🇵🇱 F.H. BARWA JAROSŁAW CZAJKOWSKI PL

PCA AB 1488 • Kielce, Poland • 90 methods

Water & wastewaterEnvironmentMicrobiology

F.H. BARWA JAROSŁAW CZAJKOWSKI is a laboratory accredited by PCA under number AB 1488 (Kielce, Poland). Its accreditation scope covers 90 test methods in the following areas: Water & wastewater, Environment, Microbiology. Test objects include: Waste gases, Water, water intended for human consumption, wastewater, Water, water intended for human consumption, Drinking water.

At a glance

  • Accreditation number: PCA AB 1488
  • Methods in scope: 90
  • Types of test objects: 14
  • City: Kielce, Poland
Accreditation number
AB 1488
Accreditation body
PCA
Address
ul. Warkocz 3-5, 25-253 Kielce, LABORATORIUM BADAŃ ŚRODOWISKOWYCH BARWA, ul. Cedzyńska 40
City
Kielce, Poland

What this laboratory tests (14)

Accreditation scope — test methods (90)

No. Test object Methodology / Parameters Technique Reference document
Test methods
1 Waste gases Gas volume flow rate for dynamic pressures >10Pa Pitot tube method PN-Z-04030-7:1994
2 Waste gases Velocity Range: (0,50 - 20) m/s Anemometric method
3 Waste gases Sampling for determination of dust concentration
4 Waste gases Dust concentration Range: (0,00030 – 7,0) g/m3 Gravimetric method
5 Waste gases Dust emission (calculated)
6 Waste gases Sampling for determination of dust concentration PN-EN 13284-1:2018-02
7 Waste gases Dust concentration Range: (0,00030 – 0,050) g/m3 Gravimetric method
8 Waste gases Total organic carbon concentration (TVOC) Range: (1,0 – 1000) mg/m3 Continuous flame ionisation detection method FID PN-EN 12619:2013-05
9 Waste gases Emission (TVOC) (calculated)
10 Waste gases Concentration of nitrogen monoxide, nitrogen oxides Range: NO (4 – 1205) mg/m3 NOx (6 – 1848) mg/m3 Chemiluminescence method PN-EN 14792:2017-04 PN ISO 10396:2001
11 Waste gases Emission of NO and NOx calculated as NO2(calculated)
12 Waste gases Sulphur dioxide concentration Range: (6 – 2572) mg/m3 NDIR method PN-ISO 10396:2001
13 Waste gases Sulphur dioxide emission (calculated)
14 Waste gases Carbon monoxide concentration Range: (4 – 2200) mg/m3 NDIR method PN-EN 15058:2017-04 PN ISO 10396:2001
15 Waste gases Carbon monoxide emission (calculated)
16 Waste gases Oxygen concentration Range: (1 – 21,1) % Paramagnetic method PN-EN 14789:2017-04 PN ISO 10396:2001
17 Waste gases Carbon dioxide concentration Range: (1 - 21,1) % NDIR method PN-ISO 10396:2001
18 Waste gases Carbon dioxide emission (calculated)
19 Waste gases Sampling for determination of the concentration of individual gaseous organic compounds PN-EN 13649:2005
20 Waste gases Emission of individual gaseous organic compounds (calculated)
21 Waste gases Sampling for determination of hydrogen chloride (HCl) concentration PN-EN 1911:2011
22 Waste gases Hydrogen chloride content Range: (0,080 - 15,0) mg in sample Spectrophotometric method
23 Waste gases Hydrogen chloride emission (calculated)
24 Waste gases Sampling for determination of hydrogen fluoride content (HF) ISO 15713:2006
25 Waste gases Hydrogen fluoride content Range: (0,0100 - 100) mg in sample Potentiometric method – ion-selective
26 Waste gases Hydrogen fluoride emission (calculated)
27 Waste gases Sampling for determination of metal content in dust: As, Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Ti, V Aspiration method PN-Z-04030-7:1994, PT-1 wydanie 7 z dnia 02.09.2019 r.
28 Waste gases Emission of metals in dust (calculated)
29 Waste gases Dust sampling for particle size determination PN-Z-04030-7:1994 PT-1 wydanie 7 z dnia 02.09.2019 r.
30 Waste gases Emission of the dust fraction (calculated)
31 Waste gases Sampling for determination of the concentration of hydrogen sulfide and sulfuric (VI) acid PT-21 wydanie 2 z dnia 30.10.2023 r.
32 Waste gases Sampling for determination of ammonia concentration PN-EN ISO 21877:2020-03
33 General environment – landfill gases Methane (CH4), carbon dioxide (CO2) concentration Range: CH4 (0,5 - 65) % CO2 (0,5 - 35) % Infrared radiation absorption method (IR) PT-14 wydanie 1 z dnia 12.05.2020 r.
34 General environment – landfill gases Oxygen (O2) concentration Range: (0,5 - 21) % Electrochemical method
35 General environment – landfill gases Emission of carbon dioxide (CO2), methane (CH4) (calculated)
36 Water, water intended for human consumption, wastewater pH Range: 2,0 - 12,0 Potentiometric method PN-EN ISO 10523:2012
37 Water, water intended for human consumption, wastewater Electrical conductivity Range: (10 - 20 000) μS/cm Conductometric method PN-EN 27888:1999
38 Water, water intended for human consumption, wastewater Free chlorine concentration Range: (0,05 - 4,50) mg/l Photometric method PT-5 wydanie nr 1 z dnia 01.07.2019 r. na podstawie testu MERCK nr 100 597
