🇵🇱 ORLEN LABORATORIUM S.A. PL
Petrochemistry & fuelsWater & wastewaterEnvironmentMaterials & polymersAutomotiveConstruction
ORLEN LABORATORIUM S.A. is a laboratory accredited by PCA under number AB 484 (Płock, Poland). Its accreditation scope covers 668 test methods in the following areas: Petrochemistry & fuels, Water & wastewater, Environment, Materials & polymers. Test objects include: Water, wastewater, Workplace environment − air, Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME), Wastewater. Most frequently used techniques: Gravimetric method, Gas chromatography with flame ionization detection (GC-FID), Spectrophotometric method.
At a glance
- Accreditation number: PCA AB 484
- Methods in scope: 668
- Types of test objects: 144
- Techniques used: 102
- City: Płock, Poland
- Accreditation number
- AB 484
- Accreditation body
- PCA
- Address
- ul. Chemików 7, 09-411 Płock
- City
- Płock, Poland
What this laboratory tests (144)
- Water, wastewater — 71 methods
- Workplace environment − air — 45 methods
- Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) — 43 methods
- Wastewater — 37 methods
- Liquid fuels: diesel fuel, light fuel oil — 32 methods
- Liquid fuels: unleaded petrol — 32 methods
- Liquid fuels: aviation turbine fuel — 23 methods
- Gaseous fuels: liquefied petroleum gases, LPG — 21 methods
- Gaseous fuels: hydrogen (automotive) — 20 methods
- Liquid fuels: diesel fuel — 20 methods
- Lubricants: base oils, engine oils, industrial lubricating oils — 16 methods
- Other petroleum products: paving bitumens, industrial bitumens and bituminous products — 15 methods
- Liquid fuels: liquid biofuels: bioethanol — 14 methods
- Chemical products: terephthalic acid (PTA) — 10 methods
- Liquid fuels: unleaded petrol, diesel fuel, light fuel oil — 9 methods
- and 129 more
Analytical techniques used (102)
- Gravimetric method — 61 methods
- Gas chromatography with flame ionization detection (GC-FID) — 55 methods
- Spectrophotometric method — 52 methods
- Visual method — 33 methods
- Titrimetric method — 26 methods
- Oscillation method — 25 methods
- Optical method — 24 methods
- Distillation method — 20 methods
- Conductometric method — 17 methods
- Inductively coupled plasma optical emission spectrometry (ICP-OES) — 16 methods
- Coulometric titration method — 15 methods
- Ultraviolet fluorescence method — 15 methods
- Direct measurement method — 12 methods
- Capillary method — 11 methods
- Spectrometry method in the infrared range IR — 11 methods
- and 87 more
Laboratory sections (17)
- Pracownia Nawozów i Środowiska Naturalnego TT1 — 100 methods
- Pracownia Przerobu Ropy PP2 — 81 methods
- Pracownia Paliw i Aromatów PP1 — 76 methods
- Pracownia Środowiska Pracy PP8 — 66 methods
- Pracownia Produktów Rafineryjnych w Trzebini PP6 — 64 methods
- Pracownia Produktów Naftowych w Jedliczu PP5 — 50 methods
- Pracownia Chromatografii PP3 — 45 methods
- Pracownia Wód, Ścieków i Produktów Petrochemicznych PP4 — 39 methods
- Punkt Obsługi Laboratoryjnej we Wrocławiu PP7/5 — 27 methods
- Punkt Obsługi Laboratoryjnej w Warszawie PP7/4 — 23 methods
- Punkt Obsługi Laboratoryjnej w Lublinie PP7/1 — 22 methods
- Punkt Obsługi Laboratoryjnej w Olsztynie PP7/2 — 21 methods
- Punkt Obsługi Laboratoryjnej w Ostrowie Wielkopolskim PP7/3 — 21 methods
- Zespół Logistyki Włocławek LL/W — 14 methods
- Pracownia PTA TT5 — 11 methods
- and 2 more
Laboratory locations
- 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 —
Accreditation scope — test methods (668)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Pracownia Wód, Ścieków i Produktów Petrochemicznych PP4 | |||||
| 1 | Water, wastewater | Concentration of: total carbon (TC), total organic carbon (TOC) Range (0,30 – 1000) mg/l Total inorganic carbon (TIC) concentration Range (1,00 – 10,0) mg/l |
Spectrometry method in the infrared range IR | PN-EN 1484:1999 | |
| 2 | Water, wastewater | Electrical conductivity Range 10,0 μS/cm – 100 mS/cm |
Conductometric method | PN-EN 27888:1999 | |
| 3 | Water, wastewater | Sulphate (VI) concentration Range (10 – 1000) mg/l |
Gravimetric method | PN-ISO 9280:2002 | |
| 4 | Water, wastewater | Phenol index Range (0,010 – 10) mg/l |
Spectrophotometric method | PN-ISO 6439:1994 | |
| 5 | Water, wastewater | Biochemical oxygen demand BOD5 Range (2 – 6000) mg O2/l |
Optical method | PN-EN ISO 5815-1 :2019-12 | |
| 6 | Water | Chromium(VI) concentration Range (2 – 20) μg/l |
Spectrophotometric method | PN-EN ISO 18412:2007 | |
| 7 | Wastewater | Phosphorus concentration Range (0,01 – 50) mg/l |
Spectrophotometric method | PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 | |
| 8 | Wastewater | Chloride concentration Range (10 – 5 000) mg/l |
Titrimetric method | PN-ISO 9297:1994 | |
| 9 | Wastewater | Ammonium nitrogen concentration Range (0,040 – 5,00) mg/l Ammonia (ammonium ion) concentration Calculated |
Spectrophotometric method | PN-ISO 7150-1:2002 | |
| 10 | Wastewater | Total suspended solids (TSS) Range (1,0 – 2000) mg/l |
Gravimetric method | PN-EN 872:2007+Ap1:2007 | |
| 11 | Wastewater | Kjeldahl nitrogen concentration Range (1,0 – 100) mg/l |
Titrimetric method | PN-EN 25663:2001 | |
| 12 | Wastewater | Chemical oxygen demand (COD) Range (10,0 – 10000) mg O2/l |
Spectrophotometric method | PN-ISO 15705:2005 | |
| 13 | Wastewater | pH Range 2,0 – 12,0 |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 14 | Wastewater | Total nitrogen concentration (sum of Kjeldahl nitrogen, nitrate and nitrite nitrogen) (calculated) | Metoda nr 047 Wydanie 5 z dnia 19.11.2019 | ||
| 15 | Wastewater | Chromium +6 concentration Range (0,01 – 1,00) mg/l |
Spectrophotometric method | PN-C-04604-08:1977 | |
| 16 | Wastewater | Nitrite nitrogen concentration Range (0,010 – 10,0) mg/l Nitrite concentration (calculated) |
Spectrophotometric method | PN-EN 26777:1999 | |
| 17 | Wastewater | Concentration of organic substances extractable with petroleum ether Range (2,0 – 420) mg/l |
Gravimetric method | Metoda nr 115 wydanie 4 z dnia 18.12.2020 | |
| 18 | Wastewater | Dry residue, residue on ignition and dissolved solids Range (10 – 10000) mg/l Loss on ignition (calculated) |
Gravimetric method | Metoda nr 124 wydanie 2 z dnia 03.06.2020 r. | |
| 19 | Wastewater | Nitrate nitrogen concentration Range (0,010 – 30,0) mg/l |
Spectrophotometric method | Metoda nr 125 wydanie 2 z dnia 16.07.2020 r. | |
| 20 | Wastewater | Sulfide concentration Range (0,10 – 1,50) mg/l |
Spectrophotometric method | Metoda nr 179 wydanie 3 z dnia 13.12.2023 r. | |
| 21 | Wastewater | Ammonium nitrogen concentration Range (1,0 – 20) mg/l Ammonia (ammonium ion) concentration (calculated) |
Titrimetric method | PN-ISO 5664:2002 | |
| 22 | Sewage sludge | Content of substances extractable with dichloromethane Range (0,10 – 20,0) %m/m |
Gravimetric method | Metoda 106 Wydanie 3 z dnia 21.12.2020 | |
| 23 | Sewage sludge | Dry residue Range (0,8 – 48,0) % Water content (calculated) |
Gravimetric method | PN-EN 15934:2013-02 Metoda A | |
| 24 | Sewage sludge | Loss on ignition of dry matter Range (7,0 – 85,0)% Pozostałość po prażeniu suchej masy (z obliczeń) |
Gravimetric method | PN-EN 15935:2022-01 | |
| 25 | Construction material: gypsum | Moisture content Range (5,0 – 13,0) % |
Gravimetric method | VGB-M 701 e:2008 p. 1.2 | |
| 26 | Construction material: gypsum | Purity (CaSO4x2H2O) Range (96,0 – 99,0) % |
Gravimetric method | VGB-M 701 e:2008 p. 2.1 | |
| 27 | Construction material: gypsum | pH Range 4,0 – 9,0 |
Potentiometric method | VGB-M 701 e:2008 p. 4 | |
| 28 | Construction material: gypsum | Degree of whiteness Range (35,0 – 78,0) % Ry |
Spectrophotometric method | VGB-M 701 e:2008 p. 5 | |
| 29 | Construction material: gypsum | Particle size – granulometric analysis >32 μm Range (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 Range (0,15 – 1,15) % |
Titrimetric method | VGB-M 701 e:2008 p. 8.12 | |
| 31 | Construction material: gypsum | Chloride content Cl- Range (24 – 130) mg/kg |
Titrimetric method | 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 Range (0,0002 – 0,0650) %(v/v) Range (0,0650 – 93) %(v/v) |
Titrimetric method; Titrimetric method | Metoda 041 wydanie 6 z dnia 14.11.2024 | |
| 33 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Iodine value Range (105 – 120) g jodu/100g FAME |
Titrimetric method | PN-EN 14111:2022-11 | |
| 34 | Liquid fuels: liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Acid value Range (0,10 – 1,00) mg KOH/g |
Titrimetric method | PN-EN 14104:2021-06 | |
| 35 | Liquid fuels: liquid biofuels: bioethanol | Dry residue Range (5 – 25) mg/100ml |
Gravimetric method | PN-EN 15691:2023-11 | |
| 36 | Liquid fuels: liquid biofuels: bioethanol | Total acidity Range (0,003 – 0,013) %(m/m) |
Titrimetric method | PN-EN 15491:2025-08 | |
| 37 | Liquid fuels: liquid biofuels: bioethanol | Water content Range (0,073 – 0,500) %(m/m) |
Coulometric titration method | PN-EN 15489:2009 | |
| 38 | Liquid fuels: liquid biofuels: bioethanol | Phosphorus content Range (0,15 – 1,5) mg/l |
Spectrophotometric method | PN-EN 15487:2009 | |
| 39 | Liquid fuels: liquid biofuels: bioethanol | Inorganic chloride content Range (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 Range (15,5 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 41 | Liquid fuels: unleaded petrol, Other petroleum products: petroleum distillates | Fractional composition Range (30,0 – 360,0) 0C |
Distillation method | PN-EN ISO 3405:2019-05 z wyłączeniem pkt. 9 | |
| 42 | Liquid fuels: unleaded petrol, aviation gasoline | Lead content Range (2,5 – 6,0) mg/l |
Flame atomic absorption spectrometry (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 Range (70 – 115) |
Motor method | 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 Range (70 – 107) |
Motor method | 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 | Oxidation stability Range (60 – 700) minut |
Induction period method | PN-EN ISO 7536:2011 | |
| 46 | Liquid fuels: unleaded petrol | Manganese content Range (2,0 – 4,0) mg/l |
Flame atomic absorption spectrometry (FAAS) | PN-EN 16135 :2012 | |
| 47 | Liquid fuels: unleaded petrol | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 48 | Liquid fuels: unleaded petrol | Benzene content Range (0,1 – 1,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 238:2000+A1:2008 | |
| 49 | Liquid fuels: unleaded petrol, Other petroleum products: petrol components | Content of hydrocarbon groups and oxygenates total hydrocarbon content aromatic (10,0 – 50,0) %(v/v) total olefin content: Range (0,4 – 26,85) % (v/v) benzene content (0,38 – 1,96) %(v/v) content of oxygenates: ETBE (0,61 – 14,8) %(v/v) MTBE (0,61 – 15,0) %(v/v) ETOH (0,61 – 16,0) %(v/v) Total oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN ISO 22854:2025-07 Procedura A | |
| 50 | Liquid fuels: aviation turbine fuel | Density at 15°C Range (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 Range (650,0 – 1100,0) kg/m3 |
Oscillation method | 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 Range (1 – 10) mg/100ml |
Gravimetric method | 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) | Gas chromatography with flame ionization detection (GC-FID) | ASTM D 5134-21 | |
| 54 | Liquid fuels: diesel fuel, Other petroleum products: petroleum distillates | Aromatic hydrocarbon content mononuclear (MAH) Range (7,0 – 30) %(m/m) bicyclic (DAH) (1,0 – 9.7) %(m/m) tri- and polycyclic (T+ AH) (0,1 – 2,0) %(m/m) polycyclic (POLY-AH) (1,1 – 11,8) %(m/m) Total content of aromatic hydrocarbons (calculated) |
High-performance liquid chromatography with refractive index detection (HPLC-RID) | PN-EN 12916+A1:2025-07 Procedura A | |
| 55 | Liquid fuels: diesel fuel, liquid biofuels: fatty acid methyl esters (FAME) | Cetane number Range 50,0 – 60,0 |
Motor method | PN-EN ISO 5165:2021-02 | |
| 56 | Liquid fuels: diesel fuel, light fuel oil | Fatty acid methyl esters (FAME) content Range (0,05 – 10,0) %(v/v) |
Spectrometry method in the infrared range 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 Range (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) |
Visual method | 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) |
Visual method | 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 | Sulfur content Range (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 | Sulfur content Range (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 aromatic hydrocarbons Range (5,0 – 70,0) %(v/v) olefinic hydrocarbons (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 | Fractional composition Range (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 | Sulfur content Range (3,0 – 500) mg/kg |
Ultraviolet fluorescence method | 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 | Sulfur content Range (1,0 – 1000) mg/kg |
Ultraviolet fluorescence method | ASTM D 5453-24 | |
| 66 | Liquid fuels: aviation turbine fuel | Total sulfur content Range (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 Range (17,0 – 30,0) mm |
Optical method; Visual method | ASTM D 1322-25 | |
