🇵🇱 INSTYTUT TECHNOLOGII PALIW I ENERGII PL

PCA AB 081 • Zabrze, Poland • 386 methods

Petrochemistry & fuelsEnvironmentWater & wastewater

INSTYTUT TECHNOLOGII PALIW I ENERGII is a laboratory accredited by PCA under number AB 081 (Zabrze, Poland). Its accreditation scope covers 386 test methods in the following areas: Petrochemistry & fuels, Environment, Water & wastewater. Test objects include: Pellet-fired local space heaters, Residential solid fuel burning appliances - inset appliances, inclu…, Residential solid fuel burning appliances - roomheaters, Residential solid fuel burning appliances - roomheaters, inset appl….

At a glance

  • Accreditation number: PCA AB 081
  • Methods in scope: 386
  • Types of test objects: 32
  • City: Zabrze, Poland
Accreditation number
AB 081
Accreditation body
PCA
Address
ul. Zamkowa 1, 41-803 Zabrze
City
Zabrze, Poland

What this laboratory tests (32)

Accreditation scope — test methods (386)

No. Test object Methodology / Parameters Technique Reference document
Test methods
1 Gaseous fuels: - coke oven gas Content of gaseous components Range: hydrogen (53,00 – 65) % v/v oxygen (0,20 – 2) % v/v nitrogen (1,50 – 10) % v/v carbon monoxide (4,50 – 9) % v/v carbon dioxide (1,50 – 4) % v/v methane (18,00 – 28) % v/v ethane (0,10 – 1,50) % v/v ethylene (1,00 – 4) % v/v propane (0,01 – 0,20) % v/v propylene (0,05 – 0,25) % v/v n-butane (0,01 – 0,10) % v/v Gas chromatography with flame ionization and thermal conductivity detection (GC-FID, GC-TCD) method PN-93/C-96012 Metoda C
2 Gaseous fuels: - coke oven gas Gross calorific value, net calorific value, density based on the composition (calculated) PN-EN ISO 6976:2016-11
3 Solid fuels: - brown coal Total moisture content Range: (1,0 – 70,0) % Gravimetric method PN-G-04511:1980 pkt. 2.3.2
4 Solid fuels: - hard coal - coke from hard coal Processed solid fuels Total moisture content Range: (0,1 – 60,0) % Gravimetric method PN-G-04611:2020-06
5 Solid fuels: - hard coal - coke from hard coal Processed solid fuels Moisture content in the analytical sample Range: (0,1 – 18,0) % Gravimetric method
6 Solid fuels: - hard coal Transient moisture content Range: (1,0 – 60,0) % Gravimetric method
7 Solid fuels: - brown coal Transient moisture content Range: (2,5 – 60,0) % Gravimetric method PN-80/G-04511
8 Solid fuels: - brown coal Moisture content in the analytical sample Range: (5,0 – 18,0) % Gravimetric method
9 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Ash content Range: (0,1 – 50,0) % Gravimetric method PN-80/G-04512+Az1:2002 PN-ISO 1171:2002
10 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Volatile matter content Range: (0,10 – 50,00) % Gravimetric method PN-G-04516:1998 ISO 562:2024-08
11 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Moisture content in the analytical sample Range: (0,1 – 18,0) % Thermogravimetric method (TGA) PN-G-04560:1998
12 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Ash content Range: (0,1 – 50,0) % Thermogravimetric method (TGA)
13 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Gross calorific value Range: (5000 – 40 000) kJ/kg Calorimetric method PN-81/G-04513 PN-ISO 1928:2020-05
14 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Net calorific value (calculated)
15 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels CO 2 emission factor (calculated) Procedura Q/LCA/60/B:2022
16 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Content of total sulphur and sulphur in ash Range: (0,01 – 8,00) % High-temperature combustion method with IR detection PN-G-04584:2001
17 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Content of ash and combustible sulphur (calculated)
18 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Total sulphur content Range: (0,01 – 4,00) % High-temperature combustion method with IR detection ISO 19579:2006
19 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Content of carbon and hydrogen Range: carbon (20,0 – 100) % hydrogen (0,01 – 8,00) % High-temperature combustion method with IR detection PN-G-04571:1998 ISO 29541:2025-02
20 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Nitrogen content Range: (0,05 – 2,00) % High-temperature combustion method with TC detection
21 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Chlorine content Range: (0,009 – 1,500) % Potentiometric titration method PN-G-04534:2024-01
22 Solid fuels: - hard coal - lignite - coke from hard coal Processed solid fuels Characteristic fusibility temperatures of ash Range: (815 – 1650) oC High-temperature method with image observation PN-ISO 540:2001 (ISO 540:1995 IDT)
23 Solid fuels: - hard coal - brown coal - coke from hard coal Content of elements in ash expressed as oxides Range: SiO (0,46 – 62,00) % 2 Al O (0,16 – 33,00) % 2 3 Fe O (0,03 – 20,00) % 2 3 CaO (0,36 – 36,00) % MgO (0,09 – 11,00) % Na O (0,05 – 6,50) % 2 K O (0,03 – 3,00) % 2 P O (0,01 – 2,90) % 2 5 SO (0,08 – 18,90) % 3 Mn O (0,01 – 1,70) % 3 4 TiO (0,01 – 2,50) % 2 BaO (0,01 – 1,40) % SrO (0,01 – 1,50) % Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/55/B:2022
24 Solid fuels: - hard coal - brown coal - coke from hard coal Content of elements in fuel (calculated)
25 Solid fuels: - hard coal Moisture content in the analytical sample Range: (0,01 – 18,0) % Gravimetric method PN-ISO 11722:2009
26 Solid fuels: - hard coal Total moisture content Range: (0,01 – 60,0) % Gravimetric method PN-ISO 589:2006 Metoda B1
27 Solid fuels: - hard coal Content of fraction with grain size 3,0 – 40,0 mm Range: (0,0 – 100) % Gravimetric method ISO 1953:2015 pkt. 6.2
28 Solid fuels: - hard coal Caking power Range: (0 – 90) Roga method PN-G-04508:2020-05
29 Solid fuels: - hard coal Dilatometric indices Range: a = (10 – 40) % b = (none – 200) % Audibert-Arnu method PN-81/G-04517 ISO 349:2020
30 Solid fuels: - brown coal Total moisture content Range: (5,0 – 60,0) % Gravimetric method ISO 5068-1:2007
31 Solid fuels: - brown coal Moisture content in the analytical sample Range: (2,0 – 23,0) % Gravimetric method ISO 5068-2:2007
32 Solid fuels: - hard coal - brown coal Fluorine content Range: (0,005 – 0,050) % Potentiometric method PN-82/G-04543
33 Solid fuels: - hard coal - brown coal Mercury content Range: (0,010 – 1,000) mg/kg Cold mercury vapour atomic absorption spectrometry (CVAAS) method Procedura Q/LCA/32/B:2022
34 Solid fuels: - hard coal - brown coal Content of trace elements arsenic (0,68– 500) mg/kg cadmium (0,044 – 500) mg/kg cobalt (0,35 – 500) mg/kg chromium (0,18 – 500) mg/kg copper (0,58 – 500) mg/kg manganese (0,074 – 500) mg/kg molybdenum (0,18 – 500) mg/kg nickel (0,39 – 500) mg/kg lead (1,16 – 500) mg/kg antimony (0,86 – 500) mg/kg vanadium (0,60 – 500) mg/kg zinc (0,10 – 500) mg/kg Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/57/B:2022
35 Solid fuels: - coke Moisture content in the analytical sample Range: (0,1 – 5,0) % Gravimetric method PN-ISO 687:2005
36 Solid fuels: - coke Total moisture content Range: (0,1 – 21,0) % Gravimetric method PN-ISO 579:2002
37 Solid fuels: - coke Content of trace elements arsenic (0,40 – 500) mg/kg cadmium (0,13 – 500) mg/kg cobalt (0,48 – 500) mg/kg chromium (0,71– 500) mg/kg copper (1,2 – 500) mg/kg manganese (0,33 – 500) mg/kg molybdenum (0,22 – 500) mg/kg nickel (0,42– 500) mg/kg lead (1,7 – 500) mg/kg antimony (1,1 – 500) mg/kg vanadium (0,35 – 500) mg/kg zinc (1,9 – 500) mg/kg Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/57/B:2022
38 Solid fuels: - solid biomass - solid biofuels Gross calorific value Range: (9 000 – 29 000) kJ/kg Calorimetric method Procedura Q/LCA/12/B:2022 PN-EN ISO 18125:2017-07
39 Solid fuels: - solid biomass - solid biofuels Net calorific value (calculated)
40 Solid fuels: - solid biomass - solid biofuels Total moisture content Range: (0,4 – 80,0) % Gravimetric method PN-EN ISO 18134-2:2017-03 PN-EN ISO 18134-1:2023-02
41 Solid fuels: - solid biomass - solid biofuels Moisture content in the analytical sample Range: (0,4 – 15,0) % Gravimetric method Procedura Q/LCA/05/B:2022 PN-EN ISO 18134-3:2023-12
42 Solid fuels: - solid biomass - solid biofuels Ash content Range: (0,1 – 40,0) % Gravimetric method Procedura Q/LCA/06/B:2022 PN-EN ISO 18122:2023-05
43 Solid fuels: - solid biomass - solid biofuels Volatile matter content Range: (50,00 – 85,00) % Gravimetric method Procedura Q/LCA/07/B:2022 PN-EN ISO 18123:2023-10
44 Solid fuels: - solid biomass - solid biofuels Moisture content in the analytical sample Range: (0,4 – 15,0) % Thermogravimetric method (TGA) Procedura Q/LCA/27/B:2022 PN-EN ISO 18134-3:2023-12
45 Solid fuels: - solid biomass - solid biofuels Ash content Range: (0,1 – 40,0) % Thermogravimetric method (TGA) Procedura Q/LCA/27/B:2022 PN-EN ISO 18122:2023-05
46 Solid fuels: - solid biomass - solid biofuels Total sulphur content Range: (0,02 – 3,00) % High-temperature combustion method with IR detection Procedura Q/LCA/08/B:2022
47 Solid fuels: - solid biomass - solid biofuels Total sulfur content Range: (0,02 – 0,50) % High-temperature combustion method with IR detection PN-EN ISO 16994:2016-10
48 Solid fuels: - solid biomass - solid biofuels Content of carbon and hydrogen Range: carbon (20,0 – 60,0) % hydrogen (2,50 – 8,00) % High-temperature combustion method with IR detection Procedura Q/LCA/09/B:2022 PN-EN ISO 16948:2015-07