39 Water, water intended for human consumption, wastewater Total chlorine concentration Range: (0,05 - 4,50) mg/l Photometric method
40 Water, water intended for human consumption, wastewater Combined chlorine concentration, chloramines (calculated)
41 Water, water intended for human consumption, wastewater Permanganate index Range: (1,0 - 100) mg/l O2 Titrimetric method PN-EN ISO 8467:2001
42 Water, water intended for human consumption, wastewater Ammonium nitrogen concentration Range: (0,16 - 2,00) mg/l Spectrophotometric method PN-C-04576-4:1994
43 Water, water intended for human consumption, wastewater Nitrate nitrogen concentration Range: (0,10 - 90,0) mg/l Spectrophotometric method PN-82/C-04576.08
44 Water, water intended for human consumption, wastewater Nitrite nitrogen concentration Range: (0,002 - 20,0) mg /l NO2 Spectrophotometric method PN-EN 26777:1999
45 Water, water intended for human consumption, wastewater Orthophosphate concentration Range: (0,020 - 60,0) mg/l PO4 Spectrophotometric method PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 pkt. 4
46 Water, water intended for human consumption, wastewater Chloride concentration Range: (10 - 7000) mg/l Titrimetric method PN-ISO 9297:1994
47 Water, water intended for human consumption, wastewater Sulphate concentration Range: (10 - 5000) mg/l Gravimetric method PN-ISO 9280:2002
48 Water, water intended for human consumption, wastewater Fluoride concentration Range: (0,100 - 100) mg/l Potentiometric method PN-78/C-04588.03
49 Water, water intended for human consumption, wastewater Total iron concentration Range: (0,010 - 10,00) mg/l Spectrophotometric method PN-ISO 6332:2001 + Ap1:2016-06
50 Water, water intended for human consumption, wastewater Boron concentration Range: (0,05 - 2,50) mg/l Spectrophotometric method PT-7 wydanie nr 1 z dnia 01.07.2019 r. na podstawie testu HACH LANGE
51 Water, water intended for human consumption, wastewater Total organic carbon concentration (TOC Range: (0,30 - 1000) mg/l Infrared range spectrometry method IR. PN-EN 1484:1999
52 Water, water intended for human consumption, wastewater Mercury concentration Range: (0,25 - 5,0) µg/l Atomic absorption spectrometry with amalgamation technique PN-EN ISO 12846:2012 +Ap1:2016-07E
53 Water, water intended for human consumption, wastewater Monocyclic aromatic hydrocarbons (BTEX) concentration Range: benzene (0,5 - 5000) µg/l ethylbenzene (0,5 - 5000) µg/l toluene (0,5 - 5000) µg/l o-xylene (0,5 - 5000) µg/l m+p-xylene (1,0 - 10000) µg/l Headspace gas chromatography with mass spectrometry detection (HS-GC-MS) PN-ISO 11423-1:2002
54 Water, water intended for human consumption, wastewater Sum of BTEX (calculated)
55 Water, water intended for human consumption, wastewater Concentration of highly volatile halogenated hydrocarbon derivatives Range: trichloroethene (1,00 – 200) μg/l tetrachloroethene (1,00 – 200) μg/l tetrachloromethane (1,00 – 200) μg/l 1,2-dichloroethane (1,00 – 200) μg/l Headspace gas chromatography with mass spectrometry detection (HS-GC-MS) PN-EN ISO 10301:2002
56 Water, water intended for human consumption, wastewater Sum of trichloroethene and tetrachloroethene (calculated)
57 Water, water intended for human consumption, wastewater Element concentrations Range: antimony (0,004 – 5,00) mg/l arsenic (0,002 – 5,00) mg/l barium (0,010 – 5,00) mg/l beryllium (0,002 – 5,00) mg/l boron (0,050 – 10,0) mg/l chromium (0,002 – 5,00) mg/l tin (0,050 – 10,0) mg/l zinc (0,020 – 10,0) mg/l phosphorus (0,010 – 50,0) mg/l aluminium (0,020 – 5,00) mg/l cadmium (0,001 – 5,00) mg/l cobalt (0,002 – 5,00) mg/l magnesium (0,500 – 500) mg/l manganese (0,010 – 50,0) mg/l copper (0,010 – 5,00) mg/l molybdenum (0,002 – 5,00) mg/l nickel (0,002 – 5,00) mg/l lead (0,002 – 5,00) mg/l potassium (0,300 – 100) mg/l selenium (0,002 – 5,00) mg/l sodium (0,500 – 100) mg/l silver (0,002 – 5,00) mg/l strontium (0,002 – 10,0) mg/l thallium (0,010 – 5,00) mg/l titanium (0,002 – 5,00) mg/l vanadium (0,002 – 5,00) mg/l calcium (2,00 – 500) mg/l iron (0,010 – 50,0) mg/l Inductively coupled plasma optical emission spectrometry (ICP-OES) PN-EN ISO 11885:2009
58 Water, water intended for human consumption Aluminium concentration Range: (0,050 - 3,00) mg/l Spectrophotometric method PN-92/C-04605.02
59 Water, water intended for human consumption Free cyanide concentration Range: (0,01 - 0,30) mg/l Photometric method PT-6 wydanie nr 1 z dnia 01.07.2019 r. na podstawie testu MERCK
60 Water, water intended for human consumption Colour Range: (5 - 100) mg/l Pt Visual method PN-EN ISO 7887:2012+Ap1:2015-06 Metoda D
61 Water, water intended for human consumption Turbidity Range: (0,20 - 1000) NTU Nephelometric method PN-EN ISO 7027-1:2016-09
