:2024 Procedura B | |
| 392 | Lubricants: engine oils, industrial lubricating oils | Structural viscosity at low temperatures 范围 (1300 – 10000) mPa∙s |
CCS method | PN-C-04150:2004 | ASTM D 5293-20 | |
| 393 | Lubricants: engine oils, industrial lubricating oils | Total base number 范围 (1,0 -90,0) mg/g KOH |
电位滴定法 | PN-ISO 3771:2012 | |
| 394 | Lubricants: engine oils, industrial lubricating oils | 闪点 范围 (180 – 270) °C |
Cleveland open cup method | PN-EN ISO 2592:2017-10 | ASTM D 92-24 | |
| 395 | Lubricants: engine oils, industrial lubricating oils | Viscosity index (calculated) | PN-ISO 2909:2009+Ap1:2010 | ASTM D 2270-24 | ||
| 396 | Lubricants: engine oils, industrial lubricating oils | Demulsibility properties 范围 (5 – 60) min |
目视法 | PN-ISO 6614:2010+A1:2022-05 | |
| 397 | Lubricants: engine oils, industrial lubricating oils | 酸值 范围 (0,1 – 5,0) mg/g KOH |
滴定法 | PN-ISO 6618:2011 | |
| 398 | Lubricants: engine oils, industrial lubricating oils | 色度 范围 (0,5 – 8,0) |
目视法 | ASTM D 1500-24 | |
| 399 | Lubricants: engine oils, industrial lubricating oils | Content of calcium, phosphorus, magnesium, zinc Ca (0,003 – 0,300) %m/m Mg (0,003 – 0,300) %m/m P (0,003 – 0,300) %m/m Zn (0,003 – 0,300) %m/m |
电感耦合等离子体原子发射光谱法(ICP-OES) | ASTM D 4951-14(2019) | |
| 400 | Other petroleum products: bitumen, bituminous products | Brittleness temperature [(-23) (-8)] °C |
Fraass method | PN-EN 12593:2015-08 | |
| 401 | Other petroleum products: bitumen, bituminous products | Penetration 范围 (20 – 220) * 0,1mm |
Needle penetration method | PN-EN 1426:2025-02 | |
| 402 | Other petroleum products: bitumen, bituminous products | Softening point of bitumens 范围 (30,0 – 110,0) °C |
Ring and Ball method | PN-EN 1427:2015-08 | |
| 403 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Iodine value 范围 (85 – 130) g jodu/100g |
滴定法 | PN-EN 14111:2022-11 | |
| 404 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 酸值 范围 (0,10 – 1,00) mg/g KOH |
滴定法 | PN-EN 14104:2021-06 | |
| 405 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 氧化安定性 范围 (1,0 – 15,0) h |
电导法 | PN-EN 14112:2021-05 | |
| 406 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Fatty acid methyl ester (FAME ) content 范围 (90,0 – 99,0) %(m/m) Zawartość estru metylowego kwasu linolenowego 范围 (1,0 – 15,0) % (m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 14103:2020-06 | |
| 407 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Content of polyunsaturated fatty acid methyl esters (more than 4 double bonds) 范围 (0,6 – 0,8) %(m/m) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 15779+A1:2013-12 | |
| 408 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Monoacylglycerol content 范围 (0,10 – 1,25) %(m/m) Zawartość diacylogliceroli 范围 (0,10 – 0,50) %(m/m) Zawartość triacylogliceroli 范围 (0,10 – 0,40) %(m/m) Zawartość wolnego glicerolu 范围 (0,001 – 0,050) %(m/m) Zawartość ogólnego glicerolu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 14105:2025-04 | |
| 409 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Methyl alcohol content 范围 (0,01 – 0,10) %(m/m) |
Headspace gas chromatography with flame ionization detection (HS-GC-FID) | PN-EN 14110:2019-05 z wyłączeniem procedury A | |
| 410 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | 磷含量 范围 (4,0 – 10,0) mg/kg |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14107:2004 | |
| 411 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Calcium and magnesium content 范围 (1,0 – 10,0) mg/kg |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14538:2008 | |
| 412 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Sodium content 范围 (1,0 – 10,0) mg/kg |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14538:2008 | |
| 413 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | 钾含量 范围 (1,0 – 10,0) mg/kg |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14538:2008 | |
| 414 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Tendency of biodiesel to block the fuel filter 范围 (80 – 400) s |
CSFT method | ASTM D 7501-22 | |
| 415 | 污水 | 化学与物理检测用样品采集 | 手工法 | PN-ISO 5667-10:2021-11 | |
| 416 | 污水 | 总磷浓度 范围 (0,005 – 10,0) mg/l |
分光光度法 | PN-EN ISO 6878:2006 pkt. 8 +Ap1:2010+Ap2:2010 | |
| 417 | 污水 | 凯氏氮浓度 范围 (1 – 100) mg/l |
滴定法 | PN-EN 25663:2001 | |
| 418 | 污水 | 硝态氮浓度 范围 (0,010 – 30,0) mg/l |
分光光度法 | Metoda 125 Wydanie 2 z dnia 16.07.2020 | |
| 419 | 污水 | 亚硝态氮浓度 范围 (0,005 – 2,5) mg/l Stężenie azotynów (z obliczeń) |
分光光度法 | PN-EN 26777:1999 | |
| 420 | 污水 | Total nitrogen concentration (sum of Kjeldahl nitrogen, nitrate and nitrite nitrogen) (calculated) | Metoda 047 Wydanie 5 z dnia 19.11.2019 | ||
| 421 | 污水 | 化学需氧量(COD) 范围 (20,0 – 1000) mg O2/l |
分光光度法 | PN-ISO 15705:2005 | |
| 422 | 废水、水 | 总悬浮物 范围 (5,0 – 50) mg/l |
重量法 | PN-EN 872:2007+Ap1:2007 | |
| 423 | Gaseous fuels: hydrogen (automotive) | Determination of water content 范围 (1,00 -10,00) μmol/mol |
Continuous-wave cavity ring-down spectrometry (CRDS) | NPL Report AS64:2011-08 p. 4.2.1 (a) | Instrukcja IT-M/PP6/95 wydanie 2 z dnia 11.03.2024 | |
| 424 | Gaseous fuels: hydrogen (automotive) | Content of hydrogen sulphide, carbonyl sulphide, methyl mercaptan, carbon disulphide Hydrogen sulfide (0,003 – 0,010) μmol/mol Carbonyl sulfide (0,003 – 0,010) μmol/mol Methyl mercaptan (0,003 – 0,010) μmol/mol Carbon disulfide (0,003 – 0,010) Total sulfur compounds (calculated) |
By gas chromatography with a chemiluminescence detector (GC-SCD) | ASTM D 7652-11 | |
| 425 | Gaseous fuels: hydrogen (automotive) | Helium content Helium (75,0 – 315,0) μmol/mol Content of carbon dioxide, carbon monoxide, methane and total hydrocarbons excluding methane (ekwiwalent C1) Carbon dioxide (0,5 – 2,0) μmol/mol Carbon monoxide (0,055 – 0,220) μmol/mol Methane (30,0 – 100,0) μmol/mol Total hydrocarbons excluding methane (C1 equivalent) (0,5 – 2,0) μmol/mol |
Gas chromatography with a thermal conductivity detector (GC-TCD); Gas chromatography with a flame ionization and thermal conductivity detector (GC-FID/TCD) | NPL Report AS64:2011-08 p.4.2.4 (a) | Instrukcja IT-M/PP6/97 wydanie 3 z dnia 25.03.2024 NPL Report AS64:2011-08 p. 4.2.7 (a), p. 4.2.8 (b), p. 4.2.2 (a) | Instrukcja IT-M/PP6/97 wydanie 3 z dnia 25.03.2024 | |
