🇵🇱 IREAST SP. Z O.O. PL
Petrochemistry & fuelsMaterials & polymersWater & wastewater
IREAST SP. Z O.O. is a laboratory accredited by PCA under number AB 1275 (Małaszewicze, Poland). Its accreditation scope covers 103 test methods in the following areas: Petrochemistry & fuels, Materials & polymers, Water & wastewater. Test objects include: Gaseous fuels - liquefied petroleum gases, LPG, Gaseous fuels: - liquefied petroleum gases, LPG, Liquid fuels: - diesel fuel, diesel fuel with FAME, Wheat grains.
At a glance
- Accreditation number: PCA AB 1275
- Methods in scope: 103
- Types of test objects: 20
- City: Małaszewicze, Poland
- Accreditation number
- AB 1275
- Accreditation body
- PCA
- Address
- LABORATORIUM BADAWCZE, ul. Celna 1, 21-540 Małaszewicze
- City
- Małaszewicze, Poland
What this laboratory tests (20)
- Gaseous fuels - liquefied petroleum gases, LPG — 20 methods
- Gaseous fuels: - liquefied petroleum gases, LPG — 20 methods
- Liquid fuels: - diesel fuel, diesel fuel with FAME — 11 methods
- Wheat grains — 11 methods
- Wheat grains Maize grains — 9 methods
- Liquid fuels: - motor gasoline — 5 methods
- Agricultural products: oilseeds (rapeseed) — 4 methods
- Other petroleum products: - paraffin, slack wax, petrolatum — 4 methods
- Liquid fuels: - light fuel oil — 3 methods
- Liquid fuels: FAME — 3 methods
- Gaseous fuels: - propylene — 2 methods
- Liquid fuels: - pyrolysis oil — 2 methods
- Oilseeds (rapeseed) — 2 methods
- Agricultural products: - oilseeds - vegetable oils — 1 method
- Liquid fuels: - diesel fuel, diesel fuel with FAME, light heating oil Lubricants: - base oils, engine oils, industrial lubricating oils — 1 method
- and 5 more
Accreditation scope — test methods (103)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Other petroleum products: - paraffin, slack wax, petrolatum | Kinematic viscosity at 100 ºC Range: (3,000 – 20,00) mm2/s Capillary method | PN-EN ISO 3104:2024-01 Procedura A | ||
| 2 | Other petroleum products: - paraffin, slack wax, petrolatum | Oil content Range: (0,4 – 30,0) % (m/m) Gravimetric method | ISO 2908:1974 | ||
| 3 | Other petroleum products: - paraffin, slack wax, petrolatum | Colour Range: (0,5 – 8,0) Visual method | ASTM D 1500-12(2017) | ||
| 4 | Other petroleum products: - paraffin, slack wax, petrolatum | Freezing point Range: (30,0 – 70,0) ºC Visual method | PN-ISO 2207:2011 | ||
| 5 | Other petroleum products: - liquid paraffin | Density at 15 °C Range: (770,0 – 790,0) kg/m3 Oscillation method | PN-EN ISO 12185:2024-08 | ||
| 6 | Liquid fuels: - light heating oil, heavy heating oil, pyrolysis oil, diesel fuel, diesel fuel with FAME Lubricants: - base oils, engine oils, industrial lubricating oils, used oils | Distillation characteristics at atmospheric pressure Range: (100,0 – 370,0) ºC Distillation method | PN-EN ISO 3405:2019-05 | ||
| 7 | Liquid fuels: - diesel fuel, diesel fuel with FAME, light heating oil Lubricants: - base oils, engine oils, industrial lubricating oils | Distillation characteristics at atmospheric pressure Range: (100,0 – 370,0) ºC Distillation method | PN-EN ISO 3405:2019-05 | ||
| 8 | Other petroleum products: - petroleum products with a final distillation temperature exceeding 315 ºC | Aromatic components Range: (70,0 – 99,0) % m/m Non-aromatic components Range: (1,0 – 30,0) % m/m Gravimetric method (separation by gel chromatography) | PWL-01 Wydanie IV z dnia 20.02.2019 r. | ||