49 Solid fuels: - solid biomass - solid biofuels Nitrogen content Range: (0,05 – 10,00) % High-temperature combustion method with TC detection
50 Solid fuels: - solid biomass - solid biofuels Ash sulphur content Range: (0,02 – 7,00) % High-temperature combustion method with IR detection Procedura Q/LCA/10/B:2022
51 Solid fuels: - solid biomass - solid biofuels Combustible sulfur content (calculated)
52 Solid fuels: - solid biomass - solid biofuels Chlorine content Range: (0,009 – 2,500) % Potentiometric titration method Procedura Q/LCA/26/B:2022
53 Solid fuels: - solid biomass - solid biofuels Characteristic fusibility temperatures of ash Range: (550 – 1650) oC High-temperature method with image observation EN ISO 21404:2020-08
54 Solid fuels: - solid biomass - solid biofuels Biomass content – mass fraction Range: (70,0 – 99,9) % Non-biomass content – mass fraction Range: (0,1 – 20,0) % Gravimetric method PN-EN ISO 21644:2021-07 pkt. B7
55 Solid fuels: - solid biomass - solid biofuels Mercury content Range: (0,004 – 0,023) mg/kg Cold mercury vapour atomic absorption spectrometry (CVAAS) method Procedura Q/LCA/53/B:2022
56 Solid fuels: - solid biomass - solid biofuels Mechanical strength Range: (75,0 – 99,5) % Gravimetric method PN-EN ISO 17831-1:2016-02
57 Solid fuels: - solid biomass - solid biofuels Content of elements in ash expressed as oxides Range: SiO (0,46 – 81,00) % 2 Al O (0,16 – 5,00) % 2 3 Fe O (0,03 – 5,50) % 2 3 CaO (0,36 – 46,60) % MgO (0,09 – 12,30) % Na O (0,05 – 5,10) % 2 K O (0,03 – 45,70) % 2 P O (0,01 – 41,60) % 2 5 SO (0,08 – 8,20) % 3 Mn O (0,01 – 2,30) % 3 4 TiO (0,01 – 0,24) % 2 BaO (0,01 – 0,26) % SrO (0,01 – 0,20) % Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/56/B:2022
58 Solid fuels: - solid biomass - solid biofuels Content of elements in biomass (calculated)
59 Solid fuels: - solid biomass - solid biofuels Content of trace elements Range: arsenic (0,67 – 170) mg/kg cadmium (0,028 – 170) mg/kg cobalt (0,058 – 170) mg/kg chromium (0,087 – 170) mg/kg copper (0,23 – 170) mg/kg manganese (0,67 – 170) mg/kg molybdenum (0,17 – 170) mg/kg nickel (0,18 – 170) mg/kg lead (1,7 – 170) mg/kg vanadium (0,11 – 170) mg/kg zinc (4,5 – 170) mg/kg antimony (0,39 – 170) mg/kg Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/58/B:2022
60 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Total moisture content Range: (0,4 – 80,0) % Gravimetric method EN/TS 15414-1:2010
61 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Moisture content in the analytical sample Range: (0,4 – 15,0) % Gravimetric method PN-EN ISO 21660-3:2021-08
62 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Ash content Range: (0,1 – 60,0) % Gravimetric method PN-EN ISO 21656:2021-08
63 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Volatile matter content Range: (50,00 – 90,00) % Gravimetric method PN-EN ISO 22167:2021-08
64 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Total sulphur content Range: (0,01 – 8,00) % High-temperature combustion method with IR detection PN-EN 15408:2011
65 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Content of carbon and hydrogen Range: carbon (10,0 – 70,0) % hydrogen (1,50 – 10,00) % High-temperature combustion method with IR detection PN-EN ISO 21663:2021-06
66 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Nitrogen content Range: (0,05 – 10,00) % High-temperature combustion method with TC detection
67 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Gross calorific value Range: (5 000 – 40 000) kJ/kg Calorimetric method PN-EN ISO 21654-2021-12
68 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Net calorific value (calculated)
69 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Chlorine content Range: (0,009 – 7,200) % Potentiometric titration method Procedura Q/LCA/24/B:2022
70 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Ash content Range: (0,1 – 60,0) % Thermogravimetric method (TGA) PN-EN ISO 21656:2021-08
71 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Moisture content in the analytical sample Range: (0,4 – 16,0) % Thermogravimetric method (TGA) PN-EN ISO 21660-3:2021-08
72 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Characteristic fusibility temperatures of ash Range: (550 – 1650) 0C High-temperature method with image observation EN/TR 15404:2010
73 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Biomass content – mass fraction Range: (10,0 – 99,9) % Non-biomass content – mass fraction Range: (0,1 – 90,0) % Gravimetric method PN-EN ISO 21644:2021-07 pkt. B7
74 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Content of elements in ash expressed as oxides Range: SiO2 (0,46 – 55,20) % Al2O3 (0,16 – 47,60) % Fe2O3 (0,03 – 46,60) % CaO (0,36 – 17,50) % MgO (0,09 – 20,70) % Na2O (0,05 – 16,90) % K2O (0,03 – 15,00) % P2O5 (0,01 – 30,70) % SO3 (0,08 – 34,10) % Mn3O4 (0,01 – 1,70) % TiO2 (0,01 – 2,20) % BaO (0,01 – 1,40) % SrO (0,05 – 1,50) % Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/65/B:2022
75 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Content of elements in solid recovered fuels, waste (calculated)
76 Solid fuels: - solid recovered fuels Waste, code: O) 02 01 01, 02 01 03, 02 01 04, 02 01 07, 02 01 83, 02 02 04, 02 03 80, 02 03 81, 02 04 80, 02 05 02, 02 06 03, 02 07 05, 02 07 80, 03 01 01, 03 01 05, 03 01 82, 03 03 02, 03 03 07, 03 03 08, 03 03 11, 04 02 09, 04 02 20, 04 02 21, 04 02 22, 07 02 12, 07 02 13, 07 02 80, 15 01 01, 15 01 02, 15 01 03, 15 01 05, 15 01 06, 15 01 09, 16 01 03, 16 01 19, 17 02 01, 17 02 03, 19 08 05, 19 08 12, 19 12 01, 19 12 04, 19 12 08, 19 12 10, 20 01 01, 20 01 10, 20 01 11, 20 01 38, 20 01 39, 20 03 01 Mercury content Range: (0,015 – 4,50) mg/kg Cold mercury vapour atomic absorption spectrometry (CVAAS) method Procedura Q/LCA/54/B:2022
77 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Total carbon content Range: (0,1 – 50,0) % High-temperature combustion method with IR detection Procedura Q/LCA/16/B:2022
78 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Moisture content in the analytical sample Range: (0,1 – 10,0) % Gravimetric method PN-G-04611:2020-06 pkt. 4.3.2
79 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Moisture content in the analytical sample Range: (0,1 – 10,0) % Thermogravimetric method (TGA) PN-G-04560:1998
80 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Mercury content Range: (0,005 – 1,000) mg/kg Cold mercury vapour atomic absorption spectrometry (CVAAS) method Procedura Q/LCA/33/B:2022
81 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Content of elements in the residue after ignition expressed as oxides Range: SiO (0,46 – 89,00) % 2 Al O (0,16 – 47,50) % 2 3 Fe O (0,03 – 33,00) % 2 3 CaO (0,36 – 40,00) % MgO (0,09 – 20,70) % Na O (0,05 – 16,90) % 2 K O (0,03 – 18,00) % 2 P O (0,01 – 5,00) % 2 5 SO (0,08 – 10,00) % 3 Mn O (0,01 – 1,70) % 3 4 TiO (0,01 – 16,50) % 2 BaO (0,01 – 1,40) % SrO (0,01 – 1,50) % Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/62/B:2022
82 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Content of elements in combustion waste (calculated)
83 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Content of trace elements arsenic (1,7 – 1000) mg/kg cadmium (0,27 – 1000) mg/kg cobalt (0,14 – 1000) mg/kg chromium (0,74 – 1000) mg/kg copper (0,54 – 1000) mg/kg manganese (3,2 – 1000) mg/kg molybdenum (0,98 – 1000) mg/kg nickel (2,7 – 1000) mg/kg lead (5,4 – 1000) mg/kg antimony (2,0– 1000) mg/kg vanadium (0,64 – 1000) mg/kg zinc (1,0 – 1000) mg/kg Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/63/B:2022
84 Furnace waste, code: O) 10 01 01, 10 01 02, 10 01 03, 10 01 05, 10 01 07, 10 01 15, 10 01 17, 10 01 23, 10 01 80, 10 01 81, 10 01 82, 10 01 99 19 01 12, 19 01 14, 19 01 16, 19 01 19, 19 01 99 Loss on ignition Range: (1,5 – 80,0) % Gravimetric method Procedura Q/LCA/44/B:2022
85 Furnace waste, code: ex 20 01 99 (ashes from households) Loss on ignition Range: (3,0 – 90,0) % Gravimetric method Procedura Q/LCA/44/B:2022
86 Furnace waste, code: ex 20 01 99 (ashes from households) Moisture content in the analytical sample Range: (0,1 – 5,0) % Gravimetric method PN-G-04611:2020-06 pkt. 4.3.2
87 Furnace waste, code: ex 20 01 99 (ashes from households) Moisture content in the analytical sample Range: (0,10 – 5,00) % Thermogravimetric method (TGA) PN-G-04560:1998
88 Furnace waste, code: ex 20 01 99 (ashes from households) Total moisture content Range: (0,1 – 18,0) % Gravimetric method PN-G-04611:2020-06 pkt.4.4.5
89 Furnace waste, code: ex 20 01 99 (ashes from households) Ash content Range: (35,0 – 90,0) % Gravimetric method PN-G-04512:1980/Az1:2002
90 Furnace waste, code: ex 20 01 99 (ashes from households) Ash content Range: (35,00 – 90,00) % Thermogravimetric method (TGA) PN-G-04560:1998
91 Furnace waste, code: ex 20 01 99 (ashes from households) Content of elements expressed as oxides in the residue after ignition Range: SiO (4,00 – 60,00) % 2 Al O (1,30 – 35,00) % 2 3 Fe O (0,30 – 45,00) % 2 3 CaO (3,60 – 55,00) % MgO (1,00 – 20,70) % Na O (0,05 – 16,90) % 2 K O (0,30 – 20,00) % 2 P O (0,10 – 27,00) % 2 5 SO (0,08 – 10,00) % 3 Mn O (0,01 – 5,10) % 3 4 TiO (0,01 – 27,00) % 2 BaO (0,10 – 1,50) % SrO (0,05 – 1,00) % Inductively coupled plasma atomic emission spectrometry (ICP-OES) method Procedura Q/LCA/62/B:2022