| 426 | Gaseous fuels: hydrogen (automotive) | Formaldehyde and organic halide content Formaldehyd (0,05 – 0,40) μmol/mol Związki halogenowe organiczne: 范围 1,2,4-trichlorobenzen (0,002 – 0,04) μmol/mol 1,2-dichlorobenzen (0,002 – 0,04) μmol/mol 1,3-dichlorobenzen (0,002 – 0,04) μmol/mol 1,1,2,2-tetrachloroetan (0,002 - 0,04) μmol/mol chlorobenzen (0,002 – 0,04) μmol/mol tetrachloroetylen (0,002 – 0,04) μmol/mol 1,2-dibromoetan (0,002 – 0,04) μmol/mol 1,1,2-trichloroetan (0,002 – 0,04) μmol/mol trans-1,3-dichloropropen (0,002 – 0,04) μmol/mol 1,3-dichloropropen (0,002 – 0,04) μmol/mol trichloroetylen ( 0,002 – 0,04) μmol/mol 1,2-dichloropropan (0,002 – 0,04) μmol/mol tetrachlorek węgla (0,002 – 0,04) μmol/mol 1,1,1-trichloroetan (0,002 – 0,04) μmol/mol 1,2-dichloroetan (0,002 – 0,04) μmol/mol trichlorometan (0,002 – 0,04) μmol/mol cis-1,1-dichloroeten (0,002 – 0,04) μmol/mol 1,1-dichloroetan (0,002 – 0,04) μmol/mol 1,1,2-trichloro-1,2,2-trifluorometan (0,002 – 0,04) μmol/mol chlorek allilu (0,002 – 0,04) μmol/mol chlorek metylenu (0,002 – 0,04) μmol/mol 1,1-dichloroetan (0,002 – 0,04) μmol/mol trichloromonofluorometan (0,002 – 0,04) μmol/mol chlorek etylu (0,002 – 0,04) μmol/mol bromometan (0,002 – 0,04) μmol/mol chloroeten (0,002 – 0,04) μmol/mol 1,2-dichloro-1,1,1,2-tetrafluoroetan (0,002 – 0,04) μmol/mol chlorometan (0,002 – 0,04) μmol/mol dichlorodifluorometan (0,002 – 0,04) μmol/mol Zawartość związków halogenowych organicznych (z obliczeń) |
Gas chromatography with mass spectrometry detection (GC-MS) | ASTM D 7892-25 | |
| 427 | Gaseous fuels: hydrogen (automotive) | Argon, nitrogen, oxygen content Argon (4,0 – 300,0) μmol/mol Nitrogen (5,0 – 300,0)μmol/mol Oxygen (2,0 – 10,0) μmol/mol |
Gas chromatography with a pulsed discharge helium ionization detector (GC-PDHID) | NPL Report AS64:2011-08 p. 4.2.6 (b), p. 4.2.5 (a), p. 4.2.3 (a) | Instrukcja IT-M/PP6/98 wydanie 3 z dnia 25.03.2024 | |
| 428 | Gaseous fuels: hydrogen (automotive) | Formic acid, ammonia content Formic acid (0,05 – 0,40) μmol/mol Ammonia (0,05 – 0,40) μmol/mol |
Ion chromatography with a conductometric detector (IC) | JIS K0127:2013 | Instrukcja IT-M/PP6/96 wydanie 2 z dnia 11.03.2024 | |
| 429 | Gaseous fuels: hydrogen (automotive) | Particulate matter content 范围 (0,15 – 1,40) mg/kg |
重量法 | ASTM D 7651:24e1 | |
| 430 | Gaseous fuels: hydrogen (automotive) | Hydrogen fuel index (calculated) | ISO 14687:2019-11 | ||
| 431 | Gaseous fuels: hydrogen (automotive) | Total content of gases other than hydrogen (calculated) | ISO 14687:2019-11 | ||
| Pracownia Produktów Naftowych w Jedliczu PP5 | |||||
| 432 | Liquid fuels: unleaded petrol, diesel fuel | Sampling from a dispenser for chemical and physical testing | PN-EN 14275:2013-06 | ||
| 433 | Liquid fuels: light heating oil, heavy heating oil, unleaded petrol, diesel fuel, Lubricants: base oils, engine oils, industrial lubricating oils, Crude oil | Sampling from tanks for chemical and physical testing | PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7, 8.8, 9.8, 10.6, 10.7 | ||
| 434 | 液体燃料:无铅汽油 | Motor octane number MON 范围 60 – 100 |
发动机法 | PN-EN ISO 5163:2014-08 | |
| 435 | 液体燃料:无铅汽油 | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 436 | 液体燃料:无铅汽油 | Air saturated vapour pressure 范围 (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 437 | 液体燃料:无铅汽油 | Content of oxygenated organic compounds 范围 (0,17 – 15,0) % (v/v) Całkowita zawartość organicznie związanego tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13132:2005 | |
| 438 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | 密度 范围 (650,0 – 950,0) kg/m3 |
Hydrometer method | PN-EN ISO 3675:2004 | |
| 439 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | Density at 15°C 范围 (664,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 440 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | 馏程组成 范围 (10,0 – 370,0) °C |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 441 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | Copper strip corrosion 范围 1a – 4c (skala) |
目视法 | PN-EN ISO 2160:2004 | |
| 442 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | 硫含量 范围 (3 – 500) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 443 | 液体燃料:柴油 | 氧化安定性 范围 (5,0 – 50,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 444 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 氧化安定性 范围 (1,0 – 16,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 445 | Liquid fuels: light fuel oil | 硫含量 范围 (0,03 – 1,2) %(m/m) |
Energy-dispersive X-ray fluorescence spectrometry | PN-EN ISO 8754:2007+Ap1:2014-02 | |
| 446 | 液体燃料:柴油、轻质燃料油 | Kinematic viscosity at 40 °C 范围 (2,000 – 10,00) mm2/s |
毛细管法 | PN-EN ISO 3104:2024-01 Procedura A | |
| 447 | 液体燃料:柴油、轻质燃料油 | 闪点 范围 (40,0 – 100,0) °C |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 448 | 液体燃料:柴油、轻质燃料油 | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 449 | 液体燃料:柴油、轻质燃料油 | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 450 | 液体燃料:柴油、轻质燃料油 | Cold filter plugging point [0 (-30)] oC |
光学法 | PN-EN 116:2015-09 | |
| 451 | 液体燃料:柴油、轻质燃料油 | Pour point [10 (-40,0)] oC |
光学法 | PN-EN ISO 3016:2019-06 | ASTM D 97-17b(2022) | |
| 452 | 液体燃料:柴油、轻质燃料油 | 水分含量 范围 (30 – 1000) mg/kg |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 453 | 液体燃料:柴油、轻质燃料油 | Cloud point [0 (-45)] oC |
光学法 | PN-EN ISO 3015:2019-06 | |
| 454 | 液体燃料:柴油、轻质燃料油 | Solvent Red 19 dye content 范围 (1,0 – 10,0) mg/l |
分光光度法 | PN-C-04426:2013-07 Metoda A | |
| 455 | 液体燃料:柴油、轻质燃料油 | Fatty acid methyl esters (FAME) content 范围 (0,05 –10,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 456 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| 457 | Crude oil | Density at 15°C 范围 (700,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 458 | Crude oil, Liquid fuels: heavy fuel oil | 杂质含量 范围 (0,01 – 0,40) %(m/m) |
重量法 | PN-EN ISO 3735:2001 | |
| 459 | Chemical products: low-freezing fluids | Crystallisation temperature [(-18) (-50)] oC |
目视法 | PN-93/C-40008/10 | |
| 460 | Lubricants: base oils, engine oils, industrial lubricating oils | Anti-corrosion properties of mineral oils (rusting on a steel rod) | 目视法 | PN-ISO 7120:2011 Procedura A i B | |
| 461 | Lubricants: base oils, engine oils, industrial lubricating oils | Kinematic viscosity at 40 °C and 100 °C 范围 (2,000 – 1200) mm2/s |
毛细管法 | PN-EN ISO 3104:2024-01 Procedura A | |
| 462 | Lubricants: base oils, engine oils, industrial lubricating oils | Pour point [10 (-45)] oC |
光学法 | PN-EN ISO 3016:2019-06 | |
| 463 | Lubricants: base oils, engine oils, industrial lubricating oils | 密度 范围 (800,0 – 900,0) kg/m3 |
Hydrometer method | PN-EN ISO 3675:2004 | |
| 464 | Lubricants: base oils, engine oils, industrial lubricating oils | 闪点 范围 (80,0 – 280,0) °C |
Cleveland open cup method | PN-EN ISO 2592:2017-10 | |
| 465 | Lubricants: base oils, engine oils, industrial lubricating oils | Density at 15°C 范围 (800,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 466 | Lubricants: base oils, engine oils, industrial lubricating oils | Residue after incineration 范围 (0,001 – 0,18) %(m/m) |
重量法 | PN-EN ISO 6245:2008 | |
| 467 | Lubricants: base oils, engine oils, industrial lubricating oils | Copper strip corrosion 范围 1a – 4c (skala) |
目视法 | PN-EN ISO 2160:2004 | |