| 9 | Liquid fuels: - pyrolysis oil | Density at 15 ºC Range: (800,0 – 1100,0) kg/m3 Oscillating method | PN-EN ISO 12185:2024-08 | ||
| 10 | Liquid fuels: - pyrolysis oil | Flash point Range: (30,0 – 90,0) ºC Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021- 06 | ||
| 11 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Density at 15 ºC Range: (800,0 – 850,0) kg/m3 Oscillation method | PN-EN ISO 12185:2024-08 | ||
| 12 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Cetane index (calculated) | PN-EN ISO 4264:2018 | ||
| 13 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Sulphur content Range: (3,0 – 15,0) mg/kg Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | ||
| 14 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Fatty acid methyl ester (FAME) content Range: (0,05 – 15,0) % (v/v) Infrared spectrometry method IR | PN-EN 14078:2014-06 | ||
| 15 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Kinematic viscosity at 40 ºC Range: (1,900 – 6,700) mm2/s Capillary method | PN-EN ISO 3104:2024-01 Procedura A | ||
| 16 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Corrosive action on copper Range: corrosion class (1 – 4) Visual method | PN-EN ISO 2160:2004 | ||
| 17 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Flash point Range: (45,0 – 95,0) ºC Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021- 06 procedura A | ||
| 18 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Water content Range: (30 – 200) mg/kg Range: (0,0030 – 0,0200) % (m/m) Coulometric titration method | PN-EN ISO 12937:2005 | ||
| 19 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Cold filter plugging point Range: (from -35 to -5) ºC Optical method | PN-EN 116:2015-09 | ||
| 20 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Cloud point Range: (from -17 to -3) ºC Visual method | PN-ISO 3015:2019-06 | ||
| 21 | Liquid fuels: - diesel fuel, diesel fuel with FAME | Impurity content Range: (12,0 – 30,0) mg/kg Gravimetric method | PN-EN 12662-1:2024-11 | ||
| 22 | Liquid fuels: FAME | Water content Range: (0,0030 – 0,0200) % (m/m) Coulometric titration method | PN-EN ISO 12937:2005 | ||
| 23 | Liquid fuels: FAME | Density at 15 ºC Range: (860,0 – 900,0) kg/m3 Oscillation method | PN-EN ISO 12185:2024-08 | ||
| 24 | Liquid fuels: FAME | Content of esters and linolenic acid methyl ester Range: total esters (90,0 – 100,0) %(m/m) linolenic acid methyl ester (3,0 – 10,0) %(m/m) Gas chromatography method with flame ionization detection (GC-FID) | PN-EN 14103:2020-06 | ||
| 25 | Liquid fuels: - light heating oil, heavy heating oil Lubricants: - base oils, industrial lubricating oils | Density at 15 ºC Range: (800,0 – 1100,0) kg/m3 Oscillating method | PN-EN ISO 12185:2024-08 | ||
| 26 | Liquid fuels: - light fuel oil | Flash point Range: (45,0 – 95,0) ºC Pensky-Martens closed cup method | PN-EN ISO 2719:2016-08+A1:2021- 06 procedura A | ||
| 27 | Liquid fuels: - light fuel oil | Sulphur content Range: (3,0 – 15,0) mg/kg Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | ||
| 28 | Liquid fuels: - light fuel oil | Water content Range: (30 – 200) mg/kg Range: (0,0030 – 0,0200) % (m/m) Coulometric titration method | PN-EN ISO 12937:2005 | ||