62 Water, water intended for human consumption Total calcium and magnesium content (total hardness) Range: (5,0 - 2000) mg /l CaCO3 Titrimetric method PN-ISO 6059:1999
63 Water, water intended for human consumption Free carbon dioxide concentration Range: (2,2 - 220) mg/l Titrimetric method PN-74/C-04547.01
64 Water, water intended for human consumption Aggressive carbon dioxide concentration (calculated) PN-74/C-04547.03 pkt. 2.2
65 Water, water intended for human consumption Threshold flavour number (TFN) Range: (1 - 8) Simplified and full method, paired, non-forced choice PN-EN 1622:2006
66 Water, water intended for human consumption Threshold odour number (TON) Range: (1 - 8) Simplified and full method, paired, non-forced choice PN-EN 1622:2006
67 Water, water intended for human consumption Ozone concentration Range: (0,01 - 1,50) mg/l Spectrophotometric method PT-12 wydanie nr 1 z dnia 04.05.2020 r. na podstawie testu HACH nr 8311 AccuVac Ampuls
68 Water, water intended for human consumption Trihalomethane (THM) concentration Range: trichloromethane (chloroform) (1,00 - 200) μg/l bromodichloromethane (1,00 - 200) μg/l dibromochloromethane (1,00 - 200) μg/l tribromomethane (bromoform) (1,00 - 200) μg/l Gas chromatography method with headspace analysis and mass spectrometry detection (HS-GC-MS) PN-EN ISO 10301:2002
69 Water, water intended for human consumption Sum of THM (calculated)
70 Water Carbonate hardness (calculated) PN-EN ISO 9963-1:2001+Ap1:2004 pkt. 8.2
71 Water Non-carbonate hardness (calculated) PN-EN ISO 9963-1:2001+Ap1:2004 pkt. 8.2 PN-ISO 6059:1999
72 Water Sampling for chemical and physical testing Temperature of the collected water sample Range: (0,50 - 50) °C PN-EN ISO 5667-6:2016-12 z wył. pkt. 7.2 | PN-77/C-04584
73 Water Sampling for chemical and physical testing Temperature of the water sample taken Range: (0,50 - 50) °C Water table level Range: (0,1 - 50) m below ground level PN-ISO 5667-11:2017-10 z wył. pkt. 5.2 | PN-77/C-04584 PT-16 wydanie 2 z dnia 08.10.2021 r.
74 Water intended for human consumption Sampling for chemical and physical testing Temperature of the collected water sample Range: (0,50 - 50) °C PN-ISO 5667-5:2017-10+Ap1:2019-07 PN-77/C-04584
75 Water intended for human consumption Sampling for microbiological testing Temperature of the water sample taken Range: (0,50 - 70) °C PN-EN ISO 19458:2007 PN-77/C-04584
76 Wastewater Settleable solids Range: (0,2 - 100) ml/l Volumetric method PN-72/C-04559.03
77 Wastewater, rainwater, snowmelt water Sampling for chemical and physical testing Manual method Automatic method Temperature of the wastewater sample taken Range: (0,50 - 50) °C PN-ISO 5667-10:2021-11 PN-77/C-04584
78 Soil Sampling for chemical and physical testing PN-ISO 10381-4:2007 PN-ISO 10381-5:2009 PN-R-04031:1997
79 Sewage sludge Waste O) code: 19 08 05 Sampling for chemical, physical and microbiological testing PN-EN ISO 5667-13:2011 p. 6.3.6
80 Waste O) code: 19 08 01, 19 08 02, 19 02 99 Sampling for chemical, physical testing PN-EN ISO 5667-13:2011 p. 6.3.6
81 Drinking water Coliform bacteria count Membrane filtration method PN-EN ISO 9308-1:2014-12 +A1:2017-04
82 Drinking water Escherichia coli count Membrane filtration method
83 Drinking water Intestinal enterococci count Membrane filtration method PN-EN ISO 7899-2:2004
84 Drinking water Total microorganism count at 36 °C Plate method (pour plate) PN-EN ISO 6222:2004
85 Drinking water Total microorganism count at 22 °C Plate method (pour plate)
86 Drinking water Clostridium perfringers count, including spores Membrane filtration method PN-EN ISO 14189:2016-10
87 Drinking water Count of bacteria of the genus Legionella Matrix A: Procedure 5 (BCYE medium) Procedure 7 (GVPC medium) Membrane filtration method PN-EN ISO 11731:2017-08 +Ap1:2019-12
88 Tobacco products: - plant fibres impregnated with nicotine solution (OND mixture) Nicotine content Range: (0,024 - 38,4) mg/g Gas chromatography method with flame ionization detection (GC-FID) ended Method No. 62 2021-12
89 Tobacco products: - plant fibres impregnated with nicotine solution (OND mixture) Concentration of 1,2-propylene glycol, glycerol Range: (0,3 - 5,0) % Gas chromatography with flame ionisation detection (GC-FID) ended Method No. 60 2019-06
90 Tobacco products: nicotine liquid for electronic cigarettes Concentration of organic compounds Range: nicotine (2 - 40) mg/ml nicotine (0,5 - 200) mg/g glycerol (100 - 1000) mg/ml glycerol (100 - 1000) mg/g propylene glycol (100 – 1000) mg/ml propylene glycol (100 – 1000) mg/g Gas chromatography method with flame ionisation detection (GC-FID) ISO 20714:2019 PN-EN ISO 20714:2022-05