| 468 | Lubricants: base oils, engine oils, industrial lubricating oils | Corrosive action on metals | 目视法 | PN-85/C-04093 metoda B | |
| 469 | Lubricating materials: base oils, industrial lubricating oils | Air release properties 范围 (1 – 15) minut |
重量法 | PN-ISO 9120:2009+Ap1:2022-04 | |
| 470 | Lubricants: greases | Dropping point 范围 (70 − 230) °C |
Ubbelohde method | PN-55/C-04020 | |
| 471 | Lubricants: greases | Dropping point 范围 (130 – 300) °C |
目视法 | PN-ISO 2176:2011+A1:2021-07 | |
| 472 | Lubricants: greases | Penetration 范围 200 – 420 |
Cone penetration method | PN-ISO 2137:2021-07 | |
| 473 | Wastewater, rainwater | 化学与物理检测用样品采集 Temperatura pobranej próbki wody opadowej, ścieków 范围 (2,0 – 30,0) °C |
手工法 | PN-ISO 5667-10:2021-11 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | |
| 474 | 污水 | pH 值 范围 4,0 – 10,0 |
电位法 | PN-EN ISO 10523:2012 | |
| 475 | 污水 | 总悬浮物 范围 (5 – 200) mg/l |
重量法 | PN-EN 872:2007+Ap1:2007 | |
| 476 | 污水 | Phenol concentration (phenol index) 范围 (0,002 – 0,100) mg/l |
分光光度法 | PN-ISO 6439:1994 metoda B | |
| 477 | 污水 | 矿物油指数 范围 (2,0 – 1000,0) mg/l |
Laser spectroscopy method | ASTM D 7678-17(2022) | |
| 478 | 污水 | 氯化物浓度 范围 (5 – 150) mg/l |
滴定法 | PN-ISO 9297:1994 | |
| 479 | 污水 | 生化需氧量 BZT5(BOD5) 范围 (3 – 600) mg O2/l |
电化学法 | PN-EN ISO 5815-1:2019-12 | |
| 480 | 污水 | 化学需氧量(COD) 范围 (30,0 – 1000) mg O2/l |
分光光度法 | PN-ISO 15705:2005 | |
| 481 | 污水 | Phosphorus concentration 范围 (0,10 – 25,0) mg/l |
分光光度法 | PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 pkt 8 | |
| Punkt Obsługi Laboratoryjnej w Ostrowie Wielkopolskim PP7/3 | |||||
| 482 | Liquid fuels: unleaded petrol, diesel fuel, light heating oil, liquid biofuels: bioethanol, liquid biofuels: fatty acid methyl esters (FAME) | Sampling from tanks for chemical and physical testing | PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3- 8.3.1.6, 8.3.1.8, 8.3.2, 8.7- 8.9, 9.8, 10.6, 10.7 | ||
| 483 | Liquid fuels: unleaded petrol, diesel fuel, light heating oil, liquid biofuels: bioethanol, fatty acid methyl esters (FAME) | Density at 15°C 范围 (700,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 484 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | 馏程组成 范围 (30,0 – 370,0) °C |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 485 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | 硫含量 范围 (3,0 – 100) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 486 | 液体燃料:无铅汽油 | Air saturated vapour pressure 范围 (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 487 | 液体燃料:无铅汽油 | Content of oxygenated organic compounds 范围 (0,17 – 15,0) %(v/v) Całkowita zawartość organicznie związanego tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13132:2005 | |
| 488 | 液体燃料:无铅汽油 | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 489 | 液体燃料:无铅汽油 | Motor octane number MON 范围 84,0 – 90,0 |
发动机法 | PN-EN ISO 5163:2014-08 | |
| 490 | 液体燃料:柴油、轻质燃料油 | 闪点 范围 (45,0 – 75,0) °C |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 491 | 液体燃料:柴油、轻质燃料油 | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 492 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | 水分含量 范围 (30 – 1000) mg/kg |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 493 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| 494 | Liquid fuels: diesel fuel, liquid biofuels: fatty acid methyl esters (FAME) | Cold filter plugging point [0 °C (-40)°C] |
光学法 | PN-EN 116:2015-09 | |
| 495 | 液体燃料:柴油 | Fatty acid methyl esters (FAME) content 范围 (3,0 – 10,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 496 | 液体燃料:柴油 | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 497 | 液体燃料:柴油 | Cetane number 范围 50,0 – 60,0 |
发动机法 | PN-EN ISO 5165:2021-02 | |
| 498 | Liquid fuels: liquid biofuels: fatty acid methyl esters ( FAME) | Tendency to plug the filter after cooling 范围 (30 – 360) s |
CSFT method | ASTM D 7501-22 | |
| 499 | Liquid fuels: liquid biofuels: fatty acid methyl esters ( FAME) | 氧化安定性 范围 (1,0 – 16,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 500 | Liquid fuels: diesel fuel, liquid biofuels: fatty acid methyl esters (FAME) | Cloud point [0oC (-25) oC] |
光学法 | PN-EN ISO 3015:2019-06 | |
| 501 | Liquid fuels: liquid biofuels: bioethanol | Power 范围 (95,0 – 100,0) %(v/v) |
振荡法 | PN-A-79528-3:2007 p. 5.2 | |
| 502 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | 氧化安定性 范围 (5,0 – 48,0) h |
电导法 | PN-EN 15751:2014-05 | |
| Punkt Obsługi Laboratoryjnej w Lublinie PP7/1 | |||||
| 503 | Liquid fuels: unleaded petrol, diesel fuel, light heating oil, liquid biofuels: fatty acid methyl esters (FAME) | Sampling from tanks for chemical and physical testing | PN-EN ISO 3170:2025-12 Z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7- 8.9, 9.8, 10.6, 10.7 | ||
| 504 | 液体燃料:无铅汽油 | Motor octane number MON 范围 80,0 – 90,0 |
发动机法 | PN-EN ISO 5163:2014-08 | |
| 505 | 液体燃料:无铅汽油 | Air saturated vapour pressure 范围 (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 506 | 液体燃料:无铅汽油 | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 507 | 液体燃料:无铅汽油 | 硫含量 范围 (3,0 – 100) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 508 | 液体燃料:无铅汽油 | Density at 15°C 范围 (700,0 – 800,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 509 | 液体燃料:无铅汽油 | 馏程组成 范围 (30,0 – 220,0) oC |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 510 | 液体燃料:无铅汽油 | Content of oxygenated organic compounds 范围 (0,17 – 15,0) % (v/v) Całkowita zawartość organicznie związanego tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13132:2005 | |
| 511 | 液体燃料:柴油、轻质燃料油 | Density at 15°C 范围 (800,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 512 | 液体燃料:柴油、轻质燃料油 | 馏程组成 范围 (150,0 – 370,0) oC |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 513 | 液体燃料:柴油、轻质燃料油 | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 514 | 液体燃料:柴油、轻质燃料油 | 水分含量 范围 (0,003 – 0,100) %(m/m) |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 515 | 液体燃料:柴油、轻质燃料油 | 闪点 范围 (40,0 – 100,0) oC |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 516 | 液体燃料:柴油、轻质燃料油 | 硫含量 范围 (3,0 – 100) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 517 | 液体燃料:柴油 | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 518 | 液体燃料:柴油 | Cold filter plugging point [(- 33) (+5)] oC |
光学法 | PN-EN 116:2015-09 | |
| 519 | 液体燃料:柴油 | Fatty acid methyl esters (FAME) content 范围 (3,0 – 10,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 520 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Density at 15°C 范围 (860,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 521 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 水分含量 范围 (0,003 – 0,100) %(m/m) |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 522 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Cold filter plugging point [(- 25) (-5)] oC |
光学法 | PN-EN 116:2015-09 | |