92 Furnace waste, code: ex 20 01 99 (ashes from households) Element content in waste (calculated)
93 Mechanical and automatic devices for sampling hard coal Accuracy of sampling, sample preparation and analysis PN-G-04502:2014-11 pkt.10 | PN-ISO 13909-7:2005
94 Mechanical and automatic devices for sampling hard coal Load on the sampling system PN-ISO 13909-8:2005
95 Mechanical and automatic devices for sampling solid biomass Accuracy of sampling, sample preparation and analysis PN-EN ISO 18135:2017-06 pkt 8
96 Mechanical and automatic devices for sampling solid biomass Load on the sampling system PN-ISO 13909-8:2005
97 Activated carbons Fraction content Range: (0,0 – 100) % Gravimetric method PN-88/C-97555/01
98 Activated carbons Methylene number Range: (1 – 50) cm3 Visual method PN-82/C-97555/03
99 Activated carbons Iodine adsorption number Range: (10 – 1450) mg/g Titrimetric method PN-83/C-97555/04
100 Activated carbons Ash content Range: (0,1 – 30) % Gravimetric method PN-84/C-97555/08
101 Activated carbons Water content Range: (0,1 – 40) % Gravimetric method PN-84/C-97555/09
102 Activated carbons Mechanical strength Range: (0,1 – 99,9) % Gravimetric method PN-90/C-97554 pkt. 5.4.5. PN-EN 12915-1:2009 p.8.2.4
103 Activated carbons Bulk density Range: (100 – 1000) g/dcm3 Gravimetric method PN-90/C-97554 pkt. 5.4.2. PN-EN 12915-1:2009 p. 8.2.3
104 Activated carbons Ash content Range: (0,1 – 30) % Gravimetric method PN-EN 12902:2005 pkt. 6.2
105 Activated carbons Water content Range: (0,1 – 40) % Gravimetric method PN-EN 12902:2005 pkt. 6.5
106 Activated carbons Iodine number Range: (600 – 1450) mg/g Titrimetric method PN-EN 12902:2005 pkt. 6.10
107 Solid fuels: - hard coal - lignite - coke Sampling for chemical and physical testing PN-G-04502:2014-11 pkt. 5.3.1.2. | PN-C-06301:1998
108 Furnace waste, code: ex 20 01 99 (ashes from households) Sampling for chemical and physical testing PN-EN 14899:2005
109 Heating boilers for solid fuels Condensate sampling for chemical testing PN-EN 303-5:2021-09 PN-EN 303-5+A1:2023-05
110 Energy equipment fired with solid fuels Energy efficiency (calculated) Procedura Q/LS/01/H:2023
111 Waste gases from heating appliances Sampling for determinations of dust, organic contaminants, PAH Procedura Q/LS/02/H:2023
112 Waste gases from heating appliances Dust concentration Range: (1,7 – 3750) mg/m3 Gravimetric method
113 Waste gases from heating appliances Concentration of organic pollutants Range: (1,7 – 3750) mg/m3 (calculated)
114 Waste gases from heating appliances PAH concentration (naphthalene, acenaphthene, acenaphthylene, fluorene, phenanthrene, anthracene, fluoranthene, pyrene, benzo(a)anthracene, chrysene, benzo(b+k)fluoranthene, benzo(e)pyrene, benzo(a)pyrene, perylene, dibenzo(a,h)anthracene +indeno(1,2,3-cd)pyrene, benzo(g,h,i)perylene). (calculated)
115 Waste gases from the combustion of smokeless solid fuels Sampling for determinations of dust, organic contaminants, B(a)P Procedura Q/LS/07/F:2023
116 Waste gases from the combustion of smokeless solid fuels Dust concentration: Range: (1,7 – 3750) mg/m3 Gravimetric method
117 Waste gases from the combustion of smokeless solid fuels Concentration of organic pollutants: Range: (1,7 – 3750) mg/m3 (calculated)
118 Waste gases from the combustion of smokeless solid fuels B(a)P concentration: Range: (2,5 – 37,5) µg/m3 (calculated)
119 Heating boilers for solid fuels Water temperature Range: (10,0 – 110) oC Resistance method PN-EN 303-5:2021-09 09 p. 5.2; 5.6.2; 5.6.3; 5.7.2 PN-EN 303-5+A1:2023-05 p. 5.2; 5.6.2; 5.6.3; 5.7.2 wskazane w Rozp. Ministra Rozwoju i Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
120 Heating boilers for solid fuels Water mass flow rate Range: (300 – 18300) kg/h (calculated) PN-EN 303-5:2021-09 09 p.5.2 PN-EN 303-5+A1:2023-05 p.5.2 wskazane w Rozp. Ministra Rozwoju i Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
121 Heating boilers for solid fuels Water volume flow rate Range: (0,3 – 18,3) m3/h Electromagnetic method PN-EN 303-5:2021-09 p.5.2 PN-EN 303-5+A1:2023-05 p.5.2 wskazane w Rozporządzeniu Ministra Rozwoju i Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
122 Heating boilers for solid fuels Fuel mass flow rate Range: (0,5 – 300) kg/h (calculated) PN-EN 303-5:2021-09 p. 5.2 | PN-EN 303-5+A1:2023-05 p. 5.2 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
123 Heating boilers for solid fuels Flue gas temperature Range: (50,0 – 300) oC Thermoelectric method PN-EN 303-5:2021-09 p. 5.6.3 PN-EN 303-5+A1:2023-05 p.5.6.3 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
124 Heating boilers for solid fuels Flue gas pressure Range: (-150 – 50,0) Pa Piezoresistive method PN-EN 303-5:2021-09 p.5.6.3 PN-EN 303-5+A1:2023-05 p.5.6.3 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
125 Heating boilers for solid fuels Concentration of oxygen, carbon monoxide, sulphur dioxide, carbon dioxide, volatile organic compounds in flue gases Range: - O (1,0 – 21,0) % 2 Paramagnetic method Range: - CO (12,5 – 56125) mg/m3 - SO (25,0 – 1490) mg/m3 2 - CO (2,0 – 18,5) % 2 NDIR method Range: - OGC (1,0 – 410) mg/m3 Continuous flame ionisation detection method (FID) PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
126 Heating boilers for solid fuels Dust concentration in flue gases Range: (0,1 – 3400) mg/m3 Gravimetric method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
127 Heating boilers for solid fuels Concentration of nitrogen monoxide, nitrogen oxides in flue gases Range: - NO (5,0 – 1200) mg/m3 - NO (8,0 – 1500) mg/m3 X Chemiluminescence method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
128 Heating boilers for solid fuels Emission of carbon monoxide, carbon dioxide, volatile organic compounds, nitrogen monoxide, nitrogen oxides, dust in flue gases (calculated) PN-EN 303-5:2021-09 p. 5.9.4 PN-EN 303-5+A1:2023-05 p. 5.9.4 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.)
129 Heating boilers for solid fuels Ambient air temperature at the test site Range: (10,0 – 50,0) oC Resistance method PN-EN 303-5:2021-09 p.5.6.1 | PN-EN 303-5+A1:2023-05 p.5.6.1 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.)
130 Heating boilers for solid fuels Temperature of external surfaces Range: (10,0 – 200) oC Radiation method PN-EN 303-5:2021-09 p.5.11 | PN-EN 303-5+A1:2023-05 p.5.11
131 Heating boilers for solid fuels Active electrical power Range: (0,001 – 0,5) kW Power transducer method PN-EN 303-5:2021-09 p.5.7.7 PN-EN 303-5+A1:2023-05 p.5.7.7 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.) PN-EN 15456:2008
132 Heating boilers for solid fuels Testing of the operation of the temperature controller and of the safety temperature limiter Outlet water temperature Range: (10,0 – 110) oC Resistance method PN-EN 303-5:2021-09 p.5.13 PN-EN 303-5+A1:2023-05 p.5.13
133 Heating boilers for solid fuels Testing of the operation of fast shut-off systems Water temperature Range: (10,0 – 110) oC Resistance method Flue gas pressure Range: (-150 – 50,0) Pa Piezoresistive method Carbon monoxide concentration Range: CO (12,5 – 56125) mg/m3 NDIR method PN-EN 303-5:2021-09 p.5.14 PN-EN 303-5+A1:2023-05 p.5.14
134 Heating boilers for solid fuels Safety testing in the event of loss of air supply Carbon monoxide concentration Range: CO (12,5 – 56125) mg/m3 NDIR method PN-EN 303-5:2021-09 p.5.16.3 PN-EN 303-5+A1:2023-05 p.5.16.3
135 Heating boilers for solid fuels Safety testing with regard to heat conduction External surface temperature Range: (10,0 – 200) oC Radiation method PN-EN 303-5:2021-09 p.5.16.4 PN-EN 303-5+A1:2023-05 p.5.16.4
136 Heating boilers for solid fuels Determination of water flow resistance Range: Water pressure (0,1 – 100,0) mbar Pressure transducer method Range: Water temperature (10,0 – 110) oC Resistance method PN-EN 303-5:2021-09 p.5.10 PN-EN 303-5+A1:2023-05 p.5.10
137 Heating boilers for solid fuels Safety testing of automatic boilers under fuel overfill conditions and with the fuel feed blocked Range: Water temperature (10,0 – 110) oC Resistance method Carbon monoxide concentration Range: CO (12,5 – 56125) mg/m3 NDIR method PN-EN 303-5:2021-09 p.5.16.2 PN-EN 303-5+A1:2023-05 p.5.16.2
138 Heating boilers for solid fuels Useful efficiency GCV (calculated) PN-EN 303-5:2021-09 PN-EN 303-5+A1:2023-05 Rozporządzenie UE 2015/1187 Rozporządzenie UE 2015/1189
139 Heating boilers for solid fuels Seasonal space heating efficiency (calculated)
140 Heating boilers for solid fuels Energy efficiency index EEI (calculated)
141 Heating boilers for solid fuels Seasonal space heating emissions Es (calculated)
142 Solid fuel heating boilers and energy equipment fired with solid fuels Heat input from fuel Range: (3 – 750) kW (calculated) PN-EN 303-5:2021-09 p.5.6.1 | PN-EN 303-5+A1:2023-05 p.5.6.1 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.)
143 Solid fuel heating boilers and energy equipment fired with solid fuels Heat output Range: (3 – 550 ) kW (calculated) PN-EN 303-5:2021-09 p.5.6.1 | PN-EN 303-5+A1:2023-05 p.5.6.1 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.)
144 Solid fuel heating boilers and energy equipment fired with solid fuels Energy efficiency (calculated) PN-EN 303-5:2021-09 p.5.7.6 | PN-EN 303-5+A1:2023-05 p.5.7.6 | eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.)