| 68 | Liquid fuels: aviation turbine fuel | Acidity Range (0,0001 – 0,100) mg KOH/g |
Titrimetric method | ASTM D 3242-23 | |
| 69 | Liquid fuels: aviation turbine fuel | Net calorific value (calculated) | 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 Range 70 – 100 |
Turbidimetric method | ASTM D 3948-22 | |
| 72 | Liquid fuels: aviation turbine fuel | Lubricity Range (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 Range 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 |
Optical method | 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 Range (0,01 – 0,25) %(v/v) |
Refractometric method | ASTM D 5006-25 | |
| 76 | Liquid fuels: aviation turbine fuel | Fatty acid methyl esters (FAME) content Range (10,0 – 100,0) mg/kg |
Infrared spectrometry method | ASTM D 7797-23 | |
| 77 | Liquid fuels: aviation turbine fuel | Appearance | Visual method | 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 | Flash point Range (4,0 – 70,0) °C |
TAG closed cup method | ASTM D 56-22 | |
| 79 | Liquid fuels: aviation turbine fuel | Specific conductivity Range (1 – 800) pS/m |
Conductometric method | 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 Range (2,000 – 8,000) mm2/s |
Capillary method | 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 Range (1 – 10) mg/100ml |
Gravimetric method | ASTM D 381-25 | |
| 82 | Liquid fuels: aviation turbine fuel | Reaction of fuel with water and assessment of the interface | Visual method | ASTM D 1094-24 | |
| 83 | Liquid fuels: aviation turbine fuel | Crystallisation temperature [(-75,0) (-42,0)] oC |
Optical method | ASTM D 5972-25 | |
| 84 | Liquid fuels: aviation turbine fuel | Crystallisation temperature [(-62,0) (-42,0)] oC |
Visual method | ASTM D 2386-19 | |
| 85 | Liquid fuels: aviation turbine fuel | Mercaptan sulphur content Range (0,0003 – 0,01) %(m/m) |
Potentiometric titration method | ASTM D 3227-24 | |
| 86 | Liquid fuels: aviation turbine fuel, aviation turbine fuel containing fuel additives | Water separation properties Range 70 – 100 |
Turbidimetric method | 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) |
High-performance liquid chromatography with refractive index detection (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 | Colour Range (+10) – (+30) wg skali Saybolt |
Visual method | ASTM D 156-23 | |
| 90 | Liquid fuels: aviation turbine fuel | Particulate matter content Range (0,0 – 10,0) mg/l |
Gravimetric method | ASTM D 5452-23 | PN-V-04031:2000 | |
| 91 | Liquid fuels: aviation turbine fuel | Existent gum content Range (1 – 10) mg/100ml |
Gravimetric method | IP 540/08(2019) | |
| 92 | Liquid fuels: aviation turbine fuel | Content of naphthalene hydrocarbons Range (0,08 – 2,0) %(v/v) |
Spectrophotometric method | ASTM D 1840-24 | |
| 93 | Other petroleum products: petroleum products with a boiling range 30°C - 380°C | Bromine number Range (0,1 – 100) g/100 g próbki |
Potentiometric titration method | 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 Range 0 – 14 |
Visual method | ASTM D 848-23 | |
| 95 | Other petroleum products: petroleum products with a boiling range of 30°C - 250°C, Chemical products: aromatic hydrocarbons | Colour Range 1 – 10 |
Visual method | ASTM D 1209-25 | |
| 96 | Other petroleum products: petroleum products with a boiling range of 30°C - 250°C, Chemical products: aromatic hydrocarbons | Acidity | Visual method | 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 Range (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 | Chloride content Range (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 Range (0,10 – 10,0) mg/kg |
Ultraviolet fluorescence method | ASTM D 7183-23 | |
| 100 | Chemical products: aromatic hydrocarbons | Distillation characteristics including the dry point Range (70,0 – 145,0) °C |
Distillation method | ASTM D 850-21 | |
| 101 | Chemical products: aromatic hydrocarbons | Chloride content Range (1,0 – 25,0) mg/kg |
Microcoulometric method | ASTM D 5808-23 | |
| 102 | Chemical products: aromatic hydrocarbons | Freezing point of benzene Range (5,10 – 5,50) °C |
Visual method | ASTM D 852-24 | |
| 103 | Chemical products: aromatic hydrocarbons | Nitrogen content Range (0,10 – 1,20) mg/kg |
Chemiluminescence method | ASTM D 7184-24 | |
| 104 | Chemical products: aromatic hydrocarbons | Bromine index Range (1,0 – 100,0) (mg Br/100g) |
Coulometric titration method | 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) Range (0,0006 – 2,5) %(m/m) Purity of mononuclear aromatic hydrocarbons benzene toluene para-xylene Range 97,60 – 99,99 %(m/m) |
Gas chromatography with flame ionization detection (GC-FID) | ASTM D 7504-23 | |
| 106 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Methyl alcohol content Range (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 Range (0,07 – 0,20) mg/kg |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN 15488:2009 | |
| 108 | Liquid fuels: liquid biofuels: bioethanol | Power Range (80,0 – 100,0) %(v/v) |
Oscillation method | PN-A-79528-3:2007 p. 5.2 | |
| 109 | Liquid fuels: liquid biofuels: bioethanol | Appearance | Visual method | PN-EN 15769:2010 | |
| 110 | Liquid fuels: liquid biofuels: bioethanol, methanol | Density at 20°C Range (0,780 – 0,870) g/cm3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 111 | Liquid fuels: diesel fuel, liquid biofuels: FAME | Derived cetane number Range 50,0 – 60,0 |
Combustion chamber method | PN-EN 16715:2015-09 | |
| 112 | Liquid fuels: liquid biofuels: bioethanol, motor petrol with bioethanol | Sulfur content Range (5,0 – 20,0)mg/kg |
Ultraviolet fluorescence method | PN-EN 15486:2009 | |
| 113 | Liquid fuels: light heating oil | Butoxybenzene (n-butyl phenyl ether (BPE)) content Range (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 Range (1 –50) mg/kg Organic chloride content (calculated) |
Microcoulometric titration method | ASTM D 4929-22 metoda B | |
| 115 | Water, wastewater | Mercury concentration Range (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 | Fractional composition Range (50 – 380) °C |
Distillation method | PN-EN ISO 3405:2019-05 z wyłączeniem pkt 9 | ASTM D 86-23aɛ2 | |
| 117 | Liquid fuels: liquid biofuels: diesel fuel with FAME | Fractional composition Range (50 – 380) °C |
Distillation method | 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 Range (630 – 1100) kg/m3 |
Oscillation method | 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 Range (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 | Flash point Range (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 | Sulfur content Range (0,03 – 5,00) %(m/m) |
Energy-dispersive X-ray fluorescence spectrometry | PN-EN ISO 8754:2007+Ap1:2014-02 | |
| 123 | Liquid fuels: diesel fuel, light fuel oil | Solvent Red 164 dye content Range (1,0 – 15,0) mg/l |
Spectrophotometric method | PN-C-04426:2013-07 Metoda B | |
| 124 | Liquid fuels: diesel fuel, light fuel oil | Solvent Red 19 dye content Range (1,0 – 15,0) mg/l |
Spectrophotometric method | PN-C-04426:2013-07 Metoda A | |
| 125 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | Oxidation stability Range (3 – 100) g/m3 |
Gravimetric method | PN- EN ISO 12205:2011 | |
| 126 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | Lubricity Range (180 – 650) μm |
HFRR method | PN-EN ISO 12156-1:2024-02 | |
| 127 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Penetration Range (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 Range (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 Range (1,0 – 3,5) %(m/m) |
Distillation method | PN-EN 12606-1:2015-08 | |
| 131 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Solubility Range do 100,00 %(m/m) |
Gravimetric method | 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 Range 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 | Water content Range (0 – 25,0) %(v/v) %(V/m) |
Distillation method | ASTM D 95-23ɛ1 | |
| 135 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Dynamic viscosity at 60 °C . Range (50 – 8000) Pa s |
Capillary method | 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 Range (0,02 – 0,5) % |
Gravimetric method | PN-EN 13303:2017-10 | |
| 138 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Elastic recovery Range (15 – 98) % |
Ductilometric method | PN-EN 13398:2017-12 | |
| 139 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Density and relative density Range (940 – 1030) kg/m3 |
Pycnometric method | PN-EN 15326+A1:2010 | |
| 140 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Kinematic viscosity at 135°C Range (20 – 2000) mm2/s |
Capillary method | PN-EN 12595:2024-01 | |
| 141 | Other petroleum products: paving bitumens, industrial bitumens and bituminous products | Tensile force Range (1,0 – 10,0) J/cm2 Deformation energy (calculated) |
Ductilometric method | PN-EN 13589:2018-08 | |
| 142 | Crude oil | Water content Range (0 – 1,0) %(v/v) |
Distillation method | PN-EN ISO 9029:2005 | ASTM D 4006-22 | |
| 143 | Crude oil | Density Range (750,0 – 950,0) kg/m3 |
Oscillation method | ASTM D 5002-22 | |
| 144 | Crude oil | Water content Range (0,02 – 2,00) %(m/m) |
Potentiometric titration method | ASTM D 4377-00 (2011) | |
| 145 | Crude oil | Water content Range (0,02 – 5,00) % (m/m lub V/V) |
Coulometric titration method | ASTM D 4928-12(2018) | |
| 146 | Crude oil | Fractional composition Range (30 – 300)°C |
Distillation method | GOST 2177-99 metoda B | |
| 147 | Crude oil | Fractional composition [(-1) (+400)] °C |
Distillation method | ASTM D 2892-25 | |
| 148 | Crude oil – distillation residue according to ASTM D 2892 | Fractional composition Range (380 – 565) °C |
Distillation method | 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 |
Optical method | 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 Range (1,000 – 150,0) mm2/s |
Capillary method | 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 Range (0,01 – 24) %(m/m) |
Gravimetric method | PN-ISO 6615:2012 | |
| 152 | Liquid fuels: diesel fuel, light heating oil, Other petroleum products: vacuum residue (tar), Crude oil | Total sulfur content Range (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 | Impurity content Range (0,01 – 0,40) %(m/m) |
Gravimetric method | 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 | Flash point Range (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 | Sulfur content Range (3,0 – 500) mg/kg |
Ultraviolet fluorescence method | 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 Range (0,01 – 24,00) %(m/m) |
Gravimetric method | 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 Range (0,001 – 0,180) %(m/m) |
Gravimetric method | PN-EN ISO 6245:2008 | |
| 158 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Water content Range (30 – 1000) mg/kg Range (0,003 – 0,100) %(m/m) |
Coulometric titration method | 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 |
Visual method | 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 Range 1a – 4c (skala) |
Visual method | 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 |
Optical method | PN-EN 116:2015-09 | |
| 162 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: diesel fuel with FAME | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | PN-EN 12662-1:2024-11 | |
| 163 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | PN-EN 12662-2:2024-11 | |
| 164 | Liquid fuels: light heating oil, heavy heating oil, Other petroleum products: vacuum residue (tar) | Gross calorific value Range (26 500 – 46 300) kJ/kg Net calorific value (calculated) |
Calorimetric method | 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) | Density Range (600 – 1100) kg/m3 |
Oscillation method | ASTM D 4052-22 | |
| 166 | Liquid fuels: diesel fuel, light heating oil, heavy heating oil, Other petroleum products: vacuum residue (tar) | Carbon content Range (78 – 88) %(m/m) |
Spectrometry method in the infrared range IR | ASTM D 5291-21 Metoda D | |
| 167 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Corrosion on a steel rod | Visual method | 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 | Water content Range (0 – 25) %(v/v) |
Distillation method | PN-ISO 3733:2008 | |
| 169 | Liquid fuels: liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Kinematic viscosity at 40 oC Range (1,000 – 150,0) mm2/s |
Capillary method | PN-EN ISO 3104:2024-01 | |
| 170 | Liquid fuels: liquid biofuels: diesel fuel with FAME, fatty acid methyl esters (FAME) | Oxidation stability Range (0,1 – 25,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 171 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Sulfated ash content Range (0,005 – 0,25) %(m/m) |
Gravimetric method | PN-ISO 3987:2014-05 | |
| 172 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Oxidation stability Range (0,1 – 14,0) h |
Conductometric method | PN-EN 14112:2021-05 | |
| 173 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Tendency to plug the filter after cooling Range (50 – 720) s |
CSFT method | ASTM D 7501-22 | |