| 523 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Tendency to plug the filter after cooling 范围 (30 – 360) s |
Filtration after cooling method | ASTM D 7501-22 | |
| 524 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| Punkt Obsługi Laboratoryjnej w Olsztynie PP7/2 | |||||
| 525 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Sampling from a tank for chemical and physical testing | PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7 - 8.9, 9.8, 10.6, 10.7 | ||
| 526 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil | 硫含量 范围 (3,0 – 50) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 527 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil | Density at 15°C 范围 (700,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 528 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil | 馏程组成 范围 (30,0 – 370,0) oC |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 529 | 液体燃料:柴油 | Cold filter plugging point [ (-40) – (0,0)]°C |
光学法 | PN-EN 116:2015-09 | |
| 530 | 液体燃料:柴油 | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 531 | 液体燃料:柴油 | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 532 | 液体燃料:柴油 | Cloud point [(- 20,0) (0,0)] oC |
光学法 | ASTM D 5772-21 | |
| 533 | 液体燃料:柴油、轻质燃料油 | 闪点 范围 (40,0 – 90,0) oC |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 534 | 液体燃料:柴油、轻质燃料油 | 水分含量 范围 (30 – 1000) mg/kg |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 535 | 液体燃料:无铅汽油 | Content of oxygenated organic compounds 范围 (0,17 – 15,0) %(v/v) Całkowita zawartość organicznie związanego tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13132:2005 | |
| 536 | 液体燃料:无铅汽油 | Air saturated vapour pressure 范围 (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 537 | 液体燃料:无铅汽油 | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 538 | 液体燃料:无铅汽油 | Motor octane number MON 范围 80,0 – 90,0 |
发动机法 | PN-EN ISO 5163:2014-08 | |
| 539 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | Fatty acid methyl ester content 范围 (3,0 – 20,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 540 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Density at 15°C 范围 (800,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 541 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 水分含量 范围 (30 – 1000) mg/kg |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 542 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Cloud point [(- 20,0) (0,0)] oC |
光学法 | ASTM D 5772-21 | |
| 543 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Cold filter plugging point [(-40) (0,0)] °C |
光学法 | PN-EN 116:2015-09 | |
| 544 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Tendency to plug the filter after cooling 范围 (50,0 – 360) s |
Filtration after cooling method | ASTM D 7501-22 | |
| 545 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| Punkt Obsługi Laboratoryjnej w Warszawie PP7/4 | |||||
| 546 | Liquid fuels: unleaded petrol, diesel fuel liquid biofuels: fatty acid methyl esters (FAME), bioethanol | Spot sampling from tanks for chemical and physical testing | PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3, 8.3.1.5, 8.3.1.6, 8.3.1.8, 8.3.2, 8.7-8.9, 9.8, 10.6, 10.7 | ||
| 547 | 液体燃料:无铅汽油 | Air saturated vapour pressure 范围 (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 548 | 液体燃料:无铅汽油 | Content of oxygenated organic compounds 范围 (0,17 – 15,0) %(v/v) Całkowita zawartość organicznie związanego tlenu (z obliczeń) |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13132:2005 | |
| 549 | 液体燃料:无铅汽油 | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 550 | 液体燃料:无铅汽油 | Motor octane number MON 范围 80,0 – 90,0 |
发动机法 | PN-EN ISO 5163:2014-08 | |
| 551 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | 硫含量 范围 (3,0 – 60,0) mg/kg |
紫外荧光法 | PN-EN ISO 20846:2020-03 | |
| 552 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Density at 15°C 范围 (700,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 553 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | 馏程组成 范围 (30,0 – 370,0) 0C |
蒸馏法 | PN-EN ISO 3405:2019-05 | |
| 554 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Density at 15°C 范围 (800,0 – 900,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 555 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 水分含量 范围 (0,003 – 0,100) %(m/m) |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 556 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | Tendency to plug the filter after cooling 范围 (50 – 650) s |
Filtration method after cooling | ASTM D 7501-22 | |
| 557 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 氧化安定性 范围 (1,0 – 16,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 558 | 液体燃料:柴油、轻质燃料油 | Kinematic viscosity at 40 °C 范围 (2,000 – 6,000) mm2/s |
毛细管法 | PN-EN ISO 3104:2024-01 Procedura A | |
| 559 | 液体燃料:柴油、轻质燃料油 | 闪点 范围 (40,0 – 100,0) °C |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 560 | 液体燃料:柴油、轻质燃料油 | 水分含量 范围 (0,003 – 0,100) %(m/m) |
库仑滴定法 | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 561 | 液体燃料:柴油、轻质燃料油 | 杂质含量 范围 (12,0 – 26,0) mg/kg |
重量法 | PN-EN 12662-1:2024-11 | |
| 562 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME | Fatty acid methyl esters (FAME) content 范围 (3,0 – 20,0) %(v/v) |
红外光谱法 IR | PN-EN 14078:2014-06 | |
| 563 | 液体燃料:液体生物燃料:脂肪酸甲酯(FAME) | 杂质含量 范围 (5,0 – 27,0) mg/kg |
重量法 | PN-EN 12662-2:2024-11 | |
| 564 | Liquid fuels: liquid biofuels: bioethanol | Power 范围 (90,0 – 100,0) %(v/v) |
振荡法 | PN-A-79528-3:2007 p. 5.2 | |
| 565 | Liquid fuels: liquid biofuels: bioethanol | Density at 20°C 范围 (789,0 – 830,0) kg/m3 |
振荡法 | PN-EN ISO 12185:2024-08 | |
| 566 | 液体燃料:柴油 | 氧化安定性 范围 (5,0 – 48,0) h |
电导法 | PN-EN 15751:2014-05 | |
| 567 | 液体燃料:柴油 | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 568 | 液体燃料:柴油 | Cold filter plugging point [0°C (- 40)] °C |
光学法 | PN-EN 116:2015-09 | |
| Pracownia Nawozów i Środowiska Naturalnego TT1 | |||||
| 569 | 水 | 色度 范围 (2 – 100) mg/l Pt |
分光光度法 | PN-EN ISO 7887:2012+Ap1:2015-06 metoda C | |
| 570 | 水 | Benzene concentration 范围 (0,25 – 10) μg/l |
Gas chromatography with static headspace analysis and flame ionization detection (HS-GC-FID) | PN-ISO 11423-1:2002 | |
| 571 | 水 | 浊度 范围 (0,50 – 50) NTU |
浊度法(散射法) | PN-EN ISO 7027-1:2016-09 | |
| 572 | 水、废水 | pH 值 范围 2,0 – 12,0 |
电位法 | PN-EN ISO 10523:2012 | |
| 573 | 水、废水 | 总悬浮物 范围 (2,0 – 5000) mg/l |
重量法 | PN-EN 872:2007+Ap1:2007 | |
| 574 | 水、废水 | 干残渣 范围 (10 – 5000) mg/l |
重量法 | PN-78/C-04541 pkt 4.1 | |
| 575 | 水、废水 | 电导率 范围 (10 – 1 300) mS/m |
电导法 | PN-EN 27888:1999 | |
| 576 | 水、废水 | 亚硝酸盐浓度 范围 (0,050 – 33) mg/l |
分光光度法 | PN-EN 26777:1999 | |
| 577 | 水、废水 | Nitrite nitrogen concentration (calculated) | PN-EN 26777:1999 | ||
| 578 | 水、废水 | 亚硝酸盐浓度 范围 (0,050 – 20) mg/l |