145 Waste gases Gas volume flow rate for dynamic pressures > 10 Pa Pitot tube method PN-Z-04030-7:1994
146 Waste gases Sampling for determination of dust concentration
147 Waste gases Dust concentration Range: (0,001 – 100) g/m3 Gravimetric method
148 Waste gases Dust emission (calculated)
149 Waste gases Concentration of oxygen, carbon monoxide, nitrogen monoxide, sulphur dioxide, carbon dioxide Range: - O (1,0 – 21,0) % 2 Paramagnetic method - CO (12,5 – 56125) mg/m3 - NO (50,0 – 650) mg/m3 - SO (25,0 – 1490) mg/m3 2 - CO (2,0 – 18,5) % 2 NDIR method PN-ISO 10396:2001
150 Waste gases Emission of CO, NO (calculated as NO ), SO CO 2 2, 2 (calculated)
151 Waste gases Concentration of nitrogen monoxide, nitrogen oxides Range: - NO (5,0 – 1200) mg/m3 - NO (8,0 – 1500) mg/m3 X Chemiluminescence method
152 Waste gases Emission of NO NO (NO calculated , X as NO ), SO CO 2 2, 2 (calculated)
153 Pellet-fired local space heaters Fuel parameters:
154 Pellet-fired local space heaters - fuel mass (0,1 - 50) kg PN-EN 14785:2009 p. A3
155 Pellet-fired local space heaters Flue gas parameters:
156 Pellet-fired local space heaters - temperature (50 – 300) oC PN-EN 14785:2009 p. A2.3.2
157 Pellet-fired local space heaters - pressure (-150 – 50) Pa PN-EN 14785:2009 p. A2.3.4
158 Pellet-fired local space heaters Concentration of oxygen, carbon monoxide and carbon dioxide Range: - O (1,0 – 21,0) % 2 Paramagnetic PMD method - CO (12,5 – 56125) mg/m3 - CO (2,0 – 18,5) % 2 NDIR method PN-EN 14785:2009 p. A2.3.3
159 Pellet-fired local space heaters OGC and sulfur dioxide concentration Range: - OGC (1,0 – 410) mg/m3 Continuous flame ionization detection method (FID) - SO (25,0 - 1490) mg/m3 2 NDIR method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
160 Pellet-fired local space heaters Concentration of nitrogen oxide, nitrogen oxides in flue gases Range: - NO (5,0 – 1200) mg/m3 - NOx (8,0 – 1500) mg/m3 Chemiluminescence method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
161 Pellet-fired local space heaters Dust concentration in flue gases Range: - Dust (0,1 – 3400) mg/m3 Gravimetric method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
162 Pellet-fired local space heaters Emission of carbon monoxide, carbon dioxide, volatile organic compounds, nitrogen monoxide, nitrogen oxides, dust in flue gases (calculated) PN-EN 303-5:2021-09 p.5.9.4 PN-EN 303-5+A1:2023-05 p.5.9.4
163 Pellet-fired local space heaters Air parameters:
164 Pellet-fired local space heaters Air temperature Range: - Temperature (10,0 – 50,0) oC Resistance method PN-EN 14785:2009 p. A1.1
165 Pellet-fired local space heaters Water parameters:
166 Pellet-fired local space heaters Water temperature - Temperature (10,0 – 110) oC Resistance method PN-EN 14785:2009 p. A2.5
167 Pellet-fired local space heaters Water volume flow rate - Volume flow rate (0,3 – 3) m3/h PN-EN 14785:2009 p. A2.5
168 Pellet-fired local space heaters Heat balance (calculated):
169 Pellet-fired local space heaters - heat input from fuel (2 – 100) kW PN-EN 14785:2009 p. A6.2.2 „N”
170 Pellet-fired local space heaters - stack loss (5 – 40) % PN-EN 14785:2009 p. A6.2.1.1 „N”
171 Pellet-fired local space heaters - incomplete combustion losses PN-EN 14785:2009 p. A6.2.1.2 „N”
172 Pellet-fired local space heaters - unburnt combustible losses PN-EN 14785:2009 p. A6.2.1.3 „N”
173 Pellet-fired local space heaters - thermal efficiency (20 – 95) % PN-EN 14785:2009 p. A6.2.1 „N”
174 Pellet-fired local space heaters - total heat output (2 – 50) kW PN-EN 14785:2009 p. A6.2.2 „N”
175 Pellet-fired local space heaters - heat output of the water circuit (2 – 50) kW PN-EN 14785:2009 p. A6.2.3 „N”
176 Pellet-fired local space heaters - heat output to the room (2 – 50) kW PN-EN 14785:2009 p. A6.2.4 „N”
177 Pellet-fired local space heaters - flue gas mass flow rate (5 – 100) g/s PN-EN 14785:2009 p. A6.2.5 „N”
178 Pellet-fired local space heaters - CO content (O =13%) 2 (0,001 – 3) % PN-EN 14785:2009 p. A6.2.6 „N”
179 Pellet-fired local space heaters Technical and operational parameters:
180 Pellet-fired local space heaters - temperature of the measuring corner and the floor (10,0 – 150) oC PN-EN 14785:2009 p. A2.2
181 Pellet-fired local space heaters - temperature of the fuel hopper (10,0 – 200) oC PN-EN 14785:2009 p. A2.2
182 Pellet-fired local space heaters - temperature of the handles (10,0 – 200) oC PN-EN 14785:2009 p. A2.2
183 Pellet-fired local space heaters - leak tightness of the water space (0,05 – 0,5) MPa PN-EN 14785:2009 p. A4.9.2 „N”
184 Pellet-fired local space heaters - thermal discharge safety device water temperature (10,0 – 110) oC - water pressure (0,05 – 0,5) MPa PN-EN 14785:2009 p. A4.9.3 „N”
185 Inset appliances including open fires fired by solid fuels Fuel parameters:
186 Inset appliances including open fires fired by solid fuels - fuel mass (0,1 – 50) kg PN-EN 13229:2002 p. A4.2 „N”
187 Inset appliances including open fires fired by solid fuels Flue gas parameters:
188 Inset appliances including open fires fired by solid fuels - temperature (50 – 300) oC PN-EN 13229:2002 A4.4.3 „N”
189 Inset appliances including open fires fired by solid fuels - pressure (-150 – 50) Pa PN-EN 13229:2002 p. A2.3.4
190 Inset appliances including open fires fired by solid fuels Concentration of oxygen, carbon monoxide and carbon dioxide Range: - O (1,0 – 21,0) % 2 Paramagnetic PMD method - CO (12,5 – 56125) mg/m3 - CO (2,0 – 18,5) % 2 NDIR method PN-EN 13229:2002 p. A4.4.2 „N”
191 Inset appliances including open fires fired by solid fuels OGC and sulfur dioxide concentration Range: - OGC (1,0 – 410) mg/m3 Continuous flame ionization detection method (FID) - SO (25,0 - 1490) mg/m3 2 NDIR method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
192 Inset appliances including open fires fired by solid fuels Concentration of nitrogen oxide, nitrogen oxides in flue gases Range: - NO (5,0 – 1200) mg/m3 - NOx (8,0 – 1500) mg/m3 Chemiluminescence method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
193 Inset appliances including open fires fired by solid fuels Dust concentration in flue gases Range: - Dust (0,1 – 3400) mg/m3 Gravimetric method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
194 Inset appliances including open fires fired by solid fuels Emission of carbon monoxide, carbon dioxide, volatile organic compounds, nitrogen monoxide, nitrogen oxides, dust in flue gases (calculated) PN-EN 303-5:2021-09 p.5.9.4 PN-EN 303-5+A1:2023-05 p.5.9.4
195 Inset appliances including open fires fired by solid fuels Air parameters:
196 Inset appliances including open fires fired by solid fuels Air temperature Range: - Temperature (10,0 – 50,0) oC Resistance method PN-EN 13229:2002 p. A4.4.3 „N”
197 Inset appliances including open fires fired by solid fuels Water parameters:
198 Inset appliances including open fires fired by solid fuels Water temperature - Temperature (10,0 – 110) oC Resistance method PN-EN 13229:2002 p. A4.5.2 „N”
199 Inset appliances including open fires fired by solid fuels Water volume flow rate - Volume flow rate (0,3 – 3) m3/h PN-EN 13229:2002 p. A4.5.2 „N”
200 Inset appliances including open fires fired by solid fuels Heat balance (calculated):
201 Inset appliances including open fires fired by solid fuels - heat input from fuel (2 – 100) kW PN-EN 13229:2002 p. A6.2.2 „N”
202 Inset appliances including open fires fired by solid fuels - stack loss (5 – 40) % PN-EN 13229:2002 p. A6.2.1.1 „N”
203 Inset appliances including open fires fired by solid fuels - incomplete combustion losses PN-EN 13229:2002 p. A6.2.1.2 „N”
204 Inset appliances including open fires fired by solid fuels - unburnt combustible losses PN-EN 13229:2002 p. A6.2.1.3 „N”
205 Inset appliances including open fires fired by solid fuels - thermal efficiency (20 – 95) % PN-EN 13229:2002 p. A6.2.1 „N”
206 Inset appliances including open fires fired by solid fuels - total heat output (2 – 50) kW PN-EN 13229:2002 p. A6.2.2 „N”
207 Inset appliances including open fires fired by solid fuels - heat output of the water circuit (2 – 50) kW PN-EN 13229:2002 p. A6.2.3 „N”
208 Inset appliances including open fires fired by solid fuels - heat output to the room (2 – 50) kW PN-EN 13229:2002 p. A6.2.4 „N”
209 Inset appliances including open fires fired by solid fuels - CO content (O =13%) 2 (0,001 – 3) % PN-EN 13229:2002 p. A6.2.6 „N”
210 Inset appliances including open fires fired by solid fuels Technical and operational parameters:
211 Inset appliances including open fires fired by solid fuels - temperature of the measuring corner and the floor (10,0 – 150) oC PN-EN 13229:2002 p. A4.7
212 Inset appliances including open fires fired by solid fuels - temperature of the fuel hopper (10,0 – 200) oC PN-EN 13229:2002 p. A4.7
213 Inset appliances including open fires fired by solid fuels - temperature of the handles (10,0 – 200) oC PN-EN 13229:2002 p. A4.7
214 Inset appliances including open fires fired by solid fuels - leak tightness of the water space (0,05 – 0,5) MPa PN-EN 13229:2002 p. A4.9.5 „N”