| 174 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Group I metal content Na (1 – 10) mg/kg K (1 – 10) mg/kg Sum of (Na and K) mg/kg (calculated) |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14538:2008 | |
| 175 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Group II metal content Ca (1 – 10) mg/kg Mg (1,2 – 10) mg/kg Sum of (Ca and Mg) mg/kg (calculated) |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14538:2008 | |
| 176 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Phosphorus content Range (4 – 20) mg/kg |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14107:2004 | |
| 177 | Liquid fuels: diesel fuel | Manganese content Range (0,5 – 7,0) mg/l |
Inductively coupled plasma atomic emission spectrometry (ICP-OES) | PN-EN 16576:2014-12+Ap1:2017-11 | |
| 178 | Liquid fuels: diesel fuel | Oxidation stability Range (5,0 – 50,0) h |
Conductometric method | 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 | Water content Range (0,003 – 0,100) %(m/m) |
Potentiometric titration method | 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 Range (0,10 – 48,0) mg/kg |
Electrochemical method | IP 570/15(2021) | |
| 181 | Liquid fuels: heavy heating oil, Other petroleum products: vacuum residues | Total sediment content Range (0,01 – 0,50) %(m/m) |
Gravimetric method | 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 Range zasadowy – kwaśny (wartość pH 2,7 –12,4) |
Electrochemical method | 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 Range (85 – 100) dla olejów smarowych base (60 – 150) for additive-treated lubricating oils (calculated) |
PN-ISO 2909:2009+Ap1:2010 | ||
| 184 | Lubricants: base oils, engine oils, industrial lubricating oils | Colour Range 0,5 – 8,0 |
Visual method | ASTM D 1500-24 | |
| 185 | Lubricants: base oils, engine oils, industrial lubricating oils | Flash point Range (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 Range (2,600 – 200,0) mm2/s |
Capillary method | 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 | Acid value Range (0,1 – 5,0) mg KOH/g |
Titrimetric method | PN-ISO 6618:2011 | |
| 189 | Lubricants: base oils, engine oils, industrial lubricating oils | Residue after incineration Range (0,001 – 0,005) %(m/m) |
Gravimetric method | PN-EN ISO 6245:2008 | |
| 190 | Lubricating materials: industrial lubricating oils, Liquid fuels: heavy fuel oil | Water content Range (0,05 – 5,00) %(v/m) |
Distillation method | ASTM D 95-23ɛ1 | |
| 191 | Other petroleum products: slack wax | Oil content Range (0,20 – 15,00) %(m/m) |
Gravimetric method | ASTM D 721-25 | |
| 192 | Other petroleum products: slack wax | Freezing point Range (45 – 65) °C |
Visual method | PN-ISO 2207:2011 | |
| 193 | Wastewater | Metal concentrations Cr, Cd, Pb, Cu, Ni, Zn, Fe, V Range (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 Metal concentration 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 | Metal concentrations 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 | Water, wastewater | Element concentrations As, Cr, Cd, Pb Range (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) |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | VGB-M 701-e/2008 p. 8.7 | |
| Pracownia Środowiska Pracy PP8 | |||||
| 197 | Workplace environment − air | Sampling for the assessment of occupational exposure to: dust agents inhalable fraction respirable fraction metals and their compounds, including inhalable fraction respirable fraction organic substances, including inhalable fraction inorganic substances, including inhalable fraction respirable fraction thoracic fraction |
Personal dosimetry method | PN-Z-04008-7:2002+Az1:2004 | |
| 198 | Workplace environment − air | Sampling for the assessment of occupational exposure to: organic substances, inorganic substances, including inhalable fraction |
Stationary method | PN-Z-04008-7:2002+Az1:2004 | |
| 199 | Workplace environment − air | Exposure index (calculated) | PN-Z-04008-7:2002+Az1:2004 | ||
| 200 | Workplace environment − air | Ethylene glycol concentration/content Range (0,83 – 333,3)mg/m3 Range (0,025 – 1,00) mg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | PN-88/Z-04203.02 | |
| 201 | Workplace environment − air | Concentration/content of buta-1,3-diene Range (0,13 – 6,67) mg/m3 Range (0,004 – 0,150) mg w próbce Range (0,06 – 2,97) ppm |
Gas chromatography with flame ionization detection (GC-FID) | PN-84/Z-04014.02 | |
| 202 | Workplace environment − air | Concentration/content of buta-1,3-diene Range (0,22 – 4,44) mg/m3 Range (0,00098 – 0,02) mg w próbce Range (0,10 – 1,98) ppm |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04438:2021-07 | |
| 203 | Workplace environment − air | NN-Dimethylformamide concentration/content Range (1,00 – 333,3) mg/m3 Range (0,03 – 1,00) mg w próbce Range (0,33 – 109,9) ppm |
Gas chromatography with flame ionization detection (GC-FID) | PN-89/Z-04209.02 | |
| 204 | Workplace environment − air | Ethylene oxide concentration/content Range (0,07 – 2,13) mg/m3 Range (0,002 – 0,048) mg w próbce Range (0,04 – 1,17) ppm |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04300:2002 | |
| 205 | Workplace environment − air | Extraction naphtha concentration/content Range (2,08 – 1041,7) mg/m3 Range (0,15 – 7,5) mg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | PN-81/Z-04134.02 | |
| 206 | Workplace environment − air | Phenol concentration/content Range (0,50 – 35,00) mg/m3 Range (0,002 – 0,070) mg w próbce |
Spectrophotometric method | PN-Z-04044:1970 | |
| 207 | Workplace environment − air | Carbon monoxide concentration Range (2,3 – 232,4) mg/m3 Range (2,0 – 200,0) ppm |
Electrochemical method | Metoda nr 213 wydanie 1 z dnia 08.09.2025 | |
| 208 | Workplace environment − air | Exposure index (calculated) | Metoda nr 213 wydanie 1 z dnia 08.09.2025 | ||
| 209 | Workplace environment − air | Methanol concentration/content Range (0,05 – 1,0) mg w próbce Range (10,0 – 666,7) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | Podstawy i Metody Oceny Środowiska Pracy 2014, nr 3(81) s 89 – 101 | |
| 210 | Workplace environment − air | Stężenie/zawartość propan-2-ol Range (11,11 – 2400) mg/m3 Range (0,10 – 16,25) mg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | Podstawy i Metody Oceny Środowiska Pracy 2020, nr 1(103) s 159 – 169 | |
| 211 | Workplace environment − air | Stężenie/zawartość olejów mineralnych wysokorafinowanych, z wyłączeniem cieczy obróbkowych Range (0,14 – 10,00) mg/m3 Range (0,100 – 7,200) mg w próbce |
Spectrophotometric method | 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 |
Gas chromatography with flame ionization detection (GC-FID) | Metoda nr 045 wydanie 2 z dnia 14.02.2017 | |
| 213 | Workplace environment − air | Concentration/content of organic substances Aceton (0,1 – 10) mg w próbce Range (3,33 – 3333,3) mg/m3 Butan-2-on (0,036 – 9,0) mg w próbce (3,00 – 1800,0) mg/m3 Butane (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 Xylene - mixture of isomers (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 |
Gas chromatography with flame ionization detection (GC-FID) | Metoda nr 031 Wydanie 5 z dnia 20.02.2026 | |
| 214 | Workplace environment − air | Chlorine concentration/content Range (0,05 – 5,00) mg/m3 Range (0,0002 – 0,0050) mg w próbce |
Spectrophotometric method | PN-75/Z-04037/03 | |
| 215 | Workplace environment − air | Ammonia concentration/content Range (1,20 – 60,00) mg/m3 Range (0,006 – 0,300) mg w próbce |
Spectrophotometric method | PN-71/Z-04041 | |
| 216 | Workplace environment − air | Hydrogen fluoride concentration/content Range (0,15 – 2,25) mg/m3 Range (0,008 – 0,113) mg w próbce |
Spectrophotometric method | PN-82/Z-04093.03 | |
| 217 | Workplace environment − air | Formaldehyde concentration/content Range (0,048 – 5,33) mg/m3 Range (0,0008 – 0,040) mg w próbce |
Spectrophotometric method | PN-76/Z-04045.02 | |
| 218 | Workplace environment − air | Concentration/content of 2-furaldehyde Range (1,00 – 50,00) mg/m3 Range (0,005 – 0,250) mg w próbce |
Spectrophotometric method | PN-71/Z-04058 | |
| 219 | Workplace environment − air | Ozone concentration/content Range (0,0125 – 0,3000) mg/m3 Range (0,0005 – 0,0120) mg w próbce |
Spectrophotometric method | PN-Z-04007-2:1994 | |
| 220 | Workplace environment − air | Nitrogen monoxide concentration/content Range (0,22 – 23,1) mg/m3 Range (0,18 – 18,6) ppm Range (0,001 – 0,104) mg w próbce |
Spectrophotometric method | PN-Z-04009-11:2008 | |
| 221 | Workplace environment − air | Nitrogen dioxide concentration/content Range (0,07 – 3,56) mg/m3 Range (0,0003 – 0,016) mg w próbce Range (0,04 – 1,86) ppm |
Spectrophotometric method | PN-Z-04009-11:2008 | |
| 222 | Workplace environment − air | Sulphur dioxide concentration/content Range (0,12 – 6,00) mg/m3 Range (0,0012 – 0,0600) mg w próbce Range (0,05 – 2,26) ppm |
Spectrophotometric method | PN-Z-04015-12:1996+Ap1:2001 | |
| 223 | Workplace environment − air | Concentration/content of carbon disulphide Range (1,0 – 14,0) mg/m3 Range (0,010 – 0,140) mg w próbce |
Spectrophotometric method | PN-85/Z-04015.10 | |
| 224 | Workplace environment − air | Hydrogen sulphide concentration/content Range (0,20 – 28,00) mg/m3 Range (0,002 – 0,280) mg w próbce |
Spectrophotometric method | PN-Z-04015-13:1996 | |
| 225 | Workplace environment − air | Concentration/content of chromium (VI) compounds - calculated as Cr (VI) Range (0,00038 – 0,011) mg/m3 Range (0,0008 – 0,021) mg w próbce |
Spectrophotometric method | PN-87/Z-04126/02 | |
| 226 | Workplace environment − air | Acetic acid concentration/content Range (0,83 – 100,00) mg/m3 Range (0,025 – 1,500) mg w próbce Range (0,33 – 40,13) ppm |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04323:2004 | |
| 227 | Workplace environment − air | Hydrogen chloride concentration/content Range (0,50 –20,00) mg/m3 Range (0,20 – 8,00) mg w próbce |
Spectrophotometric method | PN-Z-04450:2014-08 | |
| 228 | Workplace environment − air | Stężenie/zawartość krystalicznej silica (quartz, cristobalite) respirable fraction Range (0,005 – 0,988) mg/m3 Range (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 | Workplace environment − air | Concentration/content of harmful dust agents - inhalable fraction dusts not classified according to toxicity wood dusts flour dusts petroleum bitumen Range (0,08 – 40,83) mg/m3 Range (0,06 – 2,45) mg w próbce |
Gravimetric method | PN-Z-04507:2022-05+Ap1:2022-08 | |
| 230 | Workplace environment − air | Concentration/content of chloroethene Range (0,11 – 11,11) mg/m3 Range (0,0020 – 0,200) mg w próbce Range (0,04 – 4,28) ppm |
Gas chromatography with flame ionization detection (GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 231 | Workplace environment − air | Concentration/content of 1,2-dichloroethane Range (0,53 – 55,56) mg/m3 Range (0,010 – 1,000) mg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 232 | Workplace environment − air | Tetrachloroethene concentration/content Range (4,0 – 200) mg/m3 Range (0,040 – 2,00) mg w próbce Range (0,58 – 29,1) ppm |
Gas chromatography with flame ionization detection (GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 233 | Workplace environment − air | Concentration/content of chloroethane Range (6,67 – 2666,7) mg/m3 Range (0,020 – 2,000) mg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | Metoda 159 Wydanie 3 z dnia 14.12.2020 | |
| 234 | Workplace environment − emergency electric lighting | Illuminance Range (0,5 – 500) lx |
Direct measurement method | 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 | Ratio of minimum to maximum illuminance (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 | ||
| 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 Range (1 – 80) s |
Direct measurement method | 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 Range (1 – 3600) s |
Direct measurement method | 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 | Workplace environment − indoor electric lighting | Illuminance Range (5 – 5 000) lx |
Direct measurement method | Metoda 032 wyd. 7 z dnia 19.02.2026 | |
| 240 | Workplace environment − indoor electric lighting | Illuminance uniformity (calculated) | Metoda 032 wyd. 7 z dnia 19.02.2026 | ||
| 241 | Workplace environment − outdoor electric lighting | Illuminance Range (5 – 500) lx |
Direct measurement method | 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 | Workplace environment − moderate microclimate | Air temperature Range (10 – 40) oC Black globe temperature Range (10 - 40) oC Air humidity Range (25 – 75) % Air velocity Range (0,15 – 10) m/s |
Direct measurement method | PN-EN ISO 7730:2006+Ap1:2014 | |
| 244 | Workplace environment − moderate microclimate | PMV index, PPD index (calculated) | PN-EN ISO 7730:2006+Ap1:2014 | ||
| 245 | Workplace environment − hot microclimate | Air temperature Range (20 – 40) oC Natural wet bulb temperature Range (20 – 40) oC Black globe temperature Range (20 – 40) oC |
Direct measurement method | PN-EN ISO 7243:2018-01+Ap2:2020-04 | |