离子色谱-电导检测法(IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 579 | 水、废水 | Nitrite nitrogen concentration (calculated) | PN-EN ISO 10304-1:2009+AC:2012 | ||
| 580 | 水、废水 | 硝酸盐浓度 范围 (0,050 – 2000) mg/l |
离子色谱-电导检测法(IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 581 | 水、废水 | Nitrate nitrogen concentration (calculated) | PN-EN ISO 10304-1:2009+AC:2012 | ||
| 582 | 水、废水 | 硝酸盐浓度 范围 (0,18 – 2200) mg/l |
分光光度法 | PN-82/C-04576/08 | |
| 583 | 水、废水 | Nitrate nitrogen concentration (calculated) | PN-82/C-04576/08 | ||
| 584 | 水、废水 | 凯氏氮浓度 范围 (3,4 – 1000) mg/l |
滴定法 | PN-EN 25663:2001 z wyłączeniem pkt. 11.1 | |
| 585 | 水、废水 | 总氮浓度(计算值) | Metoda nr 047 Wydanie 5 z dnia 19.11.2019 | ||
| 586 | 水、废水 | 氨氮浓度 范围 (0,47 – 1000) mg/l |
滴定法 | PN-ISO 5664:2002 | |
| 587 | 水、废水 | Concentration of ammonium ion, ammonia (calculated) | PN-ISO 5664:2002 | ||
| 588 | 水、废水 | 氨氮浓度 范围 (0,050 – 5,0) mg/l |
分光光度法 | PN-ISO 7150-1:2002 | |
| 589 | 水、废水 | Concentration of ammonium ion, ammonia (calculated) | PN-ISO 7150-1:2002 | ||
| 590 | 水、废水 | 总磷浓度 范围 (0,016 – 32) mg/l |
分光光度法 | PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 | |
| 591 | 水、废水 | 磷酸盐浓度 范围 (0,050 – 100) mg/l |
离子色谱-电导检测法(IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 592 | 水、废水 | 铁浓度 范围 (0,010 – 10,0) mg/l |
分光光度法 | PN-ISO 6332:2001+Ap1:2016-6 | |
| 593 | 水、废水 | 锰浓度 范围 (0,030 – 4,0) mg/l |
分光光度法 | PN-92/C-04590/03 | |
| 594 | 水、废水 | 石油醚可萃取物浓度 范围 (10 – 1000) mg/l |
重量法 | PN-86/C-04573/01 | |
| 595 | 水、废水 | Biochemical oxygen demand (BOD5) 范围 (1 – 6000) mg/l O2 |
电化学法 | PN-EN ISO 5815-1:2019-12 | |
| 596 | 水、废水 | 溶解氧浓度 范围 (0,2 – 10) mg/l O2 |
电化学法 | PN-EN ISO 5814:2013-04 | |
| 597 | 水、废水 | Chemical oxygen demand – COD-Cr 范围 (9,0 – 3000) mg/l O2 |
滴定法 | PN-74/C-04578-03 | |
| 598 | 水、废水 | Chemical oxygen demand COD-Cr 范围 (25 – 1000) mg/l O2 |
滴定法 | PN-ISO 6060:2006 | |
| 599 | 水、废水 | Chemical oxygen demand COD-Cr 范围 (10 – 10000) mg/l O2 |
分光光度法 | PN-ISO 15705:2005 | |
| 600 | 水、废水 | 硫酸盐浓度 范围 (0,050 – 5000) mg/l |
Ion chromatography (IC) with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 601 | 水、废水 | 氯化物浓度 范围 (0,10 – 5000) mg/l |
Ion chromatography (IC) with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 602 | 水、废水 | 高锰酸盐指数 范围 (0,50 – 100) mg O2/l |
滴定法 | PN-EN ISO 8467:2001 | |
| 603 | 水、废水 | 铝浓度 范围 (0,0100 – 10,0) mg/l |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN ISO 11885:2009 | |
| 604 | 水、废水 | 钙与镁总量(总硬度) 范围 (0,050 – 40) mmol/l 范围 (5,0 – 4000) mg/l CaCO3 |
滴定法 | PN-ISO 6059:1999 | |
| 605 | 水、废水 | 钙浓度 范围 (0,050 – 25) mmol/l 范围 (2,0 – 1000) mg/l |
滴定法 | PN-ISO 6058:1999 | |
| 606 | 水、废水 | 镁浓度(计算值) | PN-C 04554-4:1999 Załącznik A | ||
| 607 | 水、废水 | 硫酸盐浓度 范围 (20 – 5000) mg/l |
重量法 | PN-ISO 9280:2002 | |
| 608 | 水、废水 | 氯化物浓度 范围 (5 – 25 000) mg/l |
滴定法 | PN-ISO 9297:1994 | |
| 609 | 水、废水 | 矿物油指数 范围 (0,10 – 100) mg/l |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN ISO 9377-2:2003 | |
| 610 | 水、废水 | Vinyl chloride concentration 范围 (0,10 – 1,0) mg/l |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda nr 192 Wydanie 1 z dnia 26.09.2019 | |
| 611 | 水、废水 | Concentration of halogenated hydrocarbon derivatives 范围 1,2-dichloroetan (0,0010 – 0,10) mg/l Tetrachlorometan (0,00050–0,10) mg/l Tetrachloroetylen (0,0010 –0,10) mg/l trichloroetylen (0,0010 –0,10) mg/l trichlorometan (0,0010 –0,10) mg/l heksachlorobutadien (0,00010 – 0,010) mg/l |
气相色谱-电子捕获检测法(GC-ECD) | PN-EN ISO 10301:2002 | |
| 612 | 水、废水 | Total carbon concentration organicznego (OWO) i rozpuszczonego węgla organicznego (RWO) 范围 (0,30 – 1000) mg/l |
高温燃烧红外检测法 | PN-EN 1484:1999 | |
| 613 | 水、废水 | Total dissolved solids concentration (TDS) 范围 (10,0 – 5000) mg/l |
重量法 | PN-EN 15216:2022-03 | |
| 614 | 水、废水 | Total chlorine concentration 范围 (0,030 – 5) mg/l 游离氯浓度 范围 (0,030 – 3,5) mg/l Chlor związany (z obliczeń) |
滴定法 | PN-EN ISO 7393-1:2011 | |
| 615 | 水、废水 | Hexachlorobenzene concentration 范围 (0,010 – 0,10) μg/l |
气相色谱-电子捕获检测法(GC-ECD) | PN-EN ISO 6468:2002 | |
| 616 | 水、废水 | Concentration of aromatic hydrocarbons 苯 (0,0010 – 100) mg/l 甲苯 (0,0010 – 100) mg/l 乙苯 (0,0010 – 100) mg/l 苯乙烯 (0,0010 – 100) mg/l 邻二甲苯 (0,0010 – 100) mg/l (m+p)-ksylen (0,0020 – 200) mg/l |
Gas chromatography with static headspace analysis and flame ionization detection (HS-GC-FID) | PN-ISO 11423-1:2002 | |
| 617 | 水、废水 | Sum of aromatic hydrocarbons (calculated) | PN-ISO 11423-1:2002 | ||
| 618 | 水、废水 | Trihalomethane concentration chloroform (1,0- 250) μg/l chlorodibromomethane (1,0- 250) μg/l dichlorobromomethane (1,0- 250) μg/l bromoform (1,0- 250) μg/l |
Gas chromatography with static headspace analysis and electron capture detection (HS-GC-ECD) | PN-EN ISO 10301:2002 | |
| 619 | 水、废水 | Sum of trihalomethanes (calculated) | PN-EN ISO 10301:2002 | ||
| 620 | 水、废水 | Concentration of halogenated hydrocarbon derivatives 范围 1,2-dichloroetan (0,25 – 10) μg/l tetrachlorometan (0,10 – 10) μg/l tetrachloroetylen (0,10 – 10) μg/l trichloroetylen (0,10 – 10) μg/l trichlorometan (0,25 – 10) μg/l |
Gas chromatography with static headspace analysis and electron capture detection (HS-GC-ECD) | PN-EN ISO 10301:2002 | |
| 621 | 水、废水 | Sum of tetrachloroethylene and trichloroethylene (calculated) | PN-EN ISO 10301:2002 | ||
| 622 | 水、废水 | Concentration of halogenated hydrocarbon derivatives chlorek winylu (0,25 – 100) μg/l 范围 1,2-dichloroetan (0,010 – 20) mg/l tetrachlorometan (0,010 – 20) mg/l tetrachloroetylen (0,010 – 20) mg/l trichloroetylen (0,010 – 20) mg/l trichlorometan (0,010 – 20) mg/l |
Headspace gas chromatography with flame ionization detection (HS-GC-FID) | PN-EN ISO 10301:2002 | |
| 623 | 水、废水 | 氟化物浓度 范围 (0,050 – 100) mg/l |
离子色谱-电导检测法(IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 624 | 水、废水 | Concentration of total, free and bound cyanides 范围 (0,010 – 0,30) mg/l |
分光光度法 | Metoda nr 193 Wydanie 1 z dnia 26.09.2019 Test Spectroquant 1.14561.0001 | |
| 625 | 水、废水 | Bound cyanides (calculated) | Metoda nr 193 Wydanie 1 z dnia 26.09.2019 Test Spectroquant 1.14561.0001 | ||
| 626 | 水、废水 | 元素浓度 镉 (0,00200 – 10,0) mg/l chrom ogólny (0,00200 – 10,0) mg/l 铜 (0,00200 – 10,0) mg/l 镍 (0,00500 – 10,0) mg/l 铅 (0,0100 – 50,0) mg/l 锌 (0,00500 – 50,0) mg/l |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN ISO 11885:2009 | |
| 627 | 水、废水 | 元素浓度 钴 (0,00500 – 10,0) mg/l 铁 (0,0200 – 50,0) mg/l 锰 (0,00200 – 50,0) mg/l 钒 (0,0200 – 10,0) mg/l 钡 (0,00200 – 10,0) mg/l 硼 (0,0100 – 1,00) mg/l 钠 (0,500 – 2000) mg/l 钼 (0,00800 – 10,0) mg/l 钙 (0,200 – 1000) mg/l 镁 (0,100 – 1000) mg/l 钾 (0,100 – 1000) mg/l |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN ISO 11885:2009 | |
| 628 | 水、废水 | 元素浓度 砷 (0,0200 – 1,00) mg/l 锑 (0,0200 – 1,00) mg/l 硒 (0,0100 – 1,00) mg/l |
氢化物发生电感耦合等离子体发射光谱法(HG-ICP-OES) | PN-EN ISO 11885:2009 | |