| 29 | Liquid fuels: - motor gasoline | Distillation characteristics at atmospheric pressure Range: (20,0 – 210,0) ºC Distillation method | PN-EN ISO 3405:2019-05 | ||
| 30 | Liquid fuels: - motor gasoline | Air saturated vapour pressure Range: (30,0 – 105,0) kPa Mini Reid method | PN-EN 13016-1:2024-11 | ||
| 31 | Liquid fuels: - motor gasoline | Volatility index VLI (calculated) | PN-EN 228:2017-06 Tablica NA1 | ||
| 32 | Liquid fuels: - motor gasoline | Density at 15 ºC Range: (720,0 – 775,0) kg/m3 Oscillation method | PN-EN ISO 12185:2024-08 | ||
| 33 | Liquid fuels: - motor gasoline | Sulphur content Range: (3,0 – 10,0) mg/kg Ultraviolet fluorescence method | PN-EN ISO 20846:2020-03 | ||
| 34 | Gaseous fuels: - liquefied petroleum gases, LPG | Presence of hydrogen sulfide Visual method | PN-EN ISO 8819:2000 | ||
| 35 | Gaseous fuels: - liquefied petroleum gases, LPG | Presence of water Visual method | PN-EN 15469:2009 PN-C-96008:1998 p. 4.4.5 | ||
| 36 | Gaseous fuels: - liquefied petroleum gases, LPG | Sulfur content Range: (1,0 – 50) mg/kg Ultraviolet fluorescence method | ASTM D 6667-21 | ||
| 37 | Gaseous fuels: - liquefied petroleum gases, LPG | Corrosive action on copper Range: corrosion class (1 – 4) Visual method | PN-EN ISO 6251:2001 | ||
| 38 | Gaseous fuels: - liquefied petroleum gases, LPG | Mineral oil content Range: (0,0002 – 0,0100) % (m/m) Gravimetric method | PN-C-96008:1998 p. 4.4.4 | ||
| 39 | Gaseous fuels: - liquefied petroleum gases, LPG | Hydrocarbon composition Range: (0,1 – 100,0) %(m/m) Gas chromatography with flame ionization detection (GC-FID) | PN-EN 27941:2015-12 DIN 51619:2004-02 | ||
| 40 | Gaseous fuels: - liquefied petroleum gases, LPG | Total diene content Range: (0,01 – 1,00) % (m/m) Gas chromatography with flame ionisation detection method (GC-FID) | PN-EN 27941:2015-12 | ||
| 41 | Gaseous fuels: - liquefied petroleum gases, LPG | 1,3 butadiene content Range: (0,01 – 1,00) % (m/m) Gas chromatography with flame ionisation detection (GC-FID) | DIN 51619:2004-02 | ||
| 42 | Gaseous fuels: - liquefied petroleum gases, LPG | Odour Organoleptic method | PN-EN 589:2024-08 zał. A PN-C-96008:1998 p.4.4.7 | ||
| 43 | Gaseous fuels: - liquefied petroleum gases, LPG | Motor octane number MON (calculated) | PN-EN 589:2024-08 zał. B | ||
| 44 | Gaseous fuels: - liquefied petroleum gases, LPG | Density at a temperature of 15 ºC (calculated) | PN-EN ISO 8973:2000+A1:2020-10 | ||
| 45 | Gaseous fuels: - liquefied petroleum gases, LPG | Density at a temperature of 15,6 ºC (calculated) | PN-C-96008:1998 p. 4.4.9 | ||
| 46 | Gaseous fuels: - liquefied petroleum gases, LPG | Vapour pressure at -15 ºC (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 47 | Gaseous fuels: - liquefied petroleum gases, LPG | Relative vapour pressure estimated at 20 ºC (calculated) | PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589:2024-08 zał. C | ||
| 48 | Gaseous fuels: - liquefied petroleum gases, LPG | Absolute vapour pressure at temperatures 40 ºC, 70 ºC (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 49 | Gaseous fuels: - liquefied petroleum gases, LPG | Vapour pressure estimated at temperatures: -10 ºC, -5 ºC, 0 ºC, 10 ºC, 37,8 ºC, 40 ºC, 50 ºC, 70 ºC (calculated) | PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589:2024-08 zał. C | ||