215 Inset appliances including open fires fired by solid fuels - thermal outlet protection water temperature (10,0-110) oC - water pressure (0,05 – 0,5) MPa PN-EN 13229:2002 p. A4.9.6 „N”
216 Solid fuel local space heaters Fuel parameters:
217 Solid fuel local space heaters - fuel mass (0,1 - 50) kg PN-EN 13240:2008 p. A4.2 „N”
218 Solid fuel local space heaters Flue gas parameters:
219 Solid fuel local space heaters - temperature (50 – 300) oC PN-EN 13240:2008 A4.4.3 „N”
220 Solid fuel local space heaters - pressure (-150 – 50) Pa PN-EN 13240:2008 p. A2.3.4
221 Solid fuel local space heaters Concentration of oxygen, carbon monoxide and carbon dioxide Range: - O (1,0 – 21,0) % 2 Paramagnetic PMD method - CO (12,5 – 56125) mg/m3 - CO (2,0 – 18,5) % 2 NDIR method PN-EN 13240:2008 p. A4.4.2 „N”
222 Solid fuel local space heaters OGC and sulfur dioxide concentration Range: - OGC (1,0 – 410) mg/m3 Continuous flame ionization detection method (FID) - SO (25,0 - 1490) mg/m3 2 NDIR method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
223 Solid fuel local space heaters Concentration of nitrogen oxide, nitrogen oxides in flue gases Range: - NO (5,0 – 1200) mg/m3 - NOx (8,0 – 1500) mg/m3 Chemiluminescence method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
224 Solid fuel local space heaters Dust concentration in flue gases Range: - Dust (0,1-3400) mg/m3 Gravimetric method PN-EN 303-5:2021-09 p.5.2 | PN-EN 303-5+A1:2023-05 p.5.2
225 Solid fuel local space heaters Emission of carbon monoxide, carbon dioxide, volatile organic compounds, nitrogen monoxide, nitrogen oxides, dust in flue gases Calculation method PN-EN 303-5:2021 p.5.9.4 PN-EN 303-5+A1:2023-05 p.5.9.4
226 Solid fuel local space heaters Air parameters:
227 Solid fuel local space heaters Air temperature Range: - Temperature (10,0 – 50,0) oC Resistance method PN-EN 13240:2008 p. A4.4.3 „N”
228 Solid fuel local space heaters Water parameters:
229 Solid fuel local space heaters Water temperature - Temperature (10,0 – 110) oC Resistance method PN-EN 13240:2008 p. A4.5.2 „N”
230 Solid fuel local space heaters Water volume flow rate - Volume flow rate (0,3 – 3) m3/h PN-EN 13240:2008 p. A4.5.2 „N”
231 Solid fuel local space heaters Heat balance (calculated):
232 Solid fuel local space heaters - heat input from fuel (2 – 100) kW PN-EN 13240:2008 p. A6.2.2 „N”
233 Solid fuel local space heaters - stack loss (5 – 40) % PN-EN 13240:2008 p. A6.2.1.1 „N”
234 Solid fuel local space heaters - incomplete combustion losses PN-EN 13240:2008 p. A6.2.1.2 „N”
235 Solid fuel local space heaters - unburnt combustible losses PN-EN 13240:2008 p. A6.2.1.3 „N”
236 Solid fuel local space heaters - thermal efficiency (20 – 95) % PN-EN 13240:2008 p. A6.2.1 „N”
237 Solid fuel local space heaters - total heat output (2 – 50) kW PN-EN 13240:2008 p. A6.2.2 „N”
238 Solid fuel local space heaters - heat output of the water circuit (2 – 50) kW PN-EN 13240:2008 p. A6.2.3 „N”
239 Solid fuel local space heaters - heat output to the room (2 – 50) kW PN-EN 13240:2008 p. A6.2.4 „N”
240 Solid fuel local space heaters - CO content (O =13%) 2 (0,001 – 3) % PN-EN 13240:2008 p. A6.2.6 „N”
241 Solid fuel local space heaters Technical and operational parameters:
242 Solid fuel local space heaters - temperature of the measuring corner and the floor (10,0 – 150) oC PN-EN 13240:2008 p. A4.7
243 Solid fuel local space heaters - temperature of the fuel hopper (10,0 – 200) oC PN-EN 13240:2008 p. A4.7
244 Solid fuel local space heaters - temperature of the handles (10,0 – 200) oC PN-EN 13240:2008 p. A4.7
245 Solid fuel local space heaters - leak tightness of the water space (0,05 – 0,5) MPa PN-EN 13240:2008 p. A4.9.4 „N”
246 Solid fuel local space heaters - thermal outlet protection water temperature (10,0-110) oC - water pressure (0,05 – 0,5) MPa PN-EN 13240:2008 p. A4.9.5 „N”
247 Residential solid fuel burning appliances Fuel parameters:
248 Residential solid fuel burning appliances - fuel mass (0,1 - 50) kg PN-EN 16510-1:2018 p. A4.2 PN-EN 16510-1:2023-06 p.A4.2
249 Residential solid fuel burning appliances Flue gas parameters:
250 Residential solid fuel burning appliances - temperature (50 – 300) oC PN-EN 16510-1:2018 A4.4.3 PN-EN 16510-1:2023-06 A4.4.3
251 Residential solid fuel burning appliances - pressure (-150 – 50) Pa PN-EN 16510-1:2018 p. A2.3.4 | PN-EN 16510-1:2023-06 p. A2.3.4
252 Residential solid fuel burning appliances Concentration of oxygen, carbon monoxide and carbon dioxide Range: - O (1,0 – 21,0) % 2 Paramagnetic PMD method - CO (12,5 – 56125) mg/m3 - CO (2,0 – 18,5) % 2 NDIR method PN-EN 16510-1:2018 p. A.4.4.2 | PN-EN 16510-1:2023-06 p. A.4.4.2
253 Residential solid fuel burning appliances OGC and sulfur dioxide concentration Range: - OGC (1,0 – 410) mg/m3 Continuous flame ionization detection method (FID) - SO (25,0 - 1490) mg/m3 2 NDIR method PN-EN 16510-1:2018 p. A.4.4.2 | PN-EN 16510-1:2023-06 p.A.4.4.2
254 Residential solid fuel burning appliances Concentration of nitrogen oxide, nitrogen oxides in flue gases Range: - NO (5,0 – 1200) mg/m3 - NOx (8,0 – 1500) mg/m3 Chemiluminescence method PN-EN 16510-1:2018 p. A.4.4.2 | PN-EN 16510-1:2023-06 p. A.4.4.2
255 Residential solid fuel burning appliances Dust concentration in flue gases Range: - Dust (1,7 – 3750) mg/m3 Gravimetric method PN-EN 16510-1:2018 p. A.4.4.2 PN-EN 16510-1:2023-06 p. A.4.4.2 Załącznik F
256 Residential solid fuel burning appliances Emission of carbon monoxide, carbon dioxide, volatile organic compounds, nitrogen monoxide, nitrogen oxides, dust in flue gases Calculation method PN-EN 16510-1:2018 p. A.4.4.2 | PN-EN 16510-1:2023-06 p. A.4.4.2
257 Residential solid fuel burning appliances Air parameters:
258 Residential solid fuel burning appliances Air temperature Range: - Temperature (10,0 – 50,0) oC Resistance method PN-EN 16510-1:2018 p. A4.4.3 PN-EN 16510-1:2023-06 p. A4.4.3
259 Residential solid fuel burning appliances Water parameters:
260 Residential solid fuel burning appliances Water temperature - Temperature (10,0 – 110) oC Resistance method PN-EN 16510-1:2018 p. A4.5.2 PN-EN 16510-1:2023-06 p. A4.5.2
261 Residential solid fuel burning appliances Water volume flow rate - Volume flow rate (0,3 – 3) m3/h PN-EN 16510-1:2018 p. A4.5.2 PN-EN 16510-1:2023-06 p. A4.5.2
262 Residential solid fuel burning appliances Heat balance (calculated):
263 Residential solid fuel burning appliances - heat input from fuel (2 – 100) kW PN-EN 16510-1:2018 p. A6.2.2 PN-EN 16510-1:2023-06 p.A6.2.2
264 Residential solid fuel burning appliances - stack loss (5 – 40) % PN-EN 16510-1:2018 p.A6.2.1.2 PN-EN 16510-1:2023-06 p.A6.2.1.2
265 Residential solid fuel burning appliances - incomplete combustion losses PN-EN 16510-1:2018 p.A6.2.1.3 PN-EN 16510-1:2023-06 p.A6.2.1.3
266 Residential solid fuel burning appliances - unburnt combustible losses PN-EN 16510-1:2018 p.A6.2.1.4 PN-EN 16510-1:2023-06 p.A6.2.1.4
267 Residential solid fuel burning appliances - thermal efficiency (20 – 95) % PN-EN 16510-1:2018 p.A6.2.1 PN-EN 16510-1:2023-06 p.A6.2.1
268 Residential solid fuel burning appliances - total heat output (2 – 50) kW PN-EN 16510-1:2018 p.A6.2.2 PN-EN 16510-1:2023-06 p.A6.2.2
269 Residential solid fuel burning appliances - heat output of the water circuit (2 – 50) kW PN-EN 16510-1:2018 p.A6.2.3 PN-EN 16510-1:2023-06 p.A6.2.3
270 Residential solid fuel burning appliances - heat output to the room (2 – 50) kW PN-EN 16510-1:2018 p.A6.2.4 PN-EN 16510-1:2023-06 p.A6.2.4
271 Residential solid fuel burning appliances - CO content (O =13%) 2 (0,001 – 3) % PN-EN 16510-1:2018 p.A6.2.6 PN-EN 16510-1:2023-06 p.A6.2.6
272 Residential solid fuel burning appliances Technical and operational parameters:
273 Residential solid fuel burning appliances - temperature of the measuring corner and the floor (10,0 – 150) oC PN-EN 16510-1:2018 p.A4.7 | PN-EN 16510-1:2023-06 p.A4.7
274 Residential solid fuel burning appliances - temperature of the fuel hopper (10,0 – 200) oC PN-EN 16510-1:2018 p.A4.7 | PN-EN 16510-1:2023-06 p.A4.7
275 Residential solid fuel burning appliances - temperature of the handles (10,0 – 200) oC PN-EN 16510-1:2018 p. A4.7 | PN-EN 16510-1:2023-06 p.A4.7
276 Residential solid fuel burning appliances - leak tightness of the water space (0,05 – 0,5) MPa PN-EN 16510-1:2018 p. A.4.10.5 PN-EN 16510-1:2023-06 p. A.4.10.5
277 Residential solid fuel burning appliances - thermal outlet protection water temperature (10,0-110) oC - water pressure (0,05 – 0,5) MPa PN-EN 16510-1:2018 p A.4.10.6 PN-EN 16510-1:2023-06 p A.4.10.6
278 Liquid fuel fireplaces Fuel tank capacity PN-EN 16647:2015-11
279 Liquid fuel fireplaces Construction of the device
280 Liquid fuel fireplaces Construction of the ignition device
281 Liquid fuel fireplaces Resistance to tilting and sliding
282 Liquid fuel fireplaces Resistance to displacement of the device caused by the impact of a bag
283 Liquid fuel fireplaces Resistance to tilting of the device caused by the impact of a bag
284 Liquid fuel fireplaces Resistance of the device to static loads
285 Liquid fuel fireplaces Resistance to fuel spillage