| 246 | Workplace environment − hot microclimate | WBGT, WBGTeff index (calculated) | PN-EN ISO 7243:2018-01+Ap2:2020-04 | ||
| 247 | Workplace environment − whole-body vibration | Frequency-weighted r.m.s. vibration acceleration Range (0,10 – 50) m/s2 Daily exposure, expressed as the energy-equivalent for 8 hours of the r.m.s. frequency-weighted vibration acceleration dominant among the vibration accelerations determined for the three directional components, taking into account the relevant factors (1.4awx, 1.4awy, awz) Exposure lasting 30 minutes or less, expressed as the r.m.s. frequency-weighted vibration acceleration dominant among the vibration accelerations determined for the three directional components, taking into account the relevant factors (1.4awx, 1.4awy, awz) (calculated) |
Direct measurement method | PN-EN 14253+A1:2011 | |
| 248 | Workplace environment - hand-arm vibration | Frequency-weighted r.m.s. vibration acceleration Range (0,20 – 100) m/s2 Daily exposure, expressed as the energy equivalent for 8 hours of action of the vector sum of r.m.s. frequency-corrected vibration accelerations, determined for three directional components (ahwx, ahwy, ahwz) Exposure lasting 30 minutes and less, expressed as the vector sum of r.m.s. frequency-weighted vibration accelerations determined for the three directional components (ahwx, ahwy, ahwz) (calculated) |
Direct measurement method | PN-EN ISO 5349-1:2004 | PN-EN ISO 5349-2:2004 | PN-EN ISO 5349-2:2004/A1:2015-11 | |
| 249 | Workplace environment − noise | A-weighted equivalent sound level Maximum A-weighted sound level Range (34 – 139) dB C-weighted peak sound pressure level Range (34 – 139) dB |
Direct measurement method | PN-N-01307:1994 | PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 i 3 – punkt 10 i 11 | |
| 250 | Workplace environment − noise | Noise exposure level referred to: an 8-hour daily working time the average weekly working time (calculated) |
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 | Electric field strength: in the frequency range 50 Hz Range (0,1 – 20) kV/m Regulated area: 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). |
Direct measurement method | 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 | Magnetic flux density: in the frequency range 50 Hz Range 1 μT – 10 mT Regulated area: 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). |
Direct measurement method | 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) Regulated area: 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 | Workplace environment − air | Concentration/content of nickel compounds calculated as Ni – inhalable fraction Range (0,0009 – 0,16) mg/m3 Range (0,001 – 0,12) mg w próbce – respirable fraction Range (0,0006 – 0,11) mg/m3 Range (0,001 – 0,12) mg w próbce |
Flame atomic absorption spectrometry (FAAS) | Podstawy i Metody Oceny Środowiska Pracy 2021, nr4(110), s. 179-189 | |
| 255 | Workplace environment − air | Metallic nickel concentration/content Range (0,014 – 0,55) mg/m3 Range (0,010 – 0,400) mg w próbce |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04502:2019-10 | |
| 256 | Workplace environment − air | Concentration/content of lead and its inorganic compounds, excluding lead (II) arsenate (V) and lead (II) chromate (VI) calculated as Pb inhalable fraction Range (0,0035 – 0,185) mg/m3 Range (0,0025 – 0,100) mg w próbce |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04487:2017-10 | |
| 257 | Workplace environment − air | Concentration/content of manganese and its inorganic compounds expressed as Mn inhalable fraction Range (0,008 – 0,444) mg/m3 Range (0,006 – 0,320) mg w próbce respirable fraction Range (0,001 – 0,148) mg/m3 Range (0,0015 – 0,1600) mg w próbce |
Atomic absorption spectrometry (FAAS) | PN-Z-04472:2015-10+Ap:1:2015-12 | |
| 258 | Workplace environment − air | Concentration/content of metallic chromium, chromium compounds: chromium (II), chromium (III), chromium (VI) – calculated as Cr Range (0,017 – 1,389) mg/m3 Range (0,012 – 1,000) mg w próbce |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04434:2011 | |
| 259 | Workplace environment − air | Concentration/content of iron oxides calculated as Fe iron(III) oxide iron(II) oxide triiron tetraoxide respirable fraction Range (0,23 – 6,94) mg/m3 Range (0,125 – 3,750) mg w próbce inhalable fraction Range (0,35 – 10,42) mg/m3 Range (0,25 – 7,50) mg w próbce |
Atomic absorption spectrometry (FAAS) | PN-Z-04469:2025-02 | |
| 260 | Workplace environment − air | Potassium hydroxide concentration/content Range (0,02 –2,00) mg/m3 Range (0,014 –1,435) mg w próbce |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04436:2011 | |
| 261 | Workplace environment − air | Sodium hydroxide concentration/content Range (0,012 – 2,420) mg/m3 Range (0,0087 – 1,7400) mg w próbce |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04435:2011 | |
| 262 | Workplace environment − air | Concentration/content of cobalt and its inorganic compounds calculated as Co Range (0,002 – 0,042) mg/m3 Range (0,0013 – 0,0300) mg w próbce |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04291:2003 | |
| Pracownia Chromatografii PP3 | |||||
| 263 | Gaseous fuels: liquefied petroleum gases, LPG | Motor octane number (MON) (calculated) | PN-EN 589:2024-08 załącznik B | ||
| 264 | Gaseous fuels: liquefied petroleum gases, LPG | Total sulphur content Range (1,0 – 55,0) mg/kg Range (0,0001 – 0,0055) %(m/m) |
Ultraviolet fluorescence method | ASTM D 6667-21 | |
| 265 | Gaseous fuels: liquefied petroleum gases, 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 | Gaseous fuels: liquefied petroleum gases, 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 | Gaseous fuels: liquefied petroleum gases, 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 | Gaseous fuels: liquefied petroleum gases, LPG | Hydrocarbon composition Range (0,1 – 100,0) %(m/m) Range (0,1 – 100,0) %(mol) |
Gas chromatography with flame ionization detection (GC-FID) | PN-ISO 7941:1993+Ap1:2002 | PN-EN 27941:2015-12 | |
| 269 | Gaseous fuels: liquefied petroleum gases, LPG | Total diene content Range (0,1 – 2,1) %(m/m) Range (0,1 – 2,0) %(mol) |
Gas chromatography with flame ionization detection (GC-FID) | PN-ISO 7941:1993+Ap1:2002 | PN-EN 27941:2015-12 | |
| 270 | Gaseous fuels: liquefied petroleum gases, LPG | Copper strip corrosion corrosion class (1 – 4) |
Visual method | PN-EN ISO 6251:2001 | |
| 271 | Gaseous fuels: liquefied petroleum gases, LPG | Presence of hydrogen sulfide | Visual method | PN-EN ISO 8819:2000 | |
| 272 | Gaseous fuels: liquefied petroleum gases, LPG | Presence of water | Visual method | PN-EN 15469:2009 | |
| 273 | Gaseous fuels: liquefied petroleum gases, LPG | Odour | Organoleptic method | PN-EN 589:2024-08 załącznik A | |
| 274 | Gaseous fuels: liquefied petroleum gases, LPG | Net calorific value (calculated) | PN-C-96008:1998 p. 4.4.8 | ||
| 275 | Gaseous fuels: liquefied petroleum gases, LPG | Absolute vapour pressure at temp. (-15) °C (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 276 | Gaseous fuels: liquefied petroleum gases, LPG | Absolute vapour pressure at temp. 40 °C (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 277 | Gaseous fuels: liquefied petroleum gases, LPG | Absolute vapour pressure at temp. 70 °C (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 278 | Gaseous fuels: liquefied petroleum gases, LPG | Density at temp. 15,6 °C (calculated) | PN-C-96008:1998 p. 4.4.9 | ||
| 279 | Gaseous fuels: liquefied petroleum gases, LPG | Soluble residue Range (5 – 100) mg/kg |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 15470:2017-08 | |
| 280 | Gaseous fuels: liquefied petroleum gases, LPG | Total diene content Range (0,01 – 0,50) %(m/m) |
Gas chromatography with flame ionization detection (GC-FID) | DIN 51619:2004-02 | |
| 281 | Gaseous fuels: liquefied petroleum gases, LPG | 1,3-butadiene content Range (0,01 – 0,50) %(m/m) |
Gas chromatography with flame ionization detection (GC-FID) | DIN 51619:2004-02 | |
| 282 | Gaseous fuels: liquefied petroleum gases, LPG | Hydrocarbon composition Range (0,10 – 100,00) %(m/m) dla each of the components |
Gas chromatography with flame ionization detection (GC-FID) | DIN 51619:2004-02 | |
| 283 | Gaseous fuels: liquefied petroleum gases | Presence of hydrogen sulfide | Visual method | PN-C-96008:1998 p. 4.4.2 | |
| 284 | Gaseous fuels: liquefied petroleum gases | Mineral oil content Range (0,0003 – 0,0050) %(m/m) |
Gravimetric method | PN-C-96008:1998 p. 4.4.4 | |
| 285 | Gaseous fuels: liquefied petroleum gases | Presence of water | Visual method | PN-C-96008:1998 p. 4.4.5 | |
| 286 | Gaseous fuels: liquefied petroleum gases | Presence of ammonia | Visual method | 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 Hydrocarbons from C1 to C6 Range (0,10 – 99,90) % (mol/mol) Oxygen (0,10 – 20,00) %(mol/mol) Nitrogen (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 | Net calorific value (calculated) | 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 Range (0,0002 – 99,0000) %mol |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 27941:2015-12 | |
| 292 | Gaseous fuels: natural gas | Nitrogen content Range (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 Range (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 | Net calorific value (calculated) | PN-EN ISO 6976:2016-11 | ||
| 296 | Gaseous fuels: fuel gas | Hydrocarbon composition Range (0,01 – 99,00) %mol |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 27941:2015-12 | |
| 297 | Gaseous fuels: fuel gas | Nitrogen content Range (0,05 – 10,00) %mol |
Gas chromatography with thermal conductivity detection (GC-TCD) | ASTM D 1946-24 | |
| 298 | Gaseous fuels: fuel gas | Hydrogen content Range (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 | Net calorific value (calculated) | PN-EN ISO 6976:2016-11 | ||
| 301 | Liquid fuels: liquid biofuels: fatty acid methyl esters (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) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 14103:2020-06 | |
| 302 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Content of the sum of polyunsaturated fatty acid methyl esters (≥4 double bonds) (PUFA) Range (0,30 – 3,00) %(m/m) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 15779+A1:2013-12 | |
| 303 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Content of free and total glycerol and of mono-, di- and triacylglycerols Monoacylglycerols Range (0,05 – 1,25) % (m/m) Diacylglycerols (0,05 – 0,50) %(m/m) Triacylglycerols (0,05 – 0,50) %(m/m) Free glycerol (0,001 – 0,050) %(m/m) Total glycerol (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 14105:2025-04 | |
| 304 | Liquid fuels: liquid biofuels: bioethanol | Content of higher alcohols, methanol and other impurities methanol (0,010 – 3,000) %(m/m) Higher alcohols (C3-C5) Range (0,010 – 2,500) %(m/m) ethanol together with higher alcohols – above 95,000 %(m/m) other impurities (0,010 – 2,000) %(m/m) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 15721:2013-10 Procedura A | |
| 305 | Water, wastewater | Concentration of volatile aromatic hydrocarbons benzene (3,0 – 14000) μg/l toluene (3,0 – 14000) μg/l ethylbenzene (3,0 – 14000) μg/l (m+p)-xylene (3,0 – 27000) μg/l o-xylene (3,0 – 14000) μg/l cumene (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 | Wastewater | Mineral oil index Range (0,10 – 100) mg/l |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN ISO 9377-2:2003 | |
| 307 | Workplace environment – air samples collected on filters and sorbent tubes | Polycyclic aromatic hydrocarbons (PAH) content anthracene (0,005 – 0,500) μg in the sample benzo(a)anthracene Range (0,010 – 1,000) μg w próbce chrysene (0,020 – 2,000) μg in the sample benzo(b)fluoranthene (0,010 – 1,000) μg in the sample benzo(k)fluoranthene (0,010 – 1,000) μg in the sample benzo(a)pyrene (0,020 – 2,000) μg in the sample dibenzo(ah)anthracene (0,040 – 4,000) μg in the sample benzo(ghi)perylene (0,020 – 2,000) μg in the sample indeno (123cd)piren (0,020 – 0,100) μg in the sample |
High-performance liquid chromatography with fluorescence detection (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 Regulated area: 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 Regulated area: Badania wykonywane poza siedzibą laboratorium |
PN-EN 14275:2013-06 | ||
| 310 | Gaseous fuels: liquefied petroleum gases, LPG | Sampling for chemical and physical testing Regulated area: Badania wykonywane poza siedzibą laboratorium |
PN-EN ISO 4257:2004 ZN/MG/CN-18:2007 | ||
| 311 | Wastewater | Sampling for chemical and physical testing Temperature of the collected wastewater sample Range (2,0 – 50,0) °C Regulated area: Badania wykonywane poza siedzibą laboratorium |
Manual method | PN-ISO 5667-10:2021-11 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | |
| 312 | Wastewater | pH Range 2,0 – 12,0 Regulated area: Badania wykonywane poza siedzibą laboratorium |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 313 | Gaseous fuels: hydrogen (automotive) | Sampling for chemical and physical testing from tanks from the refuelling station from pipelines in the installation Regulated area: 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 Regulated area: 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 | Wastewater | Sampling for chemical and physical testing Temperature of the collected sample Range: (2,0 – 50,0) °C Regulated area: Badania wykonywane poza siedzibą laboratorium |
Manual method | PN-ISO 5667-10:2021-11 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | |
| 316 | Wastewater | Sampling for chemical and physical testing Regulated area: Badania wykonywane poza siedzibą laboratorium |
Automatic method | PN-ISO 5667-10:2021-11 | |
| 317 | Wastewater | pH Range 2,0 – 12,0 Regulated area: Badania wykonywane poza siedzibą laboratorium |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 318 | Surface waters | Sampling for chemical and physical testing Temperature of the sample taken Range (2,0 – 50,0) °C Regulated area: 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 Range (2,0 – 12,0) Regulated area: Badania wykonywane poza siedzibą laboratorium |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 320 | Surface waters | Electrical conductivity Range (0,100 – 20,00) mS/cm Regulated area: Badania wykonywane poza siedzibą laboratorium |
Conductometric method | PN-EN 27888:1999 | |
| 321 | Groundwater | Sampling for chemical and physical testing Temperature of the sample taken Range (2,0 – 50,0) °C Regulated area: 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 Range 2,0 – 12,0 Regulated area: Badania wykonywane poza siedzibą laboratorium |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 323 | Groundwater | Electrical conductivity Range (0,100 – 20,00) mS/cm Regulated area: Badania wykonywane poza siedzibą laboratorium |
Conductometric method | PN-EN 27888:1999 | |
| 324 | Waters, including drinking waters | Sampling for microbiological testing Regulated area: 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 Range (2,0 – 30,0) °C Regulated area: Badania wykonywane poza siedzibą laboratorium |
PN-ISO 5667-5:2017-10 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | ||
| 326 | Water | Free chlorine concentration Range: free chlorine (0,20 – 1,6) mg/l Regulated area: Badania wykonywane poza siedzibą laboratorium |
Colorimetric method | Metoda nr 195 Wydanie 1 z dnia 26.09.2019 Test HACH Nr 8021 (chlor wolny) | |
| 327 | Gaseous fuel: hydrogen (automotive) | Sampling for chemical and physical testing from tanks from the refuelling station from pipelines in the installation Regulated area: 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 Regulated area: 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 Range (87,4 – 99,6)% |
Spectrophotometric method | Metoda nr 117 wydanie 4 z dnia 05.12.2025 | |
| 330 | Chemical products: terephthalic acid (PTA) | Element content 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) |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | Metoda 118 wyd. 7 z dnia 07.04.2026 | |
| 331 | Chemical products: terephthalic acid (PTA) | Appearance | Visual method | Metoda nr 122 wydanie 4 z dnia 05.12.2025 | |
| 332 | Chemical products: terephthalic acid (PTA) | Colour on the Pt-Co scale Range 5 – 15 |
Visual method | Metoda nr 126 wydanie 4 z dnia 05.12.2025 | |
| 333 | Chemical products: terephthalic acid (PTA) | Water content Range (0,10 – 1,00) %(m/m) |
Potentiometric titration method | Metoda nr 127 wydanie 4 z dnia 05.12.2025 | |
| 334 | Chemical products: terephthalic acid (PTA) | Colour b Range (0,1 – 2,0) |
Spectrophotometric method | Metoda nr 128 wydanie 4 z dnia 05.12.2025 | |
| 335 | Chemical products: terephthalic acid (PTA) | Delta Y Range (1,0 – 10,0) |
Spectrophotometric method | Metoda nr 129 wydanie 4 z dnia 05.12.2025 | |
| 336 | Chemical products: terephthalic acid (PTA) | Acid value Range (673 – 677) mg KOH/g |
Titrimetric method | Metoda nr 130 wydanie 4 z dnia 05.12.2025 | |
| 337 | Chemical products: terephthalic acid (PTA) | Residue after incineration Range (1 – 5) mg/kg |
Gravimetric method | Metoda nr 132 wydanie 3 z dnia 12.01.2023 | |
| 338 | Chemical products: terephthalic acid (PTA) | Dp50 value Range (70 – 130) μm |
Metoda sitowa (i z obliczeń) | Metoda nr 133 wydanie 4 z dnia 05.12.2025 | |
| 339 | Water, wastewater | Total organic carbon content Range (0,3 – 24000) mg/l |
High-temperature combustion with IR detection | 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 | Sulfur content Range (3,0 – 60) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 343 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Density at 15°C Range (700,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 344 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Fractional composition Range (30,0 – 370,0) oC |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 345 | Liquid fuels: unleaded petrol | Air saturated vapour pressure Range (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 346 | Liquid fuels: unleaded petrol | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 347 | Liquid fuels: unleaded petrol | Content of oxygenated organic compounds Range (0,17 – 15,0) %(v/v) Total organically bound oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13132:2005 | |
| 348 | Liquid fuels: diesel fuel, light fuel oil | Flash point Range (40,0 – 90,0) oC |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 349 | Liquid fuels: diesel fuel, light fuel oil | Water content Range (30 – 1000) mg/kg |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 350 | Liquid fuels: diesel fuel, light fuel oil | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | PN-EN 12662-1:2024-11 | |
| 351 | Liquid fuels: diesel fuel, light fuel oil | Fatty acid methyl esters (FAME) content Range (3,0 – 20,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 14078:2014-06 | |
| 352 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Cloud point Range [(- 20) – 0] °C |
Optical method | PN-EN ISO 3015:2019-06 | |
| 353 | Liquid fuels: diesel fuel | Oxidation stability Range (5,0 – 48,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 354 | Liquid fuels: diesel fuel | Cold filter plugging point Range [(- 40) – 0] °C |
Optical method | PN-EN 116:2015-09 | |
| 355 | Liquid fuels: diesel fuel | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 356 | Liquid fuels: light fuel oil | Pour point [(- 45) (-15)] °C |
Optical method | PN-EN ISO 3016:2019-06 | |
| 357 | Liquid fuels: light fuel oil | Solvent Red 19 dye content Range (1,0 – 10,0) mg/l |
Spectrophotometric method | PN-C-04426:2013-07 Metoda A | |
| 358 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Sulfur content Range (3,0 – 10,0) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 359 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Cold filter plugging point Range [(- 20) – 0] °C |
Optical method | PN-EN 116:2015-09 | |
| 360 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Water content Range (30 – 1000) mg/kg |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 361 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Density at 15 °C Range (850 – 900) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 362 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Tendency to plug the filter after cooling Range (50 – 720) s |
Filtration after cooling method | ASTM D 7501-22 | |
| 363 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Oxidation stability Range (1,0 – 16,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 364 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | PN-EN 12662-2:2024-11 | |
| 365 | Liquid fuels: liquid biofuels: bioethanol | Power Range (95,0 – 100,0) %(v/v) |
Oscillation method | PN-A-79528-3:2007 p. 5.2 | |
| 366 | Liquid fuels: liquid biofuels: bioethanol | Density at 20°C Range (789,0 – 830,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| Punkt Obsługi Laboratoryjnej we Wrocławiu PP7/5 (Działalność techniczna) | |||||
| 367 | Liquid fuels: unleaded petrol | Motor octane number MON Range 80,0 – 90,0 |
Motor method | 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 Range (–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 | Sulfur content Range (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 | Density Range (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 Range (700,0 – 900,0) kg/m3 |
Oscillation method | 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 Range (1,500 – 100,0) mm2/s Dynamic viscosity (calculated) |
Capillary method | 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 Range (1,500 – 100,0) mm2/s |
Capillary method | ASTM D 445-24 | |
| 375 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Water content Range (0,003 – 0,100) %(m/m) |
Coulometric titration method | 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 Range (0,10 – 3,50) %(m/m) |
Gravimetric method | 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 Range (0 – (–30)) °C |
Optical method | PN-EN 116:2015-09 | |
| 378 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Cloud point Range (-38) – (+10) °C |
Optical method | PN-EN ISO 3015:2019-06 | |
| 379 | Liquid fuels: diesel fuel, light fuel oil | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | PN-EN 12662-1:2024-11 | |
| 380 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | PN-EN 12662-2:2024-11 | |
| 381 | Liquid fuels: diesel fuel, unleaded petrol, liquid biofuels: fatty acid methyl esters (FAME) | Sulfur content Range (1,0 – 20,0) mg/kg |
Ultraviolet fluorescence method | 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 Range (0,005 – 2,00) %(m/m) |
Gravimetric method | PN ISO 3987:2014-05 | |
| 383 | Liquid fuels: diesel fuel, light fuel oil, heavy fuel oil | Flash point Range (40,0 – 250,0) °C Pensky-Martens |
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) |
Visual method | PN-EN ISO 2160:2004 | ASTM D 130-19 | |
| 385 | Liquid fuels: diesel fuel | Fatty acid methyl ester FAME content Range (0,05 – 10,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 14078:2014-06 | |
| 386 | Liquid fuels: diesel fuel, unleaded petrol | Fractional composition Range (40,0 – 360,0) 0C |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 387 | Liquid fuels: light heating oil, heavy heating oil | Gross calorific value Range (35000 – 45000) kJ/kg Net calorific value (calculated) |
Calorimetric method | 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 | Liquid fuels: unleaded petrol | Content of oxygenated organic compounds Range (0,17 – 15,0) %(m/m), %(v/v) Total organically bound oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13132:2005 | |
| 390 | Liquid fuels: unleaded petrol | Air saturated vapour pressure Range (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 Range (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 Range (1300 – 10000) mPa∙s |
CCS method | PN-C-04150:2004 | ASTM D 5293-20 | |
| 393 | Lubricants: engine oils, industrial lubricating oils | Total base number Range (1,0 -90,0) mg/g KOH |
Potentiometric titration method | PN-ISO 3771:2012 | |
| 394 | Lubricants: engine oils, industrial lubricating oils | Flash point Range (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 Range (5 – 60) min |
Visual method | PN-ISO 6614:2010+A1:2022-05 | |
| 397 | Lubricants: engine oils, industrial lubricating oils | Acid value Range (0,1 – 5,0) mg/g KOH |
Titrimetric method | PN-ISO 6618:2011 | |
| 398 | Lubricants: engine oils, industrial lubricating oils | Colour Range (0,5 – 8,0) |
Visual method | 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 |
Inductively coupled plasma optical emission spectrometry (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 Range (20 – 220) * 0,1mm |
Needle penetration method | PN-EN 1426:2025-02 | |
| 402 | Other petroleum products: bitumen, bituminous products | Softening point of bitumens Range (30,0 – 110,0) °C |
Ring and Ball method | PN-EN 1427:2015-08 | |
| 403 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Iodine value Range (85 – 130) g jodu/100g |
Titrimetric method | PN-EN 14111:2022-11 | |
| 404 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Acid value Range (0,10 – 1,00) mg/g KOH |
Titrimetric method | PN-EN 14104:2021-06 | |
| 405 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Oxidation stability Range (1,0 – 15,0) h |
Conductometric method | PN-EN 14112:2021-05 | |
| 406 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Fatty acid methyl ester (FAME ) content Range (90,0 – 99,0) %(m/m) Linolenic acid methyl ester content Range (1,0 – 15,0) % (m/m) |
Gas chromatography with flame ionization detection (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) Range (0,6 – 0,8) %(m/m) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 15779+A1:2013-12 | |
| 408 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Monoacylglycerol content Range (0,10 – 1,25) %(m/m) Diacylglycerol content Range (0,10 – 0,50) %(m/m) Triacylglycerol content Range (0,10 – 0,40) %(m/m) Free glycerol content Range (0,001 – 0,050) %(m/m) Total glycerol content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 14105:2025-04 | |