| 50 | Gaseous fuels: - liquefied petroleum gases, LPG | Net calorific value (calculated) | PN-C-96008:1998 p. 4.4.8 | ||
| 51 | 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+A1:2022-07 zał. C | ||
| 52 | Gaseous fuels: - liquefied petroleum gases, LPG | Temperature at which the estimated relative vapour pressure is not less than 200 kPa (calculated) | PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589:2024-08 zał. C | ||
| 53 | Gaseous fuels: - liquefied petroleum gases, LPG | Soluble residue content Range: (20 – 100) mg/kg Gas chromatography with flame ionisation detection (GC-FID) | PN-EN 15470:2017-08 | ||
| 54 | Gaseous fuels: - propylene | Hydrocarbon composition Range: (0,0001 – 100,0000) % (m/m) Gas chromatography with flame ionization detection (GC-FID) | PN-EN 27941:2015-12 | ||
| 55 | Gaseous fuels: - propylene | Sulphur content Range: (1,0 – 10) mg/kg Ultraviolet fluorescence method | ASTM D 6667-21 | ||
| 56 | Oilseeds (rapeseed) | Moisture and volatile matter content Range: (5,0 – 15,0) % Gravimetric method | PN-EN ISO 665:2020-09 | ||
| 57 | Oilseeds (rapeseed) | Content of oily and non-oily impurities Range: (0,5 – 5,0) % Gravimetric method | PN-EN ISO 658:2004 | ||
| 58 | Wheat grains | Moisture content Range: (7,00 – 20,00) % Gravimetric method | PN-EN ISO 712:2012 | ||
| 59 | Wheat grains | Nitrogen content Range: (1,2 – 2,6) % d.m. Titrimetric method (Kjeldahl) Protein content (calculated) | PN-EN ISO 20483:2014-02 | ||
| 60 | Wheat grains | Bulk density in the poured state Range: (67,5 - 84,5) kg/hl Volumetric-gravimetric method | PN-EN ISO 7971-3:2019-03 | ||
| 61 | Wheat grains | Falling number Range: (200 – 450) s Viscometric method (Hagberg-Perten) | PN-EN ISO 3093:2010 | ||
| 62 | Wheat grains | Wet gluten content Range: (20 – 35) % Manual washing method, gravimetric | PN-77/A-74041 p. 2.5.2 | ||
| 63 | Wheat grains | Content of impurities: - ergot - broken grains - shrivelled grains - unsound grains - grains damaged by pests - grains of other cereals - organic foreign matter - inorganic foreign matter - harmful and/or toxic seeds, grains affected by bunt and ergot Range: (0,001 – 15,0) % Gravimetric method | PN-R-74015:1994 | ||
| 64 | Wheat grains | Testing of grain odour Simple descriptive test method | PN-R-74013:2012 | ||
| 65 | Wheat grains | Grain moisture content Hand squeeze method | |||
| 66 | Wheat grains | Grain purity Visual method | |||
| 67 | Wheat grains | Presence of pests and contaminants Visual method | |||
| 68 | Wheat grains | Grain colour Visual method | |||
| 69 | Maize grains | Moisture content Range: (7,0 – 35,0) % Gravimetric method | PN-EN ISO 6540:2021-08 | ||
| 70 | Wheat grains Maize grains | Presence of pests Range: (1 – 3) degree of infestation Macroscopic method | PN-69/R-74016 | ||
| 71 | Wheat grains Maize grains | Content of usable impurities Range: (0,5 – 10,0) % Gravimetric method | |||
| 72 | Wheat grains Maize grains | Content of non-usable impurities Range: (0,5 – 2,5) % Gravimetric method | |||