286 Residential solid fuel burning appliances - roomheaters Fuel parameters:
287 Residential solid fuel burning appliances - roomheaters - fuel mass (0,1 - 50) kg PN-EN 16510-1:2023-06 p. A.4.2
288 Residential solid fuel burning appliances - roomheaters Flue gas parameters:
289 Residential solid fuel burning appliances - roomheaters - temperature (50 – 300) oC PN-EN 16510-1:2023-06 A.4.4.3 PN-EN 16510-2-1:2023-06 p.4.7.2
290 Residential solid fuel burning appliances - roomheaters - pressure (-150 – 50) Pa PN-EN 16510-1:2023-06 p. A.2.3.4 | PN-EN 16510-2-1:2023-06 p. 4.7.3
291 Residential solid fuel burning appliances - roomheaters Concentration of oxygen, carbon monoxide and carbon dioxide Range: - O ; (1,0 – 21,0) % 2 PMD paramagnetic method - CO; (12,5 – 56125) mg/m3 - CO ; (2,0 – 18,5) % 2 NDIR method PN-EN 16510-1: 2023-06 p. A.4.4.2 | PN-EN 16510-2-1:2023-06 p. 4.3 „N”
292 Residential solid fuel burning appliances - roomheaters Concentration of OGC and sulphur dioxide Range: - OGC; (1,0 – 410) mg/m3 Continuous flame ionisation detection method (FID) - SO ; (25,0 - 1490) mg/m3 2 NDIR method PN-EN 16510-1:2023-06 p. A.4.4.2 | PN-EN 16510-2-1:2023-06 p. 4.5 „N”
293 Residential solid fuel burning appliances - roomheaters Concentration of nitrogen monoxide, nitrogen dioxide, nitrogen oxides in flue gases Range: - NO; (5,0 – 1200) mg/m3 - NOx; (8,0 – 1500) mg/m3 Chemiluminescence method PN-EN 16510-1: 2023-06 p. A.4.4.2 | PN-EN 16510-2-1:2023-06 p. 4.4 „N”
294 Residential solid fuel burning appliances - roomheaters Dust concentration in flue gases Range: - Dust; (0 – 8500) mg/m3 Gravimetric method PN-EN 16510-1:2023-06 Załącznik F PN-EN 16510-2-1:2023-06 p. 4.6 „N”
295 Residential solid fuel burning appliances - roomheaters Air parameters:
296 Residential solid fuel burning appliances - roomheaters Air temperature Range: - Temperature; (10,0 – 50,0) oC Resistance method PN-EN 16510-1:2023-06 p. A.4.4.3
297 Residential solid fuel burning appliances - roomheaters Water parameters:
298 Residential solid fuel burning appliances - roomheaters Water temperature - Temperature; (10,0 – 110) oC Resistance method PN-EN 16510-1:2023-06 p. A.4.5.2
299 Residential solid fuel burning appliances - roomheaters Water volume flow rate - Volume flow rate; (0,3 – 3) m3/h PN-EN 16510-1:2023-06 p. A.4.5.2
300 Residential solid fuel burning appliances - roomheaters Heat balance (calculated):
301 Residential solid fuel burning appliances - roomheaters - heat input from fuel (2 – 100) kW PN-EN 16510-1:2023-06 p. A.6.2.2
302 Residential solid fuel burning appliances - roomheaters - stack loss (5 – 40) % PN-EN 16510-1:2023-06 p. A.6.2.1.2
303 Residential solid fuel burning appliances - roomheaters - incomplete combustion losses PN-EN 16510-1:2023-06 p. A.6.2.1.3
304 Residential solid fuel burning appliances - roomheaters - unburnt combustible losses PN-EN 16510-1:2023-06 p. A.6.2.1.4
305 Residential solid fuel burning appliances - roomheaters - thermal efficiency (20 – 95) % PN-EN 16510-1:2023-06 p. A.6.2.1 PN-EN 16510-2-1:2023-06 p. 4.8.3
306 Residential solid fuel burning appliances - roomheaters - total heat output (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-1:2023-06 p. 4.8.1
307 Residential solid fuel burning appliances - roomheaters - heat output of the water circuit (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-1:2023-06 p. 4.8.2
308 Residential solid fuel burning appliances - roomheaters - heat output to the room (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.4
309 Residential solid fuel burning appliances - roomheaters - CO content (O =13%) (0,001 – 3) 2 % PN-EN 16510-1:2023-06 p. A.6.2.6
310 Residential solid fuel burning appliances - roomheaters Technical and operational parameters:
311 Residential solid fuel burning appliances - roomheaters - temperature of the measuring corner and the floor (10,0 – 150) oC PN-EN 16510-1:2023-06 p. A.4.7
312 Residential solid fuel burning appliances - roomheaters - temperature of the fuel hopper (10,0 – 200) oC PN-EN 16510-1:2023-06 p. A.4.7 | PN-EN 16510-2-1:2023-06 p. 5.5 „N”
313 Residential solid fuel burning appliances - roomheaters - temperature of the handles (10,0 – 200) oC PN-EN 16510-1:2023-06 p. A.4.7 | PN-EN 16510-2-1:2023-06 p.5.6 „N”
314 Residential solid fuel burning appliances - roomheaters - leak tightness of the water space (0,05 – 0,5) MPa PN-EN 16510-1:2023-06 p. A 4.10.6 PN-EN 16510-2-1:2023-06 p. 5.3 „N”
315 Residential solid fuel burning appliances - roomheaters - thermal outlet protection water temperature (10,0-110) oC water pressure (0,05 – 0,5) MPa PN-EN 16510-1:2023-06 p. A 4.10.7
316 Residential solid fuel burning appliances - roomheaters - measurement of electrical energy consumption (1 – 500) W Method: power transducer PN-EN 16510-1:2023-06 p 6.11 PN-EN 16510-2-1:2023-06 p. 4.8.9
317 Residential solid fuel burning appliances - roomheaters - efficiency (calculated) - seasonal space heating efficiency (calculated) - energy efficiency index EEI (calculated) PN-EN 16510-1:2023-06 p A.6.2.1.5 | PN-EN 16510-2-1:2023-06 p. 4.8.7
318 Residential solid fuel burning appliances - inset appliances, including open fires Fuel parameters:
319 Residential solid fuel burning appliances - inset appliances, including open fires - fuel mass (0,1 - 50) kg PN-EN 16510-1:2023-06 p. A.4.2
320 Residential solid fuel burning appliances - inset appliances, including open fires Flue gas parameters:
321 Residential solid fuel burning appliances - inset appliances, including open fires - temperature (50 – 300) oC PN-EN 16510-1:2023-06 A.4.4.3 PN-EN 16510-2-2:2023-06 p.4.6.2
322 Residential solid fuel burning appliances - inset appliances, including open fires - pressure (-150 – 50) Pa PN-EN 16510-1:2023-06 p. A.2.3.4 | PN-EN 16510-2-2:2023-06 p.4.6.4
323 Residential solid fuel burning appliances - inset appliances, including open fires Concentration of oxygen, carbon monoxide and carbon dioxide Range: - O ; (1,0 – 21,0) % 2 PMD paramagnetic method - CO; (12,5 – 56125) mg/m3 - CO ; (2,0 – 18,5) % 2 NDIR method PN-EN 16510-1: 2023-06 p. A.4.4.2 | PN-EN 16510-2-2:2023-06 p. 4.2 „N”
324 Residential solid fuel burning appliances - inset appliances, including open fires Concentration of OGC and sulphur dioxide Range: - OGC; (1,0 – 410) mg/m3 Continuous flame ionisation detection method (FID) - SO ; (25,0 - 1490) mg/m3 2 NDIR method PN-EN 16510-1:2023-06 p. A.4.4.2 | PN-EN 16510-2-2:2023-06 p. 4.4 „N”
325 Residential solid fuel burning appliances - inset appliances, including open fires Concentration of nitrogen monoxide, nitrogen dioxide, nitrogen oxides in flue gases Range: - NO; (5,0 – 1200) mg/m3 - NOx; (8,0 – 1500) mg/m3 Chemiluminescence method PN-EN 16510-1: 2023-06 p. A.4.4.2 | PN-EN 16510-2-2:2023-06 p. 4.3 „N”
326 Residential solid fuel burning appliances - inset appliances, including open fires Dust concentration in flue gases Range: - Dust; (0 – 8500) mg/m3 Gravimetric method PN-EN 16510-1:2023-06 Załącznik F PN-EN 16510-2-2:2023-06 p. 4.5 „N”
327 Residential solid fuel burning appliances - inset appliances, including open fires Air parameters:
328 Residential solid fuel burning appliances - inset appliances, including open fires Air temperature Range: - Temperature; (10,0 – 50,0) oC Resistance method PN-EN 16510-1:2023-06 p. A.4.4.3
329 Residential solid fuel burning appliances - inset appliances, including open fires Water parameters:
330 Residential solid fuel burning appliances - inset appliances, including open fires Water temperature - Temperature; (10,0 – 110) oC Resistance method PN-EN 16510-1:2023-06 p. A.4.5.2
331 Residential solid fuel burning appliances - inset appliances, including open fires Water volume flow rate - Volume flow rate; (0,3 – 3) m3/h PN-EN 16510-1:2023-06 p. A.4.5.2
332 Residential solid fuel burning appliances - inset appliances, including open fires Heat balance (calculated):
333 Residential solid fuel burning appliances - inset appliances, including open fires - heat input from fuel (2 – 100) kW PN-EN 16510-1:2023-06 p. A.6.2.2
334 Residential solid fuel burning appliances - inset appliances, including open fires - stack loss (5 – 40) % PN-EN 16510-1:2023-06 p. A.6.2.1.2
335 Residential solid fuel burning appliances - inset appliances, including open fires - incomplete combustion losses PN-EN 16510-1:2023-06 p. A.6.2.1.3
336 Residential solid fuel burning appliances - inset appliances, including open fires - unburnt combustible losses PN-EN 16510-1:2023-06 p. A.6.2.1.4
337 Residential solid fuel burning appliances - inset appliances, including open fires - thermal efficiency (20 – 95) % PN-EN 16510-1:2023-06 p. A.6.2.1 PN-EN 16510-2-2:2023-06 p. 4.7.3
338 Residential solid fuel burning appliances - inset appliances, including open fires - total heat output (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-2:2023-06 p. 4.7.1
339 Residential solid fuel burning appliances - inset appliances, including open fires - heat output of the water circuit (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-2:2023-06 p. 4.7.2