| 409 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Methyl alcohol content Range (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) | Phosphorus content Range (4,0 – 10,0) mg/kg |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14107:2004 | |
| 411 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Calcium and magnesium content Range (1,0 – 10,0) mg/kg |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14538:2008 | |
| 412 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Sodium content Range (1,0 – 10,0) mg/kg |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14538:2008 | |
| 413 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Potassium content Range (1,0 – 10,0) mg/kg |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14538:2008 | |
| 414 | Liquid fuels: liquid biofuels – fatty acid methyl esters (FAME) | Tendency of biodiesel to block the fuel filter Range (80 – 400) s |
CSFT method | ASTM D 7501-22 | |
| 415 | Wastewater | Sampling for chemical and physical testing | Manual method | PN-ISO 5667-10:2021-11 | |
| 416 | Wastewater | Total phosphorus concentration Range (0,005 – 10,0) mg/l |
Spectrophotometric method | PN-EN ISO 6878:2006 pkt. 8 +Ap1:2010+Ap2:2010 | |
| 417 | Wastewater | Kjeldahl nitrogen concentration Range (1 – 100) mg/l |
Titrimetric method | PN-EN 25663:2001 | |
| 418 | Wastewater | Nitrate nitrogen concentration Range (0,010 – 30,0) mg/l |
Spectrophotometric method | Metoda 125 Wydanie 2 z dnia 16.07.2020 | |
| 419 | Wastewater | Nitrite nitrogen concentration Range (0,005 – 2,5) mg/l Nitrite concentration (calculated) |
Spectrophotometric method | PN-EN 26777:1999 | |
| 420 | Wastewater | Total nitrogen concentration (sum of Kjeldahl nitrogen, nitrate and nitrite nitrogen) (calculated) | Metoda 047 Wydanie 5 z dnia 19.11.2019 | ||
| 421 | Wastewater | Chemical oxygen demand Range (20,0 – 1000) mg O2/l |
Spectrophotometric method | PN-ISO 15705:2005 | |
| 422 | Wastewater, water | Total suspended solids (TSS) Range (5,0 – 50) mg/l |
Gravimetric method | PN-EN 872:2007+Ap1:2007 | |
| 423 | Gaseous fuels: hydrogen (automotive) | Determination of water content Range (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 Formaldehyde (0,05 – 0,40) μmol/mol Organic halogen compounds: Range 1,2,4-trichlorobenzen (0,002 – 0,04) μmol/mol 1,2-dichlorobenzene (0,002 – 0,04) μmol/mol 1,3-dichlorobenzene (0,002 – 0,04) μmol/mol 1,1,2,2-tetrachloroethane (0,002 - 0,04) μmol/mol chlorobenzene (0,002 – 0,04) μmol/mol tetrachloroethylene (0,002 – 0,04) μmol/mol 1,2-dibromoethane (0,002 – 0,04) μmol/mol 1,1,2-trichloroethane (0,002 – 0,04) μmol/mol trans-1,3-dichloropropene (0,002 – 0,04) μmol/mol 1,3-dichloropropene (0,002 – 0,04) μmol/mol trichloroethylene ( 0,002 – 0,04) μmol/mol 1,2-dichloropropane (0,002 – 0,04) μmol/mol carbon tetrachloride (0,002 – 0,04) μmol/mol 1,1,1-trichloroethane (0,002 – 0,04) μmol/mol 1,2-dichloroethane (0,002 – 0,04) μmol/mol trichloromethane (0,002 – 0,04) μmol/mol cis-1,1-dichloroethene (0,002 – 0,04) μmol/mol 1,1-dichloroethane (0,002 – 0,04) μmol/mol 1,1,2-trichloro-1,2,2-trifluoromethane (0,002 – 0,04) μmol/mol allyl chloride (0,002 – 0,04) μmol/mol methylene chloride (0,002 – 0,04) μmol/mol 1,1-dichloroethane (0,002 – 0,04) μmol/mol trichloromonofluoromethane (0,002 – 0,04) μmol/mol ethyl chloride (0,002 – 0,04) μmol/mol bromomethane (0,002 – 0,04) μmol/mol chloroethene (0,002 – 0,04) μmol/mol 1,2-dichloro-1,1,1,2-tetrafluoroethane (0,002 – 0,04) μmol/mol chloromethane (0,002 – 0,04) μmol/mol dichlorodifluoromethane (0,002 – 0,04) μmol/mol Content of organic halogen compounds (calculated) |
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 Range (0,15 – 1,40) mg/kg |
Gravimetric method | 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 | Liquid fuels: unleaded petrol | Motor octane number MON Range 60 – 100 |
Motor method | PN-EN ISO 5163:2014-08 | |
| 435 | Liquid fuels: unleaded petrol | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 436 | Liquid fuels: unleaded petrol | Air saturated vapour pressure Range (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 437 | Liquid fuels: unleaded petrol | Content of oxygenated organic compounds Range (0,17 – 15,0) % (v/v) Total organically bound oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13132:2005 | |
| 438 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | Density Range (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 Range (664,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 440 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | Fractional composition Range (10,0 – 370,0) °C |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 441 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | Copper strip corrosion Range 1a – 4c (skala) |
Visual method | PN-EN ISO 2160:2004 | |
| 442 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil, Chemical products: solvents | Sulfur content Range (3 – 500) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 443 | Liquid fuels: diesel fuel | Oxidation stability Range (5,0 – 50,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 444 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Oxidation stability Range (1,0 – 16,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 445 | Liquid fuels: light fuel oil | Sulfur content Range (0,03 – 1,2) %(m/m) |
Energy-dispersive X-ray fluorescence spectrometry | PN-EN ISO 8754:2007+Ap1:2014-02 | |
| 446 | Liquid fuels: diesel fuel, light fuel oil | Kinematic viscosity at 40 °C Range (2,000 – 10,00) mm2/s |
Capillary method | PN-EN ISO 3104:2024-01 Procedura A | |
| 447 | Liquid fuels: diesel fuel, light fuel oil | Flash point Range (40,0 – 100,0) °C |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 448 | Liquid fuels: diesel fuel, light fuel oil | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | PN-EN 12662-1:2024-11 | |
| 449 | Liquid fuels: diesel fuel, light fuel oil | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 450 | Liquid fuels: diesel fuel, light fuel oil | Cold filter plugging point [0 (-30)] oC |
Optical method | PN-EN 116:2015-09 | |
| 451 | Liquid fuels: diesel fuel, light fuel oil | Pour point [10 (-40,0)] oC |
Optical method | PN-EN ISO 3016:2019-06 | ASTM D 97-17b(2022) | |
| 452 | Liquid fuels: diesel fuel, light fuel oil | Water content Range (30 – 1000) mg/kg |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 453 | Liquid fuels: diesel fuel, light fuel oil | Cloud point [0 (-45)] oC |
Optical method | PN-EN ISO 3015:2019-06 | |
| 454 | Liquid fuels: diesel fuel, light fuel oil | Solvent Red 19 dye content Range (1,0 – 10,0) mg/l |
Spectrophotometric method | PN-C-04426:2013-07 Metoda A | |
| 455 | Liquid fuels: diesel fuel, light fuel oil | Fatty acid methyl esters (FAME) content Range (0,05 –10,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 14078:2014-06 | |
| 456 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | PN-EN 12662-2:2024-11 | |
| 457 | Crude oil | Density at 15°C Range (700,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 458 | Crude oil, Liquid fuels: heavy fuel oil | Impurity content Range (0,01 – 0,40) %(m/m) |
Gravimetric method | PN-EN ISO 3735:2001 | |
| 459 | Chemical products: low-freezing fluids | Crystallisation temperature [(-18) (-50)] oC |
Visual method | 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) | Visual method | 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 Range (2,000 – 1200) mm2/s |
Capillary method | PN-EN ISO 3104:2024-01 Procedura A | |
| 462 | Lubricants: base oils, engine oils, industrial lubricating oils | Pour point [10 (-45)] oC |
Optical method | PN-EN ISO 3016:2019-06 | |
| 463 | Lubricants: base oils, engine oils, industrial lubricating oils | Density Range (800,0 – 900,0) kg/m3 |
Hydrometer method | PN-EN ISO 3675:2004 | |
| 464 | Lubricants: base oils, engine oils, industrial lubricating oils | Flash point Range (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 Range (800,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 466 | Lubricants: base oils, engine oils, industrial lubricating oils | Residue after incineration Range (0,001 – 0,18) %(m/m) |
Gravimetric method | PN-EN ISO 6245:2008 | |
| 467 | Lubricants: base oils, engine oils, industrial lubricating oils | Copper strip corrosion Range 1a – 4c (skala) |
Visual method | PN-EN ISO 2160:2004 | |
| 468 | Lubricants: base oils, engine oils, industrial lubricating oils | Corrosive action on metals | Visual method | PN-85/C-04093 metoda B | |
| 469 | Lubricating materials: base oils, industrial lubricating oils | Air release properties Range (1 – 15) minut |
Gravimetric method | PN-ISO 9120:2009+Ap1:2022-04 | |
| 470 | Lubricants: greases | Dropping point Range (70 − 230) °C |
Ubbelohde method | PN-55/C-04020 | |
| 471 | Lubricants: greases | Dropping point Range (130 – 300) °C |
Visual method | PN-ISO 2176:2011+A1:2021-07 | |
| 472 | Lubricants: greases | Penetration Range 200 – 420 |
Cone penetration method | PN-ISO 2137:2021-07 | |
| 473 | Wastewater, rainwater | Sampling for chemical and physical testing Temperature of the collected sample of rainwater, wastewater Range (2,0 – 30,0) °C |
Manual method | PN-ISO 5667-10:2021-11 Metoda nr 111 Wydanie 5 z dnia 01.07.2020 | |
| 474 | Wastewater | pH Range 4,0 – 10,0 |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 475 | Wastewater | Total suspended solids (TSS) Range (5 – 200) mg/l |
Gravimetric method | PN-EN 872:2007+Ap1:2007 | |
| 476 | Wastewater | Phenol concentration (phenol index) Range (0,002 – 0,100) mg/l |
Spectrophotometric method | PN-ISO 6439:1994 metoda B | |
| 477 | Wastewater | Mineral oil index Range (2,0 – 1000,0) mg/l |
Laser spectroscopy method | ASTM D 7678-17(2022) | |
| 478 | Wastewater | Chloride concentration Range (5 – 150) mg/l |
Titrimetric method | PN-ISO 9297:1994 | |
| 479 | Wastewater | Biochemical oxygen demand BOD5 Range (3 – 600) mg O2/l |
Electrochemical method | PN-EN ISO 5815-1:2019-12 | |
| 480 | Wastewater | Chemical oxygen demand Range (30,0 – 1000) mg O2/l |
Spectrophotometric method | PN-ISO 15705:2005 | |
| 481 | Wastewater | Phosphorus concentration Range (0,10 – 25,0) mg/l |
Spectrophotometric method | 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 Range (700,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 484 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Fractional composition Range (30,0 – 370,0) °C |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 485 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Sulfur content Range (3,0 – 100) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 486 | Liquid fuels: unleaded petrol | Air saturated vapour pressure Range (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 487 | Liquid fuels: unleaded petrol | Content of oxygenated organic compounds Range (0,17 – 15,0) %(v/v) Total organically bound oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13132:2005 | |
| 488 | Liquid fuels: unleaded petrol | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 489 | Liquid fuels: unleaded petrol | Motor octane number MON Range 84,0 – 90,0 |
Motor method | PN-EN ISO 5163:2014-08 | |
| 490 | Liquid fuels: diesel fuel, light fuel oil | Flash point Range (45,0 – 75,0) °C |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 491 | Liquid fuels: diesel fuel, light fuel oil | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | PN-EN 12662-1:2024-11 | |
| 492 | Liquid fuels: diesel fuel, light fuel oil, liquid biofuels: fatty acid methyl esters (FAME) | Water content Range (30 – 1000) mg/kg |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 493 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | 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] |
Optical method | PN-EN 116:2015-09 | |
| 495 | Liquid fuels: diesel fuel | Fatty acid methyl esters (FAME) content Range (3,0 – 10,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 14078:2014-06 | |
| 496 | Liquid fuels: diesel fuel | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 497 | Liquid fuels: diesel fuel | Cetane number Range 50,0 – 60,0 |
Motor method | PN-EN ISO 5165:2021-02 | |
| 498 | Liquid fuels: liquid biofuels: fatty acid methyl esters ( FAME) | Tendency to plug the filter after cooling Range (30 – 360) s |
CSFT method | ASTM D 7501-22 | |
| 499 | Liquid fuels: liquid biofuels: fatty acid methyl esters ( FAME) | Oxidation stability Range (1,0 – 16,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 500 | Liquid fuels: diesel fuel, liquid biofuels: fatty acid methyl esters (FAME) | Cloud point [0oC (-25) oC] |
Optical method | PN-EN ISO 3015:2019-06 | |
| 501 | Liquid fuels: liquid biofuels: bioethanol | Power Range (95,0 – 100,0) %(v/v) |
Oscillation method | PN-A-79528-3:2007 p. 5.2 | |
| 502 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | Oxidation stability Range (5,0 – 48,0) h |