| 73 | Wheat grains Maize grains | Content of pesticide residues Range: Aldrin (0,010 – 0,200) mg/kg Azoxystrobin (0,020 – 0,400) mg/kg Bifenthrin (0,010 – 0,200) mg/kg Biphenyl (0,010 – 0,200) mg/kg Boscalid (0,010 – 0,200) mg/kg Bupirimate (0,010 – 0,200) mg/kg Buprofezin (0,010 – 0,200) mg/kg Chlorfenapyr (0,010 – 0,200) mg/kg Chlorpyrifos (0,010 – 0,200) mg/kg Chlorpyrifos-methyl (0,010 – 0,200) mg/kg Chlorpropham (0,010 – 0,200) mg/kg Cyanazine (0,010 – 0,200 mg/kg Cyfluthrin (0,010 – 0,200 mg/kg Cyhalothrin-lambda (0,005 – 0,200) mg/kg Cypermethrin (0,010 – 0,200) mg/kg Cyprodinil (0,010 – 0,200) mg/kg Deltamethrin (0,010 – 0,200) mg/kg Diazinon (0,010 – 0,200) mg/kg Dieldrin (0,010 – 0,200) mg/kg Difenoconazole-I-II (0,020 – 0,400) mg/kg Dimethoate (0,020 – 0,400) mg/kg Dimethomorph-I (0,010 – 0,200) mg/kg Dimethomorph-II (0,010 – 0,200) mg/kg Diniconazole (0,020 – 0,400) mg/kg Endosulfan-alpha (0,010 – 0,200) mg/kg Endosulfan-beta (0,010 – 0,200 mg/kg Ethion (0,010 – 0,200) mg/kg Etofenprox (0,010 – 0,200) mg/kg Etoxazole (0,010 – 0,200) mg/kg Gas chromatography with tandem mass spectrometry detection (GC-MS/MS) method | PWL-28 wydanie 1 z 02.01.2025 r. | ||
| 74 | Wheat grains Maize grains | Content of pesticide residues Range: Fenamidone (0,010 – 0,200) mg/kg Fenamiphos (0,020 – 0,400) mg/kg Fenarimol (0,010 – 0,200) mg/kg Fenbuconazole (0,020 – 0,400) mg/kg Fenhexamid (0,020 – 0,400) mg/kg Fenoxycarb (0,020 – 0,400) mg/kg Fenpropathrin (0,010 – 0,200) mg/kg Fenpropidin (0,020 – 0,400) mg/kg Fenpropimorph (0,010 – 0,200) mg/kg Fenvalerate (0,010 – 0,200) mg/kg Fenvalerate-es (0,010 – 0,200) mg/kg Phenylphenol-2 (0,010 – 0,200) mg/kg Fipronil (0,020 – 0,400) mg/kg Flonicamid (0,010 – 0,200) mg/kg Fludioxonil (0,010 – 0,200) mg/kg Fluopyram (0,010 – 0,200) mg/kg Flutriafol (0,010 – 0,200) mg/kg Fluvalinate-tau (0,010 – 0,200) mg/kg Phosmet (0,010 – 0,200) mg/kg Phthalimide (0,010 – 0,200) mg/kg Hexaconazole (0,010 – 0,200) mg/kg Imazalil (0,020 – 0,400) mg/kg Indoxacarb (0,010 – 0,400) mg/kg Isocarbophos (0,010 – 0,200) mg/kg Isoprothiolane (0,010 – 0,200) mg/kg Kresoxim-methyl (0,010 – 0,200) mg/kg Linuron (0,010 – 0,200) mg/kg Metalaxyl (0,010 – 0,200) mg/kg Methamidophos (0,020 – 0,400) mg/kg Metrafenone (0,020 – 0,400) mg/kg Methidathion (0,010 – 0,200) mg/kg Monocrotophos (0,020 – 0,400) mg/kg Omethoate (0,020 – 0,200) mg/kg Parathion (0,010 – 0,200) mg/kg Permethrin-I (0,010 – 0,200) mg/kg Permethrin-II (0,010 – 0,200) mg/kg Pyridaben (0,010 – 0,200) mg/kg Pirydalyl (0,020 – 0,400) mg/kg Pyrimethanil (0,010 – 0,200) mg/kg Proquinazid (0,005 – 0,200) mg/kg Procymidone (0,010 – 0,200) mg/kg Profenofos (0,010 – 0,200) mg/kg Pronamide (0,010 – 0,200) mg/kg Propargite (0,020 – 0,400) mg/kg Propiconazole-I (0,010 – 0,400) mg/kg Propiconazole-II (0,010 – 0,400) mg/kg Prosulfocarb (0,010 – 0,200) mg/kg Pyraclostrobin (0,020 – 0,400) mg/kg Quinoxyfen (0,010 – 0,200) mg/kg Spiroxamine-I (0,010 – 0,200) mg/kg Spiroxamine-II (0,010 – 0,200) mg/kg Spiromesifen (0,010 – 0,200) mg/kg Gas chromatography with tandem mass spectrometry detection (GC-MS/MS) method | PWL-28 wydanie 1 z 02.01.2025 r. | ||