340 Residential solid fuel burning appliances - inset appliances, including open fires - heat output to the room (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.4
341 Residential solid fuel burning appliances - inset appliances, including open fires - CO content (O =13%) (0,001 – 3) 2 % PN-EN 16510-1:2023-06 p. A.6.2.6
342 Residential solid fuel burning appliances - inset appliances, including open fires Technical and operational parameters:
343 Residential solid fuel burning appliances - inset appliances, including open fires - temperature of the measuring corner and the floor (10,0 – 150) oC PN-EN 16510-1:2023-06 p. A.4.7
344 Residential solid fuel burning appliances - inset appliances, including open fires - temperature of the fuel hopper (10,0 – 200) oC PN-EN 16510-1:2023-06 p. A.4.7 | PN-EN 16510-2-2:2023-06 p. 5.5 „N”
345 Residential solid fuel burning appliances - inset appliances, including open fires - temperature of the handles (10,0 – 200) oC PN-EN 16510-1:2023-06 p. A.4.7 | PN-EN 16510-2-2:2023-06 p.5.6 „N”
346 Residential solid fuel burning appliances - inset appliances, including open fires - leak tightness of the water space (0,05 – 0,5) MPa PN-EN 16510-1:2023-06 p. A 4.10.6 PN-EN 16510-2-2:2023-06 p. 5.3.3 „N”
347 Residential solid fuel burning appliances - inset appliances, including open fires - thermal outlet protection water temperature (10,0-110) oC water pressure (0,05 – 0,5) MPa PN-EN 16510-1:2023-06 p. A 4.10.7
348 Residential solid fuel burning appliances - inset appliances, including open fires - measurement of electrical energy consumption (1 – 500) W Method: power transducer PN-EN 16510-1:2023-06 p 6.11 PN-EN 16510-2-2:2023-06 p. 4.7.9
349 Residential solid fuel burning appliances - inset appliances, including open fires - efficiency (calculated) - seasonal space heating efficiency (calculated) - energy efficiency index EEI (calculated) PN-EN 16510-1:2023-06 p A.6.2.1.5 | PN-EN 16510-2-2:2023-06 p. 4.7.7
350 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Fuel parameters:
351 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - fuel mass (0,1 - 50) kg PN-EN 16510-1:2023-06 p. A.4.2
352 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Flue gas parameters:
353 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - temperature (50 – 300) oC PN-EN 16510-1:2023-06 A.4.4.3 PN-EN 16510-2-6:2023-06 p.4.7.2
354 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - pressure (-150 – 50) Pa PN-EN 16510-1:2023-06 p. A.2.3.4 | PN-EN 16510-2-6:2023-06 p.4.7.4
355 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Concentration of oxygen, carbon monoxide and carbon dioxide Range: - O ; (1,0 – 21,0) % 2 PMD paramagnetic method - CO; (12,5 – 56125) mg/m3 - CO ; (2,0 – 18,5) % 2 NDIR method PN-EN 16510-1: 2023-06 p. A.4.4.2 | PN-EN 16510-2-6:2023-06 p. 4.3 „N”
356 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Concentration of OGC and sulphur dioxide Range: - OGC; (1,0 – 410) mg/m3 Continuous flame ionisation detection method (FID) - SO ; (25,0 - 1490) mg/m3 2 NDIR method PN-EN 16510-1:2023-06 p. A.4.4.2 | PN-EN 16510-2-6:2023-06 p. 4.5 „N”
357 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Concentration of nitrogen monoxide, nitrogen dioxide, nitrogen oxides in flue gases Range: - NO; (5,0 – 1200) mg/m3 - NOx; (8,0 – 1500) mg/m3 Chemiluminescence method PN-EN 16510-1: 2023-06 p. A.4.4.2 | PN-EN 16510-2-6:2023-06 p. 4.4 „N”
358 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Dust concentration in flue gases Range: - Dust; (0 – 8500) mg/m3 Gravimetric method PN-EN 16510-1:2023-06 Załącznik F PN-EN 16510-2-6:2023-06 p. 4.6 „N”
359 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Air parameters:
360 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Air temperature Range: - Temperature; (10,0 – 50,0) oC Resistance method PN-EN 16510-1:2023-06 p. A.4.4.3
361 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Water parameters:
362 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Water temperature - Temperature; (10,0 – 110) oC Resistance method PN-EN 16510-1:2023-06 p. A.4.5.2
363 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Water volume flow rate - Volume flow rate; (0,3 – 3) m3/h PN-EN 16510-1:2023-06 p. A.4.5.2
364 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Heat balance (calculated):
365 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - heat input from fuel (2 – 100) kW PN-EN 16510-1:2023-06 p. A.6.2.2
366 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - stack loss (5 – 40) % PN-EN 16510-1:2023-06 p. A.6.2.1.2
367 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - incomplete combustion losses PN-EN 16510-1:2023-06 p. A.6.2.1.3
368 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - unburnt combustible losses PN-EN 16510-1:2023-06 p. A.6.2.1.4
369 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - thermal efficiency (20 – 95) % PN-EN 16510-1:2023-06 p. A.6.2.1 PN-EN 16510-2-6:2023-06 p. 4.8.3
370 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - total heat output (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-6:2023-06 p. 4.8.1
371 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - heat output of the water circuit (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-6:2023-06 p. 4.8.2
372 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - heat output to the room (2 – 50) kW PN-EN 16510-1:2023-06 p. A.6.2.4
373 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - CO content (O =13%) (0,001 – 3) 2 % PN-EN 16510-1:2023-06 p. A.6.2.6
374 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding Technical and operational parameters:
375 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - temperature of the measuring corner and the floor (10,0 – 150) oC PN-EN 16510-1:2023-06 p. A.4.7
376 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - temperature of the fuel hopper (10,0 – 200) oC PN-EN 16510-1:2023-06 p. A.4.7 | PN-EN 16510-2-6:2023-06 p. 5.5.1
377 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - temperature of the handles (10,0 – 200) oC PN-EN 16510-1:2023-06 p. A.4.7 | PN-EN 16510-2-6:2023-06 p.5.6 „N”
378 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - leak tightness of the water space (0,05 – 0,5) MPa PN-EN 16510-1:2023-06 p. A 4.10.6 PN-EN 16510-2-6:2023-06 p. 5.3.3 „N”
379 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - thermal outlet protection water temperature (10,0-110) oC water pressure (0,05 – 0,5) MPa PN-EN 16510-1:2023-06 p. A 4.10.7
380 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - measurement of electrical energy consumption (1 – 500) W Method: power transducer PN-EN 16510-1:2023-06 p 6.11 PN-EN 16510-2-6:2023-06 p. 4.8.9
381 Residential solid fuel burning appliances - roomheaters, inset appliances and cookers with mechanical wood pellet feeding - efficiency (calculated), - seasonal space heating efficiency (calculated) - energy efficiency index EEI (calculated) PN-EN 16510-1:2023-06 p A.6.2.1.5 | PN-EN 16510-2-6:2023-06 p. 4.8.7
382 Solid fuels: - hard coal Maceral group composition Range: V (10 – 90) % L (0 – 20) % I (0 – 50) % M (0 – 15) % Microscopic method PN-ISO 7404-3:2001
383 Solid fuels: - hard coal Vitrinite reflectance Range: (0,50 – 4,00) % Microscopic method PN-ISO 7404-5:2002
384 Solid fuels: - coke Reactivity towards CO 2 and coke strength after reaction Range: CRI (15,0 – 80,0) CSR (0,0 – 80,0) Gravimetric method PN-C-04312:1996 ASTM D5341 / D5341M-19 ISO 18894:2018
385 Commission decision number Product(s) Zharmonizowane specyfikacje techniczne
386 99/471/WE Space heaters fired with solid and liquid fuels EN 14785:2006 EN 13229:2001 EN 13229:2001/A1:2003 EN 13229:2001/A2:2004 EN 13229:2001/A2:2004/AC:2007 EN 13229:2001/AC:2006 EN 13240:2001 EN 13240:2001/A2:2004 EN 13240:2001/A2:2004/AC:2007 EN 13240:2001/AC:2006 EN 16510-2-1:2022 EN 16510-2-2:2022 EN 16510-2-6:2022

Reference standards (254)

EN 14785:2006 EN 13229:2001 EN 13229:2001/A1:2003 EN 13229:2001/A2:2004 EN 13229:2001/A2:2004/AC:2007 EN 13229:2001/AC:2006 EN 13240:2001 EN 13240:2001/A2:2004 EN 13240:2001/A2:2004/AC:2007 EN 13240:2001/AC:2006 EN 16510-2-1:2022 EN 16510-2-2:2022 EN 16510-2-6:2022
EN ISO 21404:2020-08
EN/TR 15404:2010
EN/TS 15414-1:2010
ISO 1953:2015 pkt. 6.2
ISO 19579:2006
ISO 5068-1:2007
ISO 5068-2:2007
PN-80/G-04511
PN-80/G-04512+Az1:2002 PN-ISO 1171:2002
PN-81/G-04513 PN-ISO 1928:2020-05
PN-81/G-04517 ISO 349:2020
PN-82/C-97555/03
PN-82/G-04543
PN-83/C-97555/04
PN-84/C-97555/08
PN-84/C-97555/09
PN-88/C-97555/01
PN-90/C-97554 pkt. 5.4.2. PN-EN 12915-1:2009 p. 8.2.3
PN-90/C-97554 pkt. 5.4.5. PN-EN 12915-1:2009 p.8.2.4
PN-93/C-96012 Metoda C
PN-C-04312:1996 ASTM D5341 / D5341M-19 ISO 18894:2018
PN-C-06301:1998
PN-EN 12902:2005 pkt. 6.10
PN-EN 12902:2005 pkt. 6.2
PN-EN 12902:2005 pkt. 6.5
PN-EN 13229:2002 A4.4.3 „N”
PN-EN 13229:2002 p. A2.3.4
PN-EN 13229:2002 p. A4.2 „N”
PN-EN 13229:2002 p. A4.4.2 „N”
PN-EN 13229:2002 p. A4.4.3 „N”
PN-EN 13229:2002 p. A4.5.2 „N”
PN-EN 13229:2002 p. A4.7
PN-EN 13229:2002 p. A4.9.5 „N”