Conductometric method | 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 | Liquid fuels: unleaded petrol | Motor octane number MON Range 80,0 – 90,0 |
Motor method | PN-EN ISO 5163:2014-08 | |
| 505 | Liquid fuels: unleaded petrol | Air saturated vapour pressure Range (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 506 | Liquid fuels: unleaded petrol | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 507 | Liquid fuels: unleaded petrol | Sulfur content Range (3,0 – 100) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 508 | Liquid fuels: unleaded petrol | Density at 15°C Range (700,0 – 800,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 509 | Liquid fuels: unleaded petrol | Fractional composition Range (30,0 – 220,0) oC |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 510 | Liquid fuels: unleaded petrol | Content of oxygenated organic compounds Range (0,17 – 15,0) % (v/v) Total organically bound oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13132:2005 | |
| 511 | Liquid fuels: diesel fuel, light fuel oil | Density at 15°C Range (800,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 512 | Liquid fuels: diesel fuel, light fuel oil | Fractional composition Range (150,0 – 370,0) oC |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 513 | Liquid fuels: diesel fuel, light fuel oil | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | PN-EN 12662-1:2024-11 | |
| 514 | Liquid fuels: diesel fuel, light fuel oil | Water content Range (0,003 – 0,100) %(m/m) |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 515 | Liquid fuels: diesel fuel, light fuel oil | Flash point Range (40,0 – 100,0) oC |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 516 | Liquid fuels: diesel fuel, light fuel oil | Sulfur content Range (3,0 – 100) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 517 | Liquid fuels: diesel fuel | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 518 | Liquid fuels: diesel fuel | Cold filter plugging point [(- 33) (+5)] oC |
Optical method | PN-EN 116:2015-09 | |
| 519 | Liquid fuels: diesel fuel | Fatty acid methyl esters (FAME) content Range (3,0 – 10,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 14078:2014-06 | |
| 520 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Density at 15°C Range (860,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 521 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Water content Range (0,003 – 0,100) %(m/m) |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 522 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Cold filter plugging point [(- 25) (-5)] oC |
Optical method | PN-EN 116:2015-09 | |
| 523 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Tendency to plug the filter after cooling Range (30 – 360) s |
Filtration after cooling method | ASTM D 7501-22 | |
| 524 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | 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 | Sulfur content Range (3,0 – 50) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 527 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil | Density at 15°C Range (700,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 528 | Liquid fuels: diesel fuel, unleaded petrol, light fuel oil | Fractional composition Range (30,0 – 370,0) oC |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 529 | Liquid fuels: diesel fuel | Cold filter plugging point [ (-40) – (0,0)]°C |
Optical method | PN-EN 116:2015-09 | |
| 530 | Liquid fuels: diesel fuel | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 531 | Liquid fuels: diesel fuel | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | PN-EN 12662-1:2024-11 | |
| 532 | Liquid fuels: diesel fuel | Cloud point [(- 20,0) (0,0)] oC |
Optical method | ASTM D 5772-21 | |
| 533 | Liquid fuels: diesel fuel, light fuel oil | Flash point Range (40,0 – 90,0) oC |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 534 | Liquid fuels: diesel fuel, light fuel oil | Water content Range (30 – 1000) mg/kg |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 535 | Liquid fuels: unleaded petrol | Content of oxygenated organic compounds Range (0,17 – 15,0) %(v/v) Total organically bound oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13132:2005 | |
| 536 | Liquid fuels: unleaded petrol | Air saturated vapour pressure Range (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 537 | Liquid fuels: unleaded petrol | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 538 | Liquid fuels: unleaded petrol | Motor octane number MON Range 80,0 – 90,0 |
Motor method | PN-EN ISO 5163:2014-08 | |
| 539 | Liquid fuels: diesel fuel, liquid biofuels: diesel fuel with FAME | Fatty acid methyl ester content Range (3,0 – 20,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 14078:2014-06 | |
| 540 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Density at 15°C Range (800,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 541 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Water content Range (30 – 1000) mg/kg |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 542 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Cloud point [(- 20,0) (0,0)] oC |
Optical method | ASTM D 5772-21 | |
| 543 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Cold filter plugging point [(-40) (0,0)] °C |
Optical method | PN-EN 116:2015-09 | |
| 544 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Tendency to plug the filter after cooling Range (50,0 – 360) s |
Filtration after cooling method | ASTM D 7501-22 | |
| 545 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | 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 | Liquid fuels: unleaded petrol | Air saturated vapour pressure Range (40,0 – 106,0) kPa |
Mini Reid method | PN-EN 13016-1:2024-11 | |
| 548 | Liquid fuels: unleaded petrol | Content of oxygenated organic compounds Range (0,17 – 15,0) %(v/v) Total organically bound oxygen content (calculated) |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13132:2005 | |
| 549 | Liquid fuels: unleaded petrol | Volatility index (calculated) | PN-EN 228+A1:2017-06 p. 5.5.2 | ||
| 550 | Liquid fuels: unleaded petrol | Motor octane number MON Range 80,0 – 90,0 |
Motor method | PN-EN ISO 5163:2014-08 | |
| 551 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Sulfur content Range (3,0 – 60,0) mg/kg |
Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | |
| 552 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Density at 15°C Range (700,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 553 | Liquid fuels: unleaded petrol, diesel fuel, light fuel oil | Fractional composition Range (30,0 – 370,0) 0C |
Distillation method | PN-EN ISO 3405:2019-05 | |
| 554 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Density at 15°C Range (800,0 – 900,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 555 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Water content Range (0,003 – 0,100) %(m/m) |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 556 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Tendency to plug the filter after cooling Range (50 – 650) s |
Filtration method after cooling | ASTM D 7501-22 | |
| 557 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Oxidation stability Range (1,0 – 16,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 558 | Liquid fuels: diesel fuel, light fuel oil | Kinematic viscosity at 40 °C Range (2,000 – 6,000) mm2/s |
Capillary method | PN-EN ISO 3104:2024-01 Procedura A | |
| 559 | Liquid fuels: diesel fuel, light fuel oil | Flash point Range (40,0 – 100,0) °C |
Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021-06 | |
| 560 | Liquid fuels: diesel fuel, light fuel oil | Water content Range (0,003 – 0,100) %(m/m) |
Coulometric titration method | PN-EN ISO 12937:2005+Ap1:2021-11 | |
| 561 | Liquid fuels: diesel fuel, light fuel oil | Impurity content Range (12,0 – 26,0) mg/kg |
Gravimetric method | 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 Range (3,0 – 20,0) %(v/v) |
Spectrometry method in the infrared range IR | PN-EN 14078:2014-06 | |
| 563 | Liquid fuels: liquid biofuels: fatty acid methyl esters (FAME) | Impurity content Range (5,0 – 27,0) mg/kg |
Gravimetric method | PN-EN 12662-2:2024-11 | |
| 564 | Liquid fuels: liquid biofuels: bioethanol | Power Range (90,0 – 100,0) %(v/v) |
Oscillation method | PN-A-79528-3:2007 p. 5.2 | |
| 565 | Liquid fuels: liquid biofuels: bioethanol | Density at 20°C Range (789,0 – 830,0) kg/m3 |
Oscillation method | PN-EN ISO 12185:2024-08 | |
| 566 | Liquid fuels: diesel fuel | Oxidation stability Range (5,0 – 48,0) h |
Conductometric method | PN-EN 15751:2014-05 | |
| 567 | Liquid fuels: diesel fuel | Cetane index (calculated) | PN-EN ISO 4264:2018-08 | ||
| 568 | Liquid fuels: diesel fuel | Cold filter plugging point [0°C (- 40)] °C |
Optical method | PN-EN 116:2015-09 | |
| Pracownia Nawozów i Środowiska Naturalnego TT1 | |||||
| 569 | Water | Colour Range (2 – 100) mg/l Pt |
Spectrophotometric method | PN-EN ISO 7887:2012+Ap1:2015-06 metoda C | |
| 570 | Water | Benzene concentration Range (0,25 – 10) μg/l |
Gas chromatography with static headspace analysis and flame ionization detection (HS-GC-FID) | PN-ISO 11423-1:2002 | |
| 571 | Water | Turbidity Range (0,50 – 50) NTU |
Nephelometric method | PN-EN ISO 7027-1:2016-09 | |
| 572 | Water, wastewater | pH Range 2,0 – 12,0 |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 573 | Water, wastewater | Total suspended solids (TSS) Range (2,0 – 5000) mg/l |
Gravimetric method | PN-EN 872:2007+Ap1:2007 | |
| 574 | Water, wastewater | Dry residue Range (10 – 5000) mg/l |
Gravimetric method | PN-78/C-04541 pkt 4.1 | |
| 575 | Water, wastewater | Electrical conductivity Range (10 – 1 300) mS/m |
Conductometric method | PN-EN 27888:1999 | |
| 576 | Water, wastewater | Nitrite concentration Range (0,050 – 33) mg/l |
Spectrophotometric method | PN-EN 26777:1999 | |
| 577 | Water, wastewater | Nitrite nitrogen concentration (calculated) | PN-EN 26777:1999 | ||
| 578 | Water, wastewater | Nitrite concentration Range (0,050 – 20) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 579 | Water, wastewater | Nitrite nitrogen concentration (calculated) | PN-EN ISO 10304-1:2009+AC:2012 | ||
| 580 | Water, wastewater | Nitrate concentration Range (0,050 – 2000) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 581 | Water, wastewater | Nitrate nitrogen concentration (calculated) | PN-EN ISO 10304-1:2009+AC:2012 | ||
| 582 | Water, wastewater | Nitrate concentration Range (0,18 – 2200) mg/l |
Spectrophotometric method | PN-82/C-04576/08 | |
| 583 | Water, wastewater | Nitrate nitrogen concentration (calculated) | PN-82/C-04576/08 | ||
| 584 | Water, wastewater | Kjeldahl nitrogen concentration Range (3,4 – 1000) mg/l |
Titrimetric method | PN-EN 25663:2001 z wyłączeniem pkt. 11.1 | |
| 585 | Water, wastewater | Total nitrogen concentration (calculated) | Metoda nr 047 Wydanie 5 z dnia 19.11.2019 | ||
| 586 | Water, wastewater | Ammonium nitrogen concentration Range (0,47 – 1000) mg/l |
Titrimetric method | PN-ISO 5664:2002 | |
| 587 | Water, wastewater | Concentration of ammonium ion, ammonia (calculated) | PN-ISO 5664:2002 | ||
| 588 | Water, wastewater | Ammonium nitrogen concentration Range (0,050 – 5,0) mg/l |
Spectrophotometric method | PN-ISO 7150-1:2002 | |
| 589 | Water, wastewater | Concentration of ammonium ion, ammonia (calculated) | PN-ISO 7150-1:2002 | ||
| 590 | Water, wastewater | Total phosphorus concentration Range (0,016 – 32) mg/l |
Spectrophotometric method | PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 | |
| 591 | Water, wastewater | Phosphate concentration Range (0,050 – 100) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 592 | Water, wastewater | Iron concentration Range (0,010 – 10,0) mg/l |
Spectrophotometric method | PN-ISO 6332:2001+Ap1:2016-6 | |
| 593 | Water, wastewater | Manganese concentration Range (0,030 – 4,0) mg/l |
Spectrophotometric method | PN-92/C-04590/03 | |
| 594 | Water, wastewater | Concentration of substances extractable with petroleum ether Range (10 – 1000) mg/l |
Gravimetric method | PN-86/C-04573/01 | |
| 595 | Water, wastewater | Biochemical oxygen demand (BOD5) Range (1 – 6000) mg/l O2 |
Electrochemical method | PN-EN ISO 5815-1:2019-12 | |
| 596 | Water, wastewater | Dissolved oxygen concentration Range (0,2 – 10) mg/l O2 |
Electrochemical method | PN-EN ISO 5814:2013-04 | |
| 597 | Water, wastewater | Chemical oxygen demand – COD-Cr Range (9,0 – 3000) mg/l O2 |
Titrimetric method | PN-74/C-04578-03 | |
| 598 | Water, wastewater | Chemical oxygen demand COD-Cr Range (25 – 1000) mg/l O2 |
Titrimetric method | PN-ISO 6060:2006 | |
| 599 | Water, wastewater | Chemical oxygen demand COD-Cr Range (10 – 10000) mg/l O2 |
Spectrophotometric method | PN-ISO 15705:2005 | |
| 600 | Water, wastewater | Sulfate concentration Range (0,050 – 5000) mg/l |
Ion chromatography (IC) with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 601 | Water, wastewater | Chloride concentration Range (0,10 – 5000) mg/l |