| 75 | Wheat grains Maize grains | Content of pesticide residues Range: Tebufenpyrad (0,020 – 0,400) mg/kg Tefluthrin (0,010 – 0,200) mg/kg Terbuthylazine (0,010 – 0,200) mg/kg Tetradifon (0,020 – 0,400) mg/kg Tetraconazole (0,010 – 0,200) mg/kg Tolclofos-methyl (0,010 – 0,200) mg/kg Triadimefon (0,020 – 0,200) mg/kg Triadimenol (0,020 – 0,400) mg/kg Triazophos (0,010 – 0,200) mg/kg Tricyclazole (0,020 – 0,400) mg/kg Trifloxystrobin (0,010 – 0,200) mg/kg Triflumizole (0,010 – 0,200) mg/kg Vinclozolin (0,010 – 0,200) mg/kg Zoxamide (0,020 – 0,400) mg/kg Gas chromatography with tandem mass spectrometry detection (GC-MS/MS) method | PWL-28 wydanie 1 z 02.01.2025 r. | ||
| 76 | Wheat grains Maize grains | Content of pesticide residues Range: Acephate (0,010 – 0,200) mg/kg Acetamiprid (0,010 – 0,200) mg/kg Aldicarb (0,010 – 0,200) mg/kg Ametoctradin (0,010 – 0,200) mg/kg Azoxystrobin (0,010 – 0,200) mg/kg Chlorantraniliprole (0,010 – 0,200) mg/kg Cyantraniliprole (0,005 – 0,100) mg/kg Cyazofamid (0,010 – 0,200) mg/kg Cymoxanil (0,010 – 0,200) mg/kg Cyproconazole (0,010 – 0,200) mg/kg Difenoconazole (0,010 – 0,200) mg/kg Diflubenzuron (0,010 – 0,200) mg/kg Dimethoate (0,010 – 0,200) mg/kg Emamectin benzoate (0,010 – 0,200) mg/kg Epoxiconazole (0,010 – 0,200) mg/kg Ethirimol (0,010 – 0,200) mg/kg Fenamiphos (0,010 – 0,200) mg/kg Fenbuconazole (0,010 – 0,200) mg/kg Fenhexamid (0,010 – 0,200) mg/kg Fenoxycarb (0,010 – 0,200) mg/kg Fenpropidin (0,010 – 0,200) mg/kg Fipronil (0,010 – 0,200) mg/kg Flubendiamide (0,010 – 0,200) mg/kg Flufenoxuron (0,010 – 0,200) mg/kg Fluopicolide (0,010 – 0,200) mg/kg FLUPYRADIFURONE (0,010 – 0,200) mg/kg Fluquinconazole (0,010 – 0,200) mg/kg Flusilazole (0,010 – 0,200) mg/kg Fluxapyroxad (0,010 – 0,200) mg/kg Fosthiazate (0,010 – 0,200) mg/kg Liquid chromatography with tandem mass spectrometry detection (LC-MS/MS) method | PWL-29 wydanie 1 z 02.01.2025 r. | ||
| 77 | Wheat grains Maize grains | Content of pesticide residues Range: Hexythiazox (0,010 – 0,200) mg/kg Imazalil (0,010 – 0,200) mg/kg Imidacloprid (0,010 – 0,200) mg/kg Indoxacarb (0,010 – 0,200) mg/kg Iprovalicarb (0,010 – 0,200) mg/kg Carbaryl (0,010 – 0,200) mg/kg Carbendazim (0,010 – 0,100) mg/kg Carbofuran (0,010 – 0,100) mg/kg Lufenuron (0,010 – 0,200) mg/kg Mandipropamid (0,010 – 0,100) mg/kg Mepanipyrim (0,010 – 0,200) mg/kg Metaflumizone (0,005 – 0,200) mg/kg Methamidophos (0,010 – 0,200) mg/kg Methoxyfenozide (0,010 – 0,100) mg/kg Methomyl (0,010 – 0,200) mg/kg Metrafenone (0,010 – 0,200) mg/kg Monocrotophos (0,010 – 0,200) mg/kg Oxadixyl (0,010 – 0,200) mg/kg Oxamyl (0,010-0,200) mg/kg Oxydemeton-methyl (0,010 – 0,200) mg/kg Paclobutrazol (0,010 – 0,200) mg/kg Pencycuron (0,010 – 0,200) mg/kg Pendimethalin (0,010 – 0,200) mg/kg Pirimicarb (0,010 – 0,200) mg/kg Prochloraz (0,010 – 0,200) mg/kg Propargite (0,010 – 0,200) mg/kg Propiconazole (0,010 – 0,040) mg/kg Pyraclostrobin (0,010 – 0,060) mg/kg Pyridaly (0,010 – 0,040) mg/kg Spinetoram J (0,010 – 0,100) mg/kg _ Spinetoram L (0,010 – 0,200) mg/kg _ Spinosyn A (Spinosad) (0,010 – 0,200) mg/kg Spinosyn D (Spinosad) (0,010 – 0,200) mg/kg Spirodiclofen (0,010 – 0,200) mg/kg Spirotetramat (0,010 – 0,200) mg/kg Sulfoxaflor (0,010 – 0,200) mg/kg Tebufenozide (0,010 – 0,200) mg/kg Tebufenpyrad (0,010 – 0,200) mg/kg Tebuconazole (0,010 – 0,100) mg/kg Teflubenzuron (0,010 – 0,100) mg/kg Thiabendazole (0,010 – 0,200) mg/kg Thiacloprid (0,010 – 0,200) mg/kg Thiamethoxam (0,010 – 0,200) mg/kg Thiodicarb (0,010 – 0,200) mg/kg Thiophanate-methyl (0,010 – 0,200) mg/kg Triadimefon (0,010 – 0,200) mg/kg Triadimenol (0,010 – 0,100) mg/kg Tricyclazole (0,010 – 0,100) mg/kg Triflumuron (0,010 – 0,200) mg/kg Zoxamide (0,010 – 0,200) mg/kg Liquid chromatography with tandem mass spectrometry detection (LC-MS/MS) method | PWL-29 wydanie 1 z 02.01.2025 r. | ||