PN-EN 13229:2002 p. A4.9.6 „N”
PN-EN 13229:2002 p. A6.2.1 „N”
PN-EN 13229:2002 p. A6.2.1.1 „N”
PN-EN 13229:2002 p. A6.2.1.2 „N”
PN-EN 13229:2002 p. A6.2.1.3 „N”
PN-EN 13229:2002 p. A6.2.2 „N”
PN-EN 13229:2002 p. A6.2.3 „N”
PN-EN 13229:2002 p. A6.2.4 „N”
PN-EN 13229:2002 p. A6.2.6 „N”
PN-EN 13240:2008 A4.4.3 „N”
PN-EN 13240:2008 p. A2.3.4
PN-EN 13240:2008 p. A4.2 „N”
PN-EN 13240:2008 p. A4.4.2 „N”
PN-EN 13240:2008 p. A4.4.3 „N”
PN-EN 13240:2008 p. A4.5.2 „N”
PN-EN 13240:2008 p. A4.7
PN-EN 13240:2008 p. A4.9.4 „N”
PN-EN 13240:2008 p. A4.9.5 „N”
PN-EN 13240:2008 p. A6.2.1 „N”
PN-EN 13240:2008 p. A6.2.1.1 „N”
PN-EN 13240:2008 p. A6.2.1.2 „N”
PN-EN 13240:2008 p. A6.2.1.3 „N”
PN-EN 13240:2008 p. A6.2.2 „N”
PN-EN 13240:2008 p. A6.2.3 „N”
PN-EN 13240:2008 p. A6.2.4 „N”
PN-EN 13240:2008 p. A6.2.6 „N”
PN-EN 14785:2009 p. A1.1
PN-EN 14785:2009 p. A2.2
PN-EN 14785:2009 p. A2.3.2
PN-EN 14785:2009 p. A2.3.3
PN-EN 14785:2009 p. A2.3.4
PN-EN 14785:2009 p. A2.5
PN-EN 14785:2009 p. A3
PN-EN 14785:2009 p. A4.9.2 „N”
PN-EN 14785:2009 p. A4.9.3 „N”
PN-EN 14785:2009 p. A6.2.1 „N”
PN-EN 14785:2009 p. A6.2.1.1 „N”
PN-EN 14785:2009 p. A6.2.1.2 „N”
PN-EN 14785:2009 p. A6.2.1.3 „N”
PN-EN 14785:2009 p. A6.2.2 „N”
PN-EN 14785:2009 p. A6.2.3 „N”
PN-EN 14785:2009 p. A6.2.4 „N”
PN-EN 14785:2009 p. A6.2.5 „N”
PN-EN 14785:2009 p. A6.2.6 „N”
PN-EN 14899:2005
PN-EN 15408:2011
PN-EN 16510-1: 2023-06 p. A.4.4.2
PN-EN 16510-1:2018 A4.4.3 PN-EN 16510-1:2023-06 A4.4.3
PN-EN 16510-1:2018 p A.4.10.6 PN-EN 16510-1:2023-06 p A.4.10.6
PN-EN 16510-1:2018 p. A.4.10.5 PN-EN 16510-1:2023-06 p. A.4.10.5
PN-EN 16510-1:2018 p. A.4.4.2
PN-EN 16510-1:2018 p. A.4.4.2 PN-EN 16510-1:2023-06 p. A.4.4.2 Załącznik F
PN-EN 16510-1:2018 p. A2.3.4
PN-EN 16510-1:2018 p. A4.2 PN-EN 16510-1:2023-06 p.A4.2
PN-EN 16510-1:2018 p. A4.4.3 PN-EN 16510-1:2023-06 p. A4.4.3
PN-EN 16510-1:2018 p. A4.5.2 PN-EN 16510-1:2023-06 p. A4.5.2
PN-EN 16510-1:2018 p. A4.7
PN-EN 16510-1:2018 p. A6.2.2 PN-EN 16510-1:2023-06 p.A6.2.2
PN-EN 16510-1:2018 p.A4.7
PN-EN 16510-1:2018 p.A6.2.1 PN-EN 16510-1:2023-06 p.A6.2.1
PN-EN 16510-1:2018 p.A6.2.1.2 PN-EN 16510-1:2023-06 p.A6.2.1.2
PN-EN 16510-1:2018 p.A6.2.1.3 PN-EN 16510-1:2023-06 p.A6.2.1.3
PN-EN 16510-1:2018 p.A6.2.1.4 PN-EN 16510-1:2023-06 p.A6.2.1.4
PN-EN 16510-1:2018 p.A6.2.2 PN-EN 16510-1:2023-06 p.A6.2.2
PN-EN 16510-1:2018 p.A6.2.3 PN-EN 16510-1:2023-06 p.A6.2.3
PN-EN 16510-1:2018 p.A6.2.4 PN-EN 16510-1:2023-06 p.A6.2.4
PN-EN 16510-1:2018 p.A6.2.6 PN-EN 16510-1:2023-06 p.A6.2.6
PN-EN 16510-1:2023-06 A.4.4.3 PN-EN 16510-2-1:2023-06 p.4.7.2
PN-EN 16510-1:2023-06 A.4.4.3 PN-EN 16510-2-2:2023-06 p.4.6.2
PN-EN 16510-1:2023-06 A.4.4.3 PN-EN 16510-2-6:2023-06 p.4.7.2
PN-EN 16510-1:2023-06 Załącznik F PN-EN 16510-2-1:2023-06 p. 4.6 „N”
PN-EN 16510-1:2023-06 Załącznik F PN-EN 16510-2-2:2023-06 p. 4.5 „N”
PN-EN 16510-1:2023-06 Załącznik F PN-EN 16510-2-6:2023-06 p. 4.6 „N”
PN-EN 16510-1:2023-06 p 6.11 PN-EN 16510-2-1:2023-06 p. 4.8.9
PN-EN 16510-1:2023-06 p 6.11 PN-EN 16510-2-2:2023-06 p. 4.7.9
PN-EN 16510-1:2023-06 p 6.11 PN-EN 16510-2-6:2023-06 p. 4.8.9
PN-EN 16510-1:2023-06 p A.6.2.1.5
PN-EN 16510-1:2023-06 p. A 4.10.6 PN-EN 16510-2-1:2023-06 p. 5.3 „N”
PN-EN 16510-1:2023-06 p. A 4.10.6 PN-EN 16510-2-2:2023-06 p. 5.3.3 „N”
PN-EN 16510-1:2023-06 p. A 4.10.6 PN-EN 16510-2-6:2023-06 p. 5.3.3 „N”
PN-EN 16510-1:2023-06 p. A 4.10.7
PN-EN 16510-1:2023-06 p. A.2.3.4
PN-EN 16510-1:2023-06 p. A.4.2
PN-EN 16510-1:2023-06 p. A.4.4.2
PN-EN 16510-1:2023-06 p. A.4.4.3
PN-EN 16510-1:2023-06 p. A.4.5.2
PN-EN 16510-1:2023-06 p. A.4.7
PN-EN 16510-1:2023-06 p. A.6.2.1 PN-EN 16510-2-1:2023-06 p. 4.8.3
PN-EN 16510-1:2023-06 p. A.6.2.1 PN-EN 16510-2-2:2023-06 p. 4.7.3
PN-EN 16510-1:2023-06 p. A.6.2.1 PN-EN 16510-2-6:2023-06 p. 4.8.3
PN-EN 16510-1:2023-06 p. A.6.2.1.2
PN-EN 16510-1:2023-06 p. A.6.2.1.3
PN-EN 16510-1:2023-06 p. A.6.2.1.4
PN-EN 16510-1:2023-06 p. A.6.2.2
PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-1:2023-06 p. 4.8.1
PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-2:2023-06 p. 4.7.1
PN-EN 16510-1:2023-06 p. A.6.2.2 PN-EN 16510-2-6:2023-06 p. 4.8.1
PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-1:2023-06 p. 4.8.2
PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-2:2023-06 p. 4.7.2
PN-EN 16510-1:2023-06 p. A.6.2.3 PN-EN 16510-2-6:2023-06 p. 4.8.2
PN-EN 16510-1:2023-06 p. A.6.2.4
PN-EN 16510-1:2023-06 p. A.6.2.6
PN-EN 16510-1:2023-06 p. A2.3.4
PN-EN 16510-1:2023-06 p.A.4.4.2
PN-EN 16510-1:2023-06 p.A4.7
PN-EN 16510-2-1:2023-06 p. 4.3 „N”
PN-EN 16510-2-1:2023-06 p. 4.4 „N”
PN-EN 16510-2-1:2023-06 p. 4.5 „N”
PN-EN 16510-2-1:2023-06 p. 4.7.3
PN-EN 16510-2-1:2023-06 p. 4.8.7
PN-EN 16510-2-1:2023-06 p. 5.5 „N”
PN-EN 16510-2-1:2023-06 p.5.6 „N”
PN-EN 16510-2-2:2023-06 p. 4.2 „N”
PN-EN 16510-2-2:2023-06 p. 4.3 „N”
PN-EN 16510-2-2:2023-06 p. 4.4 „N”
PN-EN 16510-2-2:2023-06 p. 4.7.7
PN-EN 16510-2-2:2023-06 p. 5.5 „N”
PN-EN 16510-2-2:2023-06 p.4.6.4
PN-EN 16510-2-2:2023-06 p.5.6 „N”
PN-EN 16510-2-6:2023-06 p. 4.3 „N”
PN-EN 16510-2-6:2023-06 p. 4.4 „N”
PN-EN 16510-2-6:2023-06 p. 4.5 „N”
PN-EN 16510-2-6:2023-06 p. 4.8.7
PN-EN 16510-2-6:2023-06 p. 5.5.1
PN-EN 16510-2-6:2023-06 p.4.7.4
PN-EN 16510-2-6:2023-06 p.5.6 „N”
PN-EN 16647:2015-11
PN-EN 303-5+A1:2023-05 p. 5.2
PN-EN 303-5+A1:2023-05 p.5.11
PN-EN 303-5+A1:2023-05 p.5.2
PN-EN 303-5+A1:2023-05 p.5.6.1
PN-EN 303-5+A1:2023-05 p.5.7.6
PN-EN 303-5:2021 p.5.9.4 PN-EN 303-5+A1:2023-05 p.5.9.4
PN-EN 303-5:2021-09 09 p. 5.2; 5.6.2; 5.6.3; 5.7.2 PN-EN 303-5+A1:2023-05 p. 5.2; 5.6.2; 5.6.3; 5.7.2 wskazane w Rozp. Ministra Rozwoju i Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
PN-EN 303-5:2021-09 09 p.5.2 PN-EN 303-5+A1:2023-05 p.5.2 wskazane w Rozp. Ministra Rozwoju i Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
PN-EN 303-5:2021-09 PN-EN 303-5+A1:2023-05
PN-EN 303-5:2021-09 PN-EN 303-5+A1:2023-05 Rozporządzenie UE 2015/1187 Rozporządzenie UE 2015/1189
PN-EN 303-5:2021-09 p. 5.2
PN-EN 303-5:2021-09 p. 5.6.3 PN-EN 303-5+A1:2023-05 p.5.6.3 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
PN-EN 303-5:2021-09 p. 5.9.4 PN-EN 303-5+A1:2023-05 p. 5.9.4 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.)
PN-EN 303-5:2021-09 p.5.10 PN-EN 303-5+A1:2023-05 p.5.10
PN-EN 303-5:2021-09 p.5.11
PN-EN 303-5:2021-09 p.5.13 PN-EN 303-5+A1:2023-05 p.5.13
PN-EN 303-5:2021-09 p.5.14 PN-EN 303-5+A1:2023-05 p.5.14
PN-EN 303-5:2021-09 p.5.16.2 PN-EN 303-5+A1:2023-05 p.5.16.2
PN-EN 303-5:2021-09 p.5.16.3 PN-EN 303-5+A1:2023-05 p.5.16.3
PN-EN 303-5:2021-09 p.5.16.4 PN-EN 303-5+A1:2023-05 p.5.16.4
PN-EN 303-5:2021-09 p.5.2
PN-EN 303-5:2021-09 p.5.2 PN-EN 303-5+A1:2023-05 p.5.2 wskazane w Rozporządzeniu Ministra Rozwoju i Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
PN-EN 303-5:2021-09 p.5.6.1
PN-EN 303-5:2021-09 p.5.6.3 PN-EN 303-5+A1:2023-05 p.5.6.3 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)
PN-EN 303-5:2021-09 p.5.7.6
PN-EN 303-5:2021-09 p.5.7.7 PN-EN 303-5+A1:2023-05 p.5.7.7 wskazane w Rozporządzeniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.) PN-EN 15456:2008
PN-EN 303-5:2021-09 p.5.9.4 PN-EN 303-5+A1:2023-05 p.5.9.4
PN-EN ISO 16994:2016-10
PN-EN ISO 17831-1:2016-02
PN-EN ISO 18134-2:2017-03 PN-EN ISO 18134-1:2023-02
PN-EN ISO 18135:2017-06 pkt 8
PN-EN ISO 21644:2021-07 pkt. B7
PN-EN ISO 21654-2021-12
PN-EN ISO 21656:2021-08
PN-EN ISO 21660-3:2021-08
PN-EN ISO 21663:2021-06
PN-EN ISO 22167:2021-08
PN-EN ISO 6976:2016-11
PN-G-04502:2014-11 pkt. 5.3.1.2.
PN-G-04502:2014-11 pkt.10
PN-G-04508:2020-05
PN-G-04511:1980 pkt. 2.3.2
PN-G-04512:1980/Az1:2002
PN-G-04516:1998 ISO 562:2024-08
PN-G-04534:2024-01
PN-G-04560:1998
PN-G-04571:1998 ISO 29541:2025-02
PN-G-04584:2001
PN-G-04611:2020-06
PN-G-04611:2020-06 pkt. 4.3.2
PN-G-04611:2020-06 pkt.4.4.5
PN-ISO 10396:2001
PN-ISO 11722:2009
PN-ISO 13909-7:2005
PN-ISO 13909-8:2005
PN-ISO 540:2001 (ISO 540:1995 IDT)
PN-ISO 579:2002
PN-ISO 589:2006 Metoda B1
PN-ISO 687:2005
PN-ISO 7404-3:2001
PN-ISO 7404-5:2002
PN-Z-04030-7:1994
Procedura Q/LCA/05/B:2022 PN-EN ISO 18134-3:2023-12
Procedura Q/LCA/06/B:2022 PN-EN ISO 18122:2023-05
Procedura Q/LCA/07/B:2022 PN-EN ISO 18123:2023-10
Procedura Q/LCA/08/B:2022
Procedura Q/LCA/09/B:2022 PN-EN ISO 16948:2015-07
Procedura Q/LCA/10/B:2022
Procedura Q/LCA/12/B:2022 PN-EN ISO 18125:2017-07
Procedura Q/LCA/16/B:2022
Procedura Q/LCA/24/B:2022
Procedura Q/LCA/26/B:2022
Procedura Q/LCA/27/B:2022 PN-EN ISO 18122:2023-05
Procedura Q/LCA/27/B:2022 PN-EN ISO 18134-3:2023-12
Procedura Q/LCA/32/B:2022
Procedura Q/LCA/33/B:2022
Procedura Q/LCA/44/B:2022
Procedura Q/LCA/53/B:2022
Procedura Q/LCA/54/B:2022
Procedura Q/LCA/55/B:2022
Procedura Q/LCA/56/B:2022
Procedura Q/LCA/57/B:2022
Procedura Q/LCA/58/B:2022
Procedura Q/LCA/60/B:2022
Procedura Q/LCA/62/B:2022
Procedura Q/LCA/63/B:2022
Procedura Q/LCA/65/B:2022
Procedura Q/LS/01/H:2023
Procedura Q/LS/02/H:2023
Procedura Q/LS/07/F:2023
Zharmonizowane specyfikacje techniczne
eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017 r. (Dz.U. 2017 poz. 1690 z późn.zm.)
eniu Ministra Rozwoju I Finansów z dnia 1 sierpnia 2017r. (Dz.U. 2017 poz. 1690 z późn.zm.)