Ion chromatography (IC) with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 602 | Water, wastewater | Permanganate index Range (0,50 – 100) mg O2/l |
Titrimetric method | PN-EN ISO 8467:2001 | |
| 603 | Water, wastewater | Aluminium concentration Range (0,0100 – 10,0) mg/l |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN ISO 11885:2009 | |
| 604 | Water, wastewater | Total content of calcium and magnesium (total hardness) Range (0,050 – 40) mmol/l Range (5,0 – 4000) mg/l CaCO3 |
Titrimetric method | PN-ISO 6059:1999 | |
| 605 | Water, wastewater | Calcium concentration Range (0,050 – 25) mmol/l Range (2,0 – 1000) mg/l |
Titrimetric method | PN-ISO 6058:1999 | |
| 606 | Water, wastewater | Magnesium concentration (calculated) | PN-C 04554-4:1999 Załącznik A | ||
| 607 | Water, wastewater | Sulfate concentration Range (20 – 5000) mg/l |
Gravimetric method | PN-ISO 9280:2002 | |
| 608 | Water, wastewater | Chloride concentration Range (5 – 25 000) mg/l |
Titrimetric method | PN-ISO 9297:1994 | |
| 609 | Water, wastewater | Mineral oil index Range (0,10 – 100) mg/l |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN ISO 9377-2:2003 | |
| 610 | Water, wastewater | Vinyl chloride concentration Range (0,10 – 1,0) mg/l |
Gas chromatography with flame ionization detection (GC-FID) | Metoda nr 192 Wydanie 1 z dnia 26.09.2019 | |
| 611 | Water, wastewater | Concentration of halogenated hydrocarbon derivatives Range 1,2-dichloroetan (0,0010 – 0,10) mg/l Tetrachloromethane (0,00050–0,10) mg/l Tetrachloroethylene (0,0010 –0,10) mg/l trichloroethylene (0,0010 –0,10) mg/l trichloromethane (0,0010 –0,10) mg/l hexachlorobutadiene (0,00010 – 0,010) mg/l |
Gas chromatography with electron capture detection (GC-ECD) | PN-EN ISO 10301:2002 | |
| 612 | Water, wastewater | Total carbon concentration organic (TOC) and dissolved carbon organic (DOC) Range (0,30 – 1000) mg/l |
High-temperature combustion with IR detection | PN-EN 1484:1999 | |
| 613 | Water, wastewater | Total dissolved solids concentration (TDS) Range (10,0 – 5000) mg/l |
Gravimetric method | PN-EN 15216:2022-03 | |
| 614 | Water, wastewater | Total chlorine concentration Range (0,030 – 5) mg/l Free chlorine concentration Range (0,030 – 3,5) mg/l Combined chlorine (calculated) |
Titrimetric method | PN-EN ISO 7393-1:2011 | |
| 615 | Water, wastewater | Hexachlorobenzene concentration Range (0,010 – 0,10) μg/l |
Gas chromatography with electron capture detection (GC-ECD) | PN-EN ISO 6468:2002 | |
| 616 | Water, wastewater | Concentration of aromatic hydrocarbons benzene (0,0010 – 100) mg/l toluene (0,0010 – 100) mg/l ethylbenzene (0,0010 – 100) mg/l styrene (0,0010 – 100) mg/l o-xylene (0,0010 – 100) mg/l (m+p)-xylene (0,0020 – 200) mg/l |
Gas chromatography with static headspace analysis and flame ionization detection (HS-GC-FID) | PN-ISO 11423-1:2002 | |
| 617 | Water, wastewater | Sum of aromatic hydrocarbons (calculated) | PN-ISO 11423-1:2002 | ||
| 618 | Water, wastewater | 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 | Water, wastewater | Sum of trihalomethanes (calculated) | PN-EN ISO 10301:2002 | ||
| 620 | Water, wastewater | Concentration of halogenated hydrocarbon derivatives Range 1,2-dichloroetan (0,25 – 10) μg/l tetrachloromethane (0,10 – 10) μg/l tetrachloroethylene (0,10 – 10) μg/l trichloroethylene (0,10 – 10) μg/l trichloromethane (0,25 – 10) μg/l |
Gas chromatography with static headspace analysis and electron capture detection (HS-GC-ECD) | PN-EN ISO 10301:2002 | |
| 621 | Water, wastewater | Sum of tetrachloroethylene and trichloroethylene (calculated) | PN-EN ISO 10301:2002 | ||
| 622 | Water, wastewater | Concentration of halogenated hydrocarbon derivatives vinyl chloride (0,25 – 100) μg/l Range 1,2-dichloroetan (0,010 – 20) mg/l tetrachloromethane (0,010 – 20) mg/l tetrachloroethylene (0,010 – 20) mg/l trichloroethylene (0,010 – 20) mg/l trichloromethane (0,010 – 20) mg/l |
Headspace gas chromatography with flame ionization detection (HS-GC-FID) | PN-EN ISO 10301:2002 | |
| 623 | Water, wastewater | Fluoride concentration Range (0,050 – 100) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | |
| 624 | Water, wastewater | Concentration of total, free and bound cyanides Range (0,010 – 0,30) mg/l |
Spectrophotometric method | Metoda nr 193 Wydanie 1 z dnia 26.09.2019 Test Spectroquant 1.14561.0001 | |
| 625 | Water, wastewater | Bound cyanides (calculated) | Metoda nr 193 Wydanie 1 z dnia 26.09.2019 Test Spectroquant 1.14561.0001 | ||
| 626 | Water, wastewater | Element concentration cadmium (0,00200 – 10,0) mg/l total chromium (0,00200 – 10,0) mg/l copper (0,00200 – 10,0) mg/l nickel (0,00500 – 10,0) mg/l lead (0,0100 – 50,0) mg/l zinc (0,00500 – 50,0) mg/l |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN ISO 11885:2009 | |
| 627 | Water, wastewater | Element concentration cobalt (0,00500 – 10,0) mg/l iron (0,0200 – 50,0) mg/l manganese (0,00200 – 50,0) mg/l vanadium (0,0200 – 10,0) mg/l barium (0,00200 – 10,0) mg/l boron (0,0100 – 1,00) mg/l sodium (0,500 – 2000) mg/l molybdenum (0,00800 – 10,0) mg/l calcium (0,200 – 1000) mg/l magnesium (0,100 – 1000) mg/l potassium (0,100 – 1000) mg/l |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN ISO 11885:2009 | |
| 628 | Water, wastewater | Element concentration arsenic (0,0200 – 1,00) mg/l antimony (0,0200 – 1,00) mg/l selenium (0,0100 – 1,00) mg/l |
Hydride generation inductively coupled plasma optical emission spectrometry (HG-ICP-OES) | PN-EN ISO 11885:2009 | |
| 629 | Water, wastewater | Mercury concentration Range (0,20 – 70) μg/l |
Atomic absorption spectrometry with amalgamation technique | Metoda nr 194 Wydanie 1 z dnia 26.09.2019 | |
| 630 | Water, wastewater | Concentration of C6-C12 hydrocarbons Range (0,020 - 1000) mg/l |
Gas chromatography with flame ionization detection (GC-FID) | PN-C-04643:1994 | |
| 631 | Water, wastewater | C12-C35 hydrocarbon concentration Range (0,50 – 5000) mg/l |
Gas chromatography with flame ionization detection (GC-FID) | PN-C-04643:1994 | |
| 632 | Water, wastewater | Sum of C6-C35 hydrocarbons (calculated) | PN-C-04643:1994 | ||
| 633 | Water, wastewater | Alkalinity to phenolphthalein Range (0,40 – 20) mmol/l Total alkalinity Range (0,40 – 20) mmol/l |
Titrimetric method | 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 |
Gas chromatography with electron capture detection (GC-ECD) | PN-IEC 997:1998 | |
| 635 | General environment – waste gas samples collected on sorbent tubes | Content of organic compounds vinyl chloride Range (0,050 – 250) μg w próbce 1,2-dichloroetan (0,10 – 250) μg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13649:2005 | |
| 636 | General environment – waste gas samples collected on sorbent tubes | Trichloromethane content Range (1,0 – 250) μg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13649:2005 | |
| 637 | General environment – waste gas samples collected on sorbent tubes | Content of the sum of aromatic hydrocarbons: benzene, ethylbenzene, styrene, toluene, o-xylene, (m+p)xylenes (calculated) | PN-EN 13649:2005 | ||
| 638 | General environment – waste gas samples collected on sorbent tubes | Content of organic compounds aliphatic hydrocarbons C5 – C12 Range (1,0 – 500) μg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13649:2005 | |
| 639 | General environment – waste gas samples collected on sorbent tubes | Methanol content Range (5,0 – 100) μg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13649:2005 | |
| 640 | General environment – waste gas samples collected on sorbent tubes | Content of organic compounds o-xylene (1,0 – 2 500) μg in sample (m+p)-xylene (1,0 – 5000) μg in sample toluene (1,0 – 2 500) μg in sample styrene (1,0 – 2 500) μg in sample methyl ethyl ketone Range (1,0 – 2 500) μg w próbce methyl acetate (1,0 – 2 500) μg in sample ethylbenzene (1,0 – 2 500) μg in sample benzene (1,0 – 2 500) μg in sample (o+m+p)-xylene (1,0 – 7 500) μg in sample tetrachloroethylene (1,0 – 3 000) μg in sample bromomethane (5,0 – 2 500) μg in sample trichloroethene (1,0 – 500) μg in sample 1,1 dichloroethene (1,0 – 500) μg in sample 1,2 dichloroethene (1,0 – 500) μg in sample 1,1,2 trichloroethane (1,0 – 500) μg in sample tetrachloromethane (1,0 – 500) μg in sample |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13649:2005 | |
| 641 | General environment – waste gas samples collected on sorbent tubes | Ethylene glycol content Range (100 – 2500) μg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN 13649:2005 | |
| 642 | Workplace environment – air samples collected on filters | Sulphuric acid content - thoracic fraction Range (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 sample Sb (0,00100 – 0,0500) mg w próbce |
Hydride generation inductively coupled plasma optical emission spectrometry (HG-ICP-OES) | PN-EN 14385:2025:05 | |
| 644 | General environment – waste gas samples collected on filters | Element content: 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 |
Inductively coupled plasma optical emission spectrometry (ICP-OES) | PN-EN 14385:2025:05 | |
| 645 | General environment – waste gas samples collected on filters | Mercury content Range (0,0005 – 0,05) mg w próbce |
Hydride generation inductively coupled plasma optical emission spectrometry (HG-ICP-OES) | PN-EN 13211:2006 | |
| 646 | General environment – waste gas samples collected into absorbing solutions | Element content: 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 |
Inductively coupled plasma optical emission spectrometry (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 |
Hydride generation inductively coupled plasma optical emission spectrometry (HG-ICP-OES) | PN-EN 14385:2025:05 | |
| 648 | General environment – waste gas samples collected into absorbing solutions | Mercury content Range (0,000500 – 0,0500) mg w sample |
Hydride generation inductively coupled plasma optical emission spectrometry (HG-ICP-OES) | PN-EN 13211:2006 | |
| 649 | General environment – waste gas samples collected into absorbing solutions | Hydrogen chloride content Range (0,050 – 100) mg w próbce |
Spectrophotometric method | PN-EN 1911:2011 | |
| 650 | General environment – waste gas samples collected into absorbing solutions | Hydrogen bromide content Range (0,028 – 1,0) mg w próbce |
Turbidimetric method | Metoda nr 201 Wydanie 1 z dnia 26.09.2019 | |
| 651 | General environment - waste gas samples collected into absorbing solutions | Ammonia content Range (0,0061 – 9,7) mg w próbce |
Spectrophotometric method | PN-EN ISO 21877:2020-03 | |
| 652 | General environment – ambient air samples collected on sorbent tubes | Vinyl chloride content Range (0,020 – 0,50) μg w próbce |
Gas chromatography with flame ionization detection (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 Range (0,10 – 2,0) μg w próbce |
Gas chromatography with flame ionization detection (GC-FID) | Metoda nr 202 Wydanie 1 z dnia 26.09.2019 | |
| 654 | Soil | Dry matter Range (10,0 – 999) g/kg Range (1,0 – 99,0) % |
Gravimetric method | PN-ISO 11465:1999 | |
| 655 | Soil | Concentration of C6-C12 hydrocarbons Range (12,5 – 10000) mg/kg |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN ISO 16703:2011 | |
| 656 | Soil | Concentration of C12-C35 hydrocarbons Range (12,5 – 10000) mg/kg |
Gas chromatography with flame ionization detection (GC-FID) | PN-EN ISO 16703:2011 | |
| 657 | Soil | Sum of C6-C35 hydrocarbons (calculated) | PN-EN ISO 16703:2011 | ||
| 658 | Sewage sludge, Waste O: code 19 08 05 | Dry residue Range (10,0 – 990) g/kg Range (1,0 – 99,0) % Water content Range (1,0 – 99,0) % Regulated area: O) Kody odpadów według Rozporządzenia Ministra Klimatu w sprawie katalogu odpadów |
Gravimetric method | PN-EN 15934:2013-02 | |
| 659 | Sewage sludge, Waste O: code 19 08 05 | Loss on ignition of dry matter Range (2,0 – 98,0)% Pozostałość po prażeniu suchej masy (z obliczeń) Regulated area: O) Kody odpadów według Rozporządzenia Ministra Klimatu w sprawie katalogu odpadów |
Gravimetric method | PN-EN 15935:2022-01 | |
| 660 | Gaseous fuels: hydrogen (automotive) | Water content Range (2,00 – 20,00) μmol/mol |
Continuous-wave cavity ring-down spectrometry (CRDS) | ASTM D7941/D7941M-23 | |
| 661 | Gaseous fuels: hydrogen (automotive) | Helium content Range (25,0 – 600) μmol/mol Content of carbon dioxide, methane and hydrocarbons Carbon dioxide (0,200 – 4,00) μmol/mol Methane (10,0 – 200) μmol/mol Total hydrocarbons excluding methane (C1 equivalent) (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 Formaldehyde (0,050 – 0,40) μmol/mol Range 1,2 – dichlorobenzen (0,0010 – 0,050) μmol/mol Chloroform (0,0010 – 0,050) μmol/mol Dichloromethane (0,0010 – 0,050) μmol/mol Tetrachloroethylene (0,0010 – 0,050) μmol/mol Content of total halogen compounds (calculated) |
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 Range (0,0500 – 5,00) mg/kg |
Gravimetric method | 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 | ||
Reference standards (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