| 629 | 水、废水 | 汞浓度 范围 (0,20 – 70) μg/l |
原子吸收光谱法(汞齐化技术) | Metoda nr 194 Wydanie 1 z dnia 26.09.2019 | |
| 630 | 水、废水 | Concentration of C6-C12 hydrocarbons 范围 (0,020 - 1000) mg/l |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-C-04643:1994 | |
| 631 | 水、废水 | C12-C35 hydrocarbon concentration 范围 (0,50 – 5000) mg/l |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-C-04643:1994 | |
| 632 | 水、废水 | Sum of C6-C35 hydrocarbons (calculated) | PN-C-04643:1994 | ||
| 633 | 水、废水 | Alkalinity to phenolphthalein 范围 (0,40 – 20) mmol/l 总碱度 范围 (0,40 – 20) mmol/l |
滴定法 | PN-EN ISO 9963-1:2001+Ap1:2004 | |
| 634 | Chemical products: electrical insulating oils | Polychlorinated biphenyls (PCB) concentration Aroclor 1242 (5,0 – 50) mg/kg Aroclor 1254 (5,0 – 50) mg/kg Aroclor 1260 (5,0 – 50) mg/kg |
气相色谱-电子捕获检测法(GC-ECD) | PN-IEC 997:1998 | |
| 635 | 一般环境 — 用吸附管采集的废气样品 | Content of organic compounds chlorek winylu 范围 (0,050 – 250) μg w próbce 1,2-dichloroetan (0,10 – 250) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13649:2005 | |
| 636 | 一般环境 — 用吸附管采集的废气样品 | Trichloromethane content 范围 (1,0 – 250) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13649:2005 | |
| 637 | 一般环境 — 用吸附管采集的废气样品 | Content of the sum of aromatic hydrocarbons: benzene, ethylbenzene, styrene, toluene, o-xylene, (m+p)xylenes (calculated) | PN-EN 13649:2005 | ||
| 638 | 一般环境 — 用吸附管采集的废气样品 | Content of organic compounds aliphatic hydrocarbons C5 – C12 范围 (1,0 – 500) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13649:2005 | |
| 639 | 一般环境 — 用吸附管采集的废气样品 | Methanol content 范围 (5,0 – 100) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13649:2005 | |
| 640 | 一般环境 — 用吸附管采集的废气样品 | Content of organic compounds o-ksylen (1,0 – 2 500) μg w próbce (m+p)-ksylen (1,0 – 5000) μg w próbce toluen (1,0 – 2 500) μg w próbce styren (1,0 – 2 500) μg w próbce metyloetyloketon 范围 (1,0 – 2 500) μg w próbce octan metylu (1,0 – 2 500) μg w próbce etylobenzen (1,0 – 2 500) μg w próbce benzen (1,0 – 2 500) μg w próbce (o+m+p)-ksylen (1,0 – 7 500) μg w próbce tetrachloroetylen (1,0 – 3 000) μg w próbce bromometan (5,0 – 2 500) μg w próbce trichloroeten (1,0 – 500) μg w próbce 1,1 dichloroeten (1,0 – 500) μg w próbce 1,2 dichloroeten (1,0 – 500) μg w próbce 1,1,2 trichloroetan (1,0 – 500) μg w próbce tetrachlorometan (1,0 – 500) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13649:2005 | |
| 641 | 一般环境 — 用吸附管采集的废气样品 | Ethylene glycol content 范围 (100 – 2500) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN 13649:2005 | |
| 642 | 工作场所环境 — 用滤膜采集的空气样品 | Sulphuric acid content - thoracic fraction 范围 (0,0026 – 0,10) mg w próbce |
Ion chromatography with conductometric detection | Podstawy Metody Oceny Środowiska Pracy 2012 nr 1(71) + 2017 nr 2 (92) | |
| 643 | General environment – waste gas samples collected on filters | Arsenic and antimony content As (0,000500 – 0,05000) mg w próbce Sb (0,00100 – 0,0500) mg w próbce |
氢化物发生电感耦合等离子体发射光谱法(HG-ICP-OES) | PN-EN 14385:2025:05 | |
| 644 | General environment – waste gas samples collected on filters | 元素含量: Cd (0,000250 – 0,500) mg w próbce Cr (0,000250 – 0,500) mg w próbce Co (0,000250 – 0,500) mg w próbce Cu (0,000250 – 0,500) mg w próbce Mn (0,000250 – 0,500) mg w próbce Ni (0,000500 – 0,500) mg w próbce Pb (0,00250 – 2,50) mg w próbce Tl (0,000500 – 0,0500) mg w próbce V (0,00250 – 0,0500) mg w próbce |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14385:2025:05 | |
| 645 | General environment – waste gas samples collected on filters | 汞含量 范围 (0,0005 – 0,05) mg w próbce |
氢化物发生电感耦合等离子体发射光谱法(HG-ICP-OES) | PN-EN 13211:2006 | |
| 646 | General environment – waste gas samples collected into absorbing solutions | 元素含量: Cd (0,000500 – 1,00) mg w próbce Cr (0,000500 – 1,00) mg w próbce Co (0,000500 – 1,00) mg w próbce Cu (0,000200 – 1,00) mg w próbce Mn (0,000200 – 1,00) mg w próbce Ni (0,00100 – 1,00) mg w próbce Pb (0,00500 – 5,00) mg w próbce Tl (0,00100 – 0,100) mg w próbce V (0,00500 – 0,100) mg w próbce |
电感耦合等离子体原子发射光谱法(ICP-OES) | PN-EN 14385:2025:05 | |
| 647 | General environment – waste gas samples collected into absorbing solutions | Arsenic, antimony content As (0,00100 – 0,100) mg w próbce Sb (0,00200 – 0,100) mg w próbce |
氢化物发生电感耦合等离子体发射光谱法(HG-ICP-OES) | PN-EN 14385:2025:05 | |
| 648 | General environment – waste gas samples collected into absorbing solutions | 汞含量 范围 (0,000500 – 0,0500) mg w próbce |
氢化物发生电感耦合等离子体发射光谱法(HG-ICP-OES) | PN-EN 13211:2006 | |
| 649 | General environment – waste gas samples collected into absorbing solutions | Hydrogen chloride content 范围 (0,050 – 100) mg w próbce |
分光光度法 | PN-EN 1911:2011 | |
| 650 | General environment – waste gas samples collected into absorbing solutions | Hydrogen bromide content 范围 (0,028 – 1,0) mg w próbce |
浊度法 | Metoda nr 201 Wydanie 1 z dnia 26.09.2019 | |
| 651 | General environment - waste gas samples collected into absorbing solutions | Ammonia content 范围 (0,0061 – 9,7) mg w próbce |
分光光度法 | PN-EN ISO 21877:2020-03 | |
| 652 | General environment – ambient air samples collected on sorbent tubes | Vinyl chloride content 范围 (0,020 – 0,50) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda nr 202 Wydanie 1 z dnia 26.09.2019 | |
| 653 | General environment – ambient air samples collected on sorbent tubes | 1,2-dichloroethane content 范围 (0,10 – 2,0) μg w próbce |
气相色谱-氢火焰离子化检测法(GC-FID) | Metoda nr 202 Wydanie 1 z dnia 26.09.2019 | |
| 654 | 土壤 | 干物质 范围 (10,0 – 999) g/kg 范围 (1,0 – 99,0) % |
重量法 | PN-ISO 11465:1999 | |
| 655 | 土壤 | Concentration of C6-C12 hydrocarbons 范围 (12,5 – 10000) mg/kg |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN ISO 16703:2011 | |
| 656 | 土壤 | Concentration of C12-C35 hydrocarbons 范围 (12,5 – 10000) mg/kg |
气相色谱-氢火焰离子化检测法(GC-FID) | PN-EN ISO 16703:2011 | |
| 657 | 土壤 | Sum of C6-C35 hydrocarbons (calculated) | PN-EN ISO 16703:2011 | ||
| 658 | Sewage sludge, Waste O: code 19 08 05 | 干残渣 范围 (10,0 – 990) g/kg 范围 (1,0 – 99,0) % 水分含量 范围 (1,0 – 99,0) % 法规领域: O) Kody odpadów według Rozporządzenia Ministra Klimatu w sprawie katalogu odpadów |
重量法 | PN-EN 15934:2013-02 | |
| 659 | Sewage sludge, Waste O: code 19 08 05 | Loss on ignition of dry matter 范围 (2,0 – 98,0)% Pozostałość po prażeniu suchej masy (z obliczeń) 法规领域: O) Kody odpadów według Rozporządzenia Ministra Klimatu w sprawie katalogu odpadów |
重量法 | PN-EN 15935:2022-01 | |
| 660 | Gaseous fuels: hydrogen (automotive) | 水分含量 范围 (2,00 – 20,00) μmol/mol |
Continuous-wave cavity ring-down spectrometry (CRDS) | ASTM D7941/D7941M-23 | |
| 661 | Gaseous fuels: hydrogen (automotive) | Helium content 范围 (25,0 – 600) μmol/mol Zawartość ditlenku węgla, metanu i węglowodorów Ditlenek węgla (0,200 – 4,00) μmol/mol Metan (10,0 – 200) μmol/mol Węglowodory ogółem z wyłączeniem metanu (ekwiwalent C1) (0,100 – 4,00) μmol/mol |