| 78 | Wheat grains Maize grains | Mycotoxin content Range: Aflatoxin B1 (0,4 – 2,0) µg/kg Aflatoxin B2 (0,4 – 2,0) µg/kg Aflatoxin G1 (0,4 – 2,0) µg/kg Aflatoxin G2 (0,4 – 2,0) µg/kg DON (187,5 – 1000) µg/kg ZEN (18,75 – 75) µg/kg HT-2 (6,25 – 25) µg/kg T-2 (6,25 – 25) µg/kg Liquid chromatography method with tandem mass spectrometry detection (LC-MS/MS) Sum of aflatoxins B1, B2, G1, G2 (calculated) | PWL-30 wydanie 1 z 02.01.2025 r. | ||
| 79 | Agricultural products: oilseeds (rapeseed) | Content of usable and non-usable impurities Range: (0,1 – 5,0) % (m/m) Gravimetric method | PN-R-66160:1991 | ||
| 80 | Agricultural products: oilseeds (rapeseed) | Presence of pests Range: from 1 pc/kg Macroscopic method | |||
| 81 | Agricultural products: oilseeds (rapeseed) | Grain colour Visual method | PN-R-66149:1997 | ||
| 82 | Agricultural products: oilseeds (rapeseed) | Testing of grain odour Simple descriptive test method | |||
| 83 | Agricultural products: - oilseeds - vegetable oils | Percentage share of fatty acids: Lauric acid (C12:0) Myristic acid (C14:0) Palmitic acid (C16:0) Palmitoleic acid (C16:1) Hexadecadienoic acid (C16:2) Margaric acid (C17:0) Heptadecanoic acid (C17:1) Stearic acid (C18:0) Oleic acid (C18:1) Linoleic acid (C18:2) Linolenic acid (C18:3) Arachidic acid (C20:0) Gadoleic acid (C20:1) Behenic acid (C22:0) Lignoceric acid (C24:0) Tetracosanoic acid (C24:1) Range: (0,1 – 90,0) % (m/m) Erucic acid (C22:1) Range: (0,10 – 35,0) % (m/m) Gas chromatography with flame ionization detection (GC-FID) Sum of fatty acids (calculated) | PWL-23 wydanie 1 z 17.09.2024 r. | ||
| 84 | Gaseous fuels - liquefied petroleum gases, LPG | Presence of water Visual method | PN-EN 15469:2009 PN-C-96008:1998 p. 4.4.5 | ||
| 85 | Gaseous fuels - liquefied petroleum gases, LPG | Presence of hydrogen sulfide Visual method | PN-EN ISO 8819:2000 | ||
| 86 | Gaseous fuels - liquefied petroleum gases, LPG | Odour Organoleptic method | PN-EN 589:2024-08 zał. A PN-C-96008:1998 p.4.4.7 | ||
| 87 | Gaseous fuels - liquefied petroleum gases, LPG | Sulfur content Range: (1,0 – 50) mg/kg Ultraviolet fluorescence method | ASTM D 6667-21 | ||
| 88 | Gaseous fuels - liquefied petroleum gases, LPG | Corrosive action on copper Range: corrosion class (1 – 4) Visual method | PN-EN ISO 6251:2001 | ||
| 89 | Gaseous fuels - liquefied petroleum gases, LPG | Mineral oil content Range: (0,0002 - 0,0100) % (m/m) Gravimetric method | PN-C-96008:1998 p. 4.4.4 | ||
| 90 | Gaseous fuels - liquefied petroleum gases, LPG | Hydrocarbon composition Range: (0,1 – 100,0) % (m/m) Gas chromatography with flame ionization detection (GC-FID) | PN-EN 27941:2015-12 DIN 51619:2004-02 | ||
| 91 | Gaseous fuels - liquefied petroleum gases, LPG | Total diene content Range: (0,01 – 1,00) % (m/m) Gas chromatography with flame ionisation detection method (GC-FID) | PN-EN 27941:2015-12 | ||
| 92 | Gaseous fuels - liquefied petroleum gases, LPG | 1,3-butadiene content Range: (0,01 – 1,00) % (m/m) Gas chromatography with flame ionisation detection (GC-FID) | DIN 51619:2004-02 | ||