Gas chromatography with a thermal conductivity detector (GC-TCD); Gas chromatography with a flame ionization and thermal conductivity detector (GC-FID/TCD) | NPL Report AS64:2011-08 p. 4.2.4 (a) | Instrukcja IT-M/TT1/99 wydanie 1 z dnia 04.06.2024 NPL Report AS64:2011-08 p. 4.2.7 (a), p. 4.2.2 (a) | Instrukcja IT-M/TT1/99 wydanie 1 z dnia 04.06.2024 | |
| 662 | Gaseous fuels: hydrogen (automotive) | Content of hydrogen sulphide, carbonyl sulphide and dimethyl sulphide Hydrogen sulfide (0,00050 – 0,0040) μmol/mol Carbonyl sulfide (0,00050 – 0,0040) μmol/mol Dimethyl sulfide (0,00050 – 0,0040) μmol/mol Total sulfur compounds (calculated) |
Gas chromatography with a chemiluminescence detector (GC-SCD) | ASTM D 7652-11 | |
| 663 | Gaseous fuels: hydrogen (automotive) | Formaldehyde and organic halide content Formaldehyd (0,050 – 0,40) μmol/mol 范围 1,2 – dichlorobenzen (0,0010 – 0,050) μmol/mol Chloroform (0,0010 – 0,050) μmol/mol Dichlorometan (0,0010 – 0,050) μmol/mol Tetrachloroetylen (0,0010 – 0,050) μmol/mol Zawartość związków halogenowych ogółem (z obliczeń) |
Gas chromatography with a mass detector (GC-MS) | ASTM D 7892-25 | |
| 664 | Gaseous fuels: hydrogen (automotive) | Argon, nitrogen, oxygen, carbon monoxide content Argon (50,0 – 600) μmol/mol Nitrogen (50,0 – 600) μmol/mol Oxygen (3,0 – 40) μmol/mol Carbon monoxide (0,0500 – 0,400) μmol/mol |
Gas chromatography with a pulsed discharge helium ionization detector (GC-PDHID) | NPL Report AS64:2011-08 p.4.2.6 (b), p.4.2.5 (a), p. 4.2.3 (a), p. 4.2.8 (a) | Instrukcja IT-M/TT1/97 wydanie 1 z dnia 24.05.2024 | |
| 665 | Gaseous fuels: hydrogen (automotive) | Formic acid, ammonia content Formic acid (0,030 – 4,0) μmol/mol Ammonia (0,020 – 4,0) μmol/mol |
Ion chromatography with a conductometric detector (IC-CD) | JIS K0127:2013 | Instrukcja IT-M/TT1/102 wydanie 1 z dnia 24.06.2024 | |
| 666 | Gaseous fuels: hydrogen (automotive) | Particulate matter content 范围 (0,0500 – 5,00) mg/kg |
重量法 | ASTM D 7651-24e1 | |
| 667 | Gaseous fuels: hydrogen (automotive) | Hydrogen fuel index (calculated) | ISO 14687:2019-11 p. 5.1 | ||
| 668 | Gaseous fuels: hydrogen (automotive) | Total content of gases other than hydrogen (calculated) | ISO 14687:2019-11 p. 5.1 | ||
引用标准 (394)
ASTM D 1094-24
ASTM D 1159-23
ASTM D 1209-25
ASTM D 1298-12b (2017)
ASTM D 130-19
ASTM D 1319-20a
ASTM D 1322-25
ASTM D 1492-21
ASTM D 1500-24
ASTM D 156-23
ASTM D 1840-24
ASTM D 1946-24
ASTM D 2270-24
ASTM D 2386-19
ASTM D 2624-24
ASTM D 2892-25
ASTM D 3227-24
ASTM D 3241-24
ASTM D 3242-23
ASTM D 3338/D 3338M-20a
ASTM D 3343-22
ASTM D 381-25
ASTM D 3948-22
ASTM D 4006-22
ASTM D 4052-22
ASTM D 4294-24
ASTM D 4377-00 (2011)
ASTM D 445-24
ASTM D 473-22
ASTM D 4735-19
ASTM D 4870-22
ASTM D 4928-12(2018)
ASTM D 4929-22 metoda B
ASTM D 4951-14(2019)
ASTM D 5001-25
ASTM D 5002-22
ASTM D 5006-25
ASTM D 5134-21
ASTM D 5236-25
ASTM D 5291-21 Metoda D
ASTM D 5293-20
ASTM D 5452-23
ASTM D 5453-24
ASTM D 56-22
ASTM D 5708-15 (Reapproved 2020)e1 – Metoda A
ASTM D 5772-21
ASTM D 5808-23
ASTM D 5972-25
ASTM D 6379-21e1
ASTM D 665-24
ASTM D 6667-21
ASTM D 7183-23
ASTM D 7184-24
ASTM D 721-25
ASTM D 7224-23
ASTM D 7501-22
ASTM D 7504-23
ASTM D 7606-24a
ASTM D 7650-21 z wyłączeniem 7.9
ASTM D 7651-24e1
ASTM D 7651:24e1
ASTM D 7652-11
ASTM D 7678-17(2022)
ASTM D 7797-23
ASTM D 7892-25
ASTM D 847-23
ASTM D 848-23
ASTM D 850-21
ASTM D 852-24
ASTM D 86-23aɛ2
ASTM D 92-24
ASTM D 93-25
ASTM D 95-23ɛ1
ASTM D 97-17b(2022)
ASTM D7941/D7941M-23
DIN 51430:2018-02
DIN 51619:2004-02
GOST 2177-99 metoda B
ILIADe 606:2024 Procedura B
IP 540/08(2019)
IP 565-13
IP 570/15(2021)
ISO 14687:2019-11
ISO 14687:2019-11 p. 5.1
ISO 19880-09:2024 z wyłączeniem załącznika A, C, D, E, F
ISO 19880-1:2020-03 załącznik K p. K1, K2, K3
ISO 19880-1:2020-03 załącznik K p. K1, K2, K7 z wyłączeniem p. K.7.1
ISO 19880-9:2024-07 z wyłączeniem załącznika A, B, C, E, F
ISO 21087:2019-06 p. 8
Instrukcja IT-M/PP6/95 wydanie 2 z dnia 11.03.2024
Instrukcja IT-M/PP6/96 wydanie 2 z dnia 11.03.2024
Instrukcja IT-M/PP6/97 wydanie 3 z dnia 25.03.2024
Instrukcja IT-M/PP6/97 wydanie 3 z dnia 25.03.2024 NPL Report AS64:2011-08 p. 4.2.7 (a), p. 4.2.8 (b), p. 4.2.2 (a)
Instrukcja IT-M/PP6/98 wydanie 3 z dnia 25.03.2024
Instrukcja IT-M/TT1/102 wydanie 1 z dnia 24.06.2024
Instrukcja IT-M/TT1/97 wydanie 1 z dnia 24.05.2024
Instrukcja IT-M/TT1/99 wydanie 1 z dnia 04.06.2024
Instrukcja IT-M/TT1/99 wydanie 1 z dnia 04.06.2024 NPL Report AS64:2011-08 p. 4.2.7 (a), p. 4.2.2 (a)
JIS K0127:2013
Metoda 032 wyd. 7 z dnia 19.02.2026
Metoda 041 wydanie 6 z dnia 14.11.2024
Metoda 047 Wydanie 5 z dnia 19.11.2019
Metoda 048 pkt 1.1 wyd. 4 z dnia 27.12.2023
Metoda 103 wydanie 3 z dnia 07.01.2022
Metoda 106 Wydanie 3 z dnia 21.12.2020
Metoda 118 wyd. 7 z dnia 07.04.2026
Metoda 125 Wydanie 2 z dnia 16.07.2020
Metoda 159 Wydanie 3 z dnia 14.12.2020
Metoda nr 031 Wydanie 5 z dnia 20.02.2026
Metoda nr 045 wydanie 2 z dnia 14.02.2017
Metoda nr 047 Wydanie 5 z dnia 19.11.2019
Metoda nr 115 wydanie 4 z dnia 18.12.2020
Metoda nr 117 wydanie 4 z dnia 05.12.2025
Metoda nr 122 wydanie 4 z dnia 05.12.2025
Metoda nr 124 wydanie 2 z dnia 03.06.2020 r.
Metoda nr 125 wydanie 2 z dnia 16.07.2020 r.
Metoda nr 126 wydanie 4 z dnia 05.12.2025
Metoda nr 127 wydanie 4 z dnia 05.12.2025
Metoda nr 128 wydanie 4 z dnia 05.12.2025
Metoda nr 129 wydanie 4 z dnia 05.12.2025
Metoda nr 130 wydanie 4 z dnia 05.12.2025
Metoda nr 132 wydanie 3 z dnia 12.01.2023
Metoda nr 133 wydanie 4 z dnia 05.12.2025
Metoda nr 179 wydanie 3 z dnia 13.12.2023 r.
Metoda nr 184 wydanie 2 z dnia 13.12.2023
Metoda nr 192 Wydanie 1 z dnia 26.09.2019
Metoda nr 193 Wydanie 1 z dnia 26.09.2019 Test Spectroquant 1.14561.0001
Metoda nr 194 Wydanie 1 z dnia 26.09.2019
Metoda nr 195 Wydanie 1 z dnia 26.09.2019 Test HACH Nr 8021 (chlor wolny)
Metoda nr 201 Wydanie 1 z dnia 26.09.2019
Metoda nr 202 Wydanie 1 z dnia 26.09.2019
Metoda nr 213 wydanie 1 z dnia 08.09.2025
NO-91-A258-1:2024 p. 2.1
NPL Report AS64:2011-08 p. 4.2.1 (a)
NPL Report AS64:2011-08 p. 4.2.4 (a)
NPL Report AS64:2011-08 p. 4.2.6 (b), p. 4.2.5 (a), p. 4.2.3 (a)
NPL Report AS64:2011-08 p.4.2.4 (a)
NPL Report AS64:2011-08 p.4.2.6 (b), p.4.2.5 (a), p. 4.2.3 (a), p. 4.2.8 (a)
PN ISO 3987:2014-05
PN –EN ISO 8754:2007+Ap1:2014-02
PN- EN ISO 12205:2011
PN-55/C-04020
PN-71/Z-04041
PN-71/Z-04058
PN-74/C-04578-03
PN-75/Z-04037/03
PN-76/Z-04045.02
PN-78/C-04541 pkt 4.1
PN-81/Z-04134.02
PN-82/C-04576/08
PN-82/Z-04093.03
PN-84/Z-04014.02
PN-85/C-04093 metoda B
PN-85/Z-04015.10
PN-86/C-04573/01
PN-87/Z-04126/02
PN-88/Z-04203.02
PN-89/Z-04209.02
PN-92/C-04590/03
PN-93/C-40008/10
PN-A-79528-3:2007 p. 5.2
PN-C 04554-4:1999 Załącznik A
PN-C-04062:2018-05
PN-C-04150:2004
PN-C-04426:2013-07 Metoda A
PN-C-04426:2013-07 Metoda B
PN-C-04604-08:1977
PN-C-04643:1994
PN-C-96008:1998 p. 4.4.10
PN-C-96008:1998 p. 4.4.2
PN-C-96008:1998 p. 4.4.4
PN-C-96008:1998 p. 4.4.5
PN-C-96008:1998 p. 4.4.6
PN-C-96008:1998 p. 4.4.8
PN-C-96008:1998 p. 4.4.9
PN-C-96060:2019-03 Procedura A
PN-EN 116:2015-09
PN-EN 12592:2014-12
PN-EN 12593:2015-08
PN-EN 12595:2024-01
PN-EN 12596:2024-01
PN-EN 12606-1:2015-08
PN-EN 12607-1:2025-02
PN-EN 12607-2:2014-12
PN-EN 12662-1:2024-11
PN-EN 12662-2:2024-11
PN-EN 12916+A1:2025-07 Procedura A
PN-EN 13016-1:2024-11
PN-EN 13132:2005
PN-EN 13211:2006
PN-EN 13303:2017-10
PN-EN 13398:2017-12
PN-EN 13399:2017-12
PN-EN 13589:2018-08
PN-EN 13649:2005
PN-EN 14078:2014-06
PN-EN 14103:2020-06
PN-EN 14104:2021-06
PN-EN 14105:2025-04
PN-EN 14107:2004
PN-EN 14110:2019-05
PN-EN 14110:2019-05 z wyłączeniem procedury A
PN-EN 14111:2022-11
PN-EN 14112:2021-05
PN-EN 14253+A1:2011
PN-EN 1426:2025-02
PN-EN 14275:2013-06
PN-EN 1427:2015-08
PN-EN 14385:2025:05
PN-EN 14538:2008
PN-EN 1484:1999
PN-EN 15216:2022-03
PN-EN 15326+A1:2010
PN-EN 15469:2009
PN-EN 15470:2017-08
PN-EN 15486:2009
PN-EN 15487:2009
PN-EN 15488:2009
PN-EN 15489:2009
PN-EN 15491:2025-08
PN-EN 15492:2012
PN-EN 15553:2022-05+A1:2025-05
PN-EN 15691:2023-11
PN-EN 15721:2013-10 Procedura A
PN-EN 15751:2014-05
PN-EN 15769:2010
PN-EN 15779+A1:2013-12
PN-EN 15934:2013-02
PN-EN 15934:2013-02 Metoda A
PN-EN 15935:2022-01
PN-EN 16135 :2012
PN-EN 16576:2014-12+Ap1:2017-11
PN-EN 16715:2015-09
PN-EN 1838:2025-05 z wyłączeniem punktów normy 5.1.3, 5.1.4, 5.2.3, 5.2.4, 5.3.4, 5.3.5, 5.3.7, 6.0
PN-EN 1911:2011
PN-EN 228+A1:2017-06 p. 5.5.2
PN-EN 237:2007
PN-EN 238:2000+A1:2008
PN-EN 25663:2001
PN-EN 25663:2001 z wyłączeniem pkt. 11.1
PN-EN 26777:1999
PN-EN 27888:1999
PN-EN 27941:2015-12
PN-EN 589:2019-04 załącznik C
PN-EN 589:2024-08 załącznik A
PN-EN 589:2024-08 załącznik B
PN-EN 589:2024-08 załącznik C
PN-EN 872:2007+Ap1:2007
PN-EN ISO 10301:2002
PN-EN ISO 10304-1:2009+AC:2012
PN-EN ISO 10370:2014-12
PN-EN ISO 10523:2012
PN-EN ISO 11885:2009
PN-EN ISO 12156-1:2024-02
PN-EN ISO 12185:2024-08
PN-EN ISO 12937:2005+Ap1:2021-11
PN-EN ISO 14596:2009
PN-EN ISO 16703:2011
PN-EN ISO 17294-2:2024-04
PN-EN ISO 17852:2009
PN-EN ISO 18412:2007
PN-EN ISO 19458:2007 z wył. punktów 4.4.2, 4.4.3, 4.4.4, 4.4.5, 4.4.6
PN-EN ISO 20846:2020-03
PN-EN ISO 20884:2020-03 +A1:2022-03
PN-EN ISO 2160:2004
PN-EN ISO 21877:2020-03
PN-EN ISO 22854:2025-07 Procedura A
PN-EN ISO 2592:2017-10
PN-EN ISO 2719:2016-08+A1: 2021-06 z wyłączeniem procedury C
PN-EN ISO 2719:2016-08+A1:2021-06
PN-EN ISO 3015:2019-06
PN-EN ISO 3016:2019-06
PN-EN ISO 3104:2024-01
PN-EN ISO 3104:2024-01 Procedura A
PN-EN ISO 3170:2025-12 Z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7- 8.9, 9.8, 10.6, 10.7
PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7 - 8.9, 9.8, 10.6, 10.7
PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7, 8.8, 9.8, 10.6, 10.7
PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3 - 8.3.1.6, 8.3.1.8, 8.3.2, 8.7, 8.8,9.8, 10.6, 10.7
PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3, 8.3.1.5, 8.3.1.6, 8.3.1.8, 8.3.2, 8.7-8.9, 9.8, 10.6, 10.7
PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.3- 8.3.1.6, 8.3.1.8, 8.3.2, 8.7- 8.9, 9.8, 10.6, 10.7
PN-EN ISO 3170:2025-12 z wyłączeniem 8.3.1.5, 8.3.1.8, 8.3.2, 8.7,8.8, 10.6, 10.7
PN-EN ISO 3170:2025-12 z wyłączeniem pkt 8.3.1.3- 8.3.1.5, 8.3.1.8, 8.3.2, 8.5 - 8.9, 9.8, 10.6, 10.7
PN-EN ISO 3405:2019-05
PN-EN ISO 3405:2019-05 z wyłączeniem pkt 9
PN-EN ISO 3405:2019-05 z wyłączeniem pkt. 9
PN-EN ISO 3675:2004
PN-EN ISO 3735:2001
PN-EN ISO 4257:2004 ZN/MG/CN-18:2007
PN-EN ISO 4264:2018-08
PN-EN ISO 5163 :2014-08
PN-EN ISO 5163:2014-08
PN-EN ISO 5164 :2014-08
PN-EN ISO 5165:2021-02
PN-EN ISO 5349-1:2004
PN-EN ISO 5349-2:2004
PN-EN ISO 5349-2:2004/A1:2015-11
PN-EN ISO 5667-6:2016-12 z wyłączeniem 7.6, 9.4 Metoda nr 111 Wydanie 5 z dnia 01.07.2020
PN-EN ISO 5814:2013-04
PN-EN ISO 5815-1 :2019-12
PN-EN ISO 5815-1:2019-12
PN-EN ISO 6245:2008
PN-EN ISO 6246:2017-05 +A1:2020-03
PN-EN ISO 6251:2001
PN-EN ISO 6468:2002
PN-EN ISO 6878:2006 pkt. 8 +Ap1:2010+Ap2:2010
PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010
PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 pkt 8
PN-EN ISO 6976:2016-11
PN-EN ISO 7027-1:2016-09
PN-EN ISO 7243:2018-01+Ap2:2020-04
PN-EN ISO 7393-1:2011
PN-EN ISO 7536:2011
PN-EN ISO 7730:2006+Ap1:2014
PN-EN ISO 7887:2012+Ap1:2015-06 metoda C
PN-EN ISO 8467:2001
PN-EN ISO 8754:2007+Ap1:2014-02
PN-EN ISO 8819:2000
PN-EN ISO 8973:2000+A1:2020-10
PN-EN ISO 9029:2005
PN-EN ISO 9377-2:2003
PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 i 3 – punkt 10 i 11
PN-EN ISO 9963-1:2001+Ap1:2004
PN-IEC 997:1998
PN-ISO 10307-1:2010
PN-ISO 11423-1:2002
PN-ISO 11465:1999
PN-ISO 15705:2005
PN-ISO 2137:2021-07
PN-ISO 2176:2011+A1:2021-07
PN-ISO 2207:2011
PN-ISO 2909:2009+Ap1:2010
PN-ISO 3733:2008
PN-ISO 3771:2012
PN-ISO 3987:2014-05
PN-ISO 5664:2002
PN-ISO 5667-10:2021-11
PN-ISO 5667-10:2021-11 Metoda nr 111 Wydanie 5 z dnia 01.07.2020
PN-ISO 5667-11:2017-10 z wyłączeniem pkt 4.2.2, 4.2.4, 4.3, 6.2, 6.3 Metoda nr 111 Wydanie 5 z dnia 01.07.2020
PN-ISO 5667-5:2017-10 Metoda nr 111 Wydanie 5 z dnia 01.07.2020
PN-ISO 6058:1999
PN-ISO 6059:1999
PN-ISO 6060:2006
PN-ISO 6296:2011
PN-ISO 6332:2001+Ap1:2016-6
PN-ISO 6439:1994
PN-ISO 6439:1994 metoda B
PN-ISO 6614:2010+A1:2022-05
PN-ISO 6615:2012
PN-ISO 6618:2011
PN-ISO 7120:2011
PN-ISO 7120:2011 Procedura A i B
PN-ISO 7150-1:2002
PN-ISO 7941:1993+Ap1:2002
PN-ISO 9120:2009+Ap1:2022-04
PN-ISO 9280:2002
PN-ISO 9297:1994
PN-N-01307:1994
PN-V-04031:2000
PN-Z-04007-2:1994
PN-Z-04008-7:2002+Az1:2004
PN-Z-04009-11:2008
PN-Z-04015-12:1996+Ap1:2001
PN-Z-04015-13:1996
PN-Z-04044:1970
PN-Z-04108-06:2006+Az1:2009
PN-Z-04240-5:2006
PN-Z-04291:2003
PN-Z-04300:2002
PN-Z-04323:2004
PN-Z-04434:2011
PN-Z-04435:2011
PN-Z-04436:2011
PN-Z-04438:2021-07
PN-Z-04450:2014-08
PN-Z-04469:2025-02
PN-Z-04472:2015-10+Ap:1:2015-12
PN-Z-04487:2017-10
PN-Z-04502:2019-10
PN-Z-04507:2022-05+Ap1:2022-08
Podstawy Metody Oceny Środowiska Pracy 2012 nr 1(71) + 2017 nr 2 (92)
Podstawy i Metody Oceny Środowiska Pracy 2012, nr 4(74) s. 117-130
Podstawy i Metody Oceny Środowiska Pracy 2014, nr 3(81) s 89 – 101
Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4(90), s. 91 - 150
Podstawy i Metody Oceny Środowiska Pracy 2020, nr 1(103) s 159 – 169
Podstawy i Metody Oceny Środowiska Pracy 2021, nr4(110), s. 179-189
UOP 539-12
UOP 779-08
VGB-M 701 e:2008 p. 1.2
VGB-M 701 e:2008 p. 2.1
VGB-M 701 e:2008 p. 4
VGB-M 701 e:2008 p. 5
VGB-M 701 e:2008 p. 8.12
VGB-M 701 e:2008 p. 8.8.3
VGB-M 701-e/2008 p. 8.7