| 93 | Gaseous fuels - liquefied petroleum gases, LPG | Soluble residue content Range: (20 – 100) mg/kg Gas chromatography with flame ionisation detection (GC-FID) | PN-EN 15470:2017-08 | ||
| 94 | Gaseous fuels - liquefied petroleum gases, LPG | Motor octane number MON (calculated) | PN-EN 589:2024-08 zał. B | ||
| 95 | Gaseous fuels - liquefied petroleum gases, LPG | Density at a temperature of 15 ºC (calculated) | PN-EN ISO 8973:2000+A1:2020-10 | ||
| 96 | Gaseous fuels - liquefied petroleum gases, LPG | Density at a temperature of 15,6 ºC (calculated) | PN-C-96008:1998 p. 4.4.9 | ||
| 97 | Gaseous fuels - liquefied petroleum gases, LPG | Absolute vapour pressure at temperatures 40 ºC, 70 ºC (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 98 | Gaseous fuels - liquefied petroleum gases, LPG | Vapour pressure at -15 ºC (calculated) | PN-C-96008:1998 p. 4.4.10 | ||
| 99 | Gaseous fuels - liquefied petroleum gases, LPG | Relative vapour pressure estimated at 20 ºC (calculated) | PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589:2024-08 zał. C | ||
| 100 | Gaseous fuels - liquefied petroleum gases, LPG | Vapour pressure, estimated at temperatures: -10 ºC, -5 ºC, 0 ºC, 10 ºC, 37,8 ºC, 40 ºC, 50 ºC, 70 ºC (calculated) | PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589:2024-08 zał. C | ||
| 101 | Gaseous fuels - liquefied petroleum gases, LPG | Net calorific value (calculated) | PN-C-96008:1998 p. 4.4.8 | ||
| 102 | 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+A1:2022-07 zał. C | ||
| 103 | Gaseous fuels - liquefied petroleum gases, LPG | Temperature at which the estimated relative vapour pressure is not less than 200 kPa (calculated) | PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589:2024-08 zał. C | ||
Reference standards (54)
ASTM D 1500-12(2017)
ASTM D 6667-21
DIN 51619:2004-02
ISO 2908:1974
PN-69/R-74016
PN-77/A-74041 p. 2.5.2
PN-C-96008:1998 p. 4.4.10
PN-C-96008:1998 p. 4.4.4
PN-C-96008:1998 p. 4.4.8
PN-C-96008:1998 p. 4.4.9
PN-EN 116:2015-09
PN-EN 12662-1:2024-11
PN-EN 13016-1:2024-11
PN-EN 14078:2014-06
PN-EN 14103:2020-06
PN-EN 15469:2009 PN-C-96008:1998 p. 4.4.5
PN-EN 15470:2017-08
PN-EN 228:2017-06 Tablica NA1
PN-EN 27941:2015-12
PN-EN 27941:2015-12 DIN 51619:2004-02
PN-EN 589:2024-08 zał. A PN-C-96008:1998 p.4.4.7
PN-EN 589:2024-08 zał. B
PN-EN ISO 12185:2024-08
PN-EN ISO 12937:2005
PN-EN ISO 20483:2014-02
PN-EN ISO 20846:2020-03
PN-EN ISO 2160:2004
PN-EN ISO 2719:2016-08+A1:2021- 06
PN-EN ISO 2719:2016-08+A1:2021- 06 procedura A
PN-EN ISO 3093:2010
PN-EN ISO 3104:2024-01 Procedura A
PN-EN ISO 3405:2019-05
PN-EN ISO 4264:2018
PN-EN ISO 6251:2001
PN-EN ISO 6540:2021-08
PN-EN ISO 658:2004
PN-EN ISO 665:2020-09
PN-EN ISO 712:2012
PN-EN ISO 7971-3:2019-03
PN-EN ISO 8819:2000
PN-EN ISO 8973:2000+A1:2020-10
PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589+A1:2022-07 zał. C
PN-EN ISO 8973:2000+A1:2020-10 PN-EN 589:2024-08 zał. C
PN-ISO 2207:2011
PN-ISO 3015:2019-06
PN-R-66149:1997
PN-R-66160:1991
PN-R-74013:2012
PN-R-74015:1994
PWL-01 Wydanie IV z dnia 20.02.2019 r.
PWL-23 wydanie 1 z 17.09.2024 r.
PWL-28 wydanie 1 z 02.01.2025 r.
PWL-29 wydanie 1 z 02.01.2025 r.
PWL-30 wydanie 1 z 02.01.2025 r.