Reference standards (62)

ISO 15713:2006
ISO 20714:2019 PN-EN ISO 20714:2022-05
PN-72/C-04559.03
PN-74/C-04547.01
PN-74/C-04547.03 pkt. 2.2
PN-77/C-04584
PN-77/C-04584 PT-16 wydanie 2 z dnia 08.10.2021 r.
PN-78/C-04588.03
PN-82/C-04576.08
PN-92/C-04605.02
PN-C-04576-4:1994
PN-EN 12619:2013-05
PN-EN 13284-1:2018-02
PN-EN 13649:2005
PN-EN 14789:2017-04 PN ISO 10396:2001
PN-EN 14792:2017-04 PN ISO 10396:2001
PN-EN 1484:1999
PN-EN 15058:2017-04 PN ISO 10396:2001
PN-EN 1622:2006
PN-EN 1911:2011
PN-EN 26777:1999
PN-EN 27888:1999
PN-EN ISO 10301:2002
PN-EN ISO 10523:2012
PN-EN ISO 11731:2017-08 +Ap1:2019-12
PN-EN ISO 11885:2009
PN-EN ISO 12846:2012 +Ap1:2016-07E
PN-EN ISO 14189:2016-10
PN-EN ISO 19458:2007 PN-77/C-04584
PN-EN ISO 21877:2020-03
PN-EN ISO 5667-13:2011 p. 6.3.6
PN-EN ISO 5667-6:2016-12 z wył. pkt. 7.2
PN-EN ISO 6222:2004
PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 pkt. 4
PN-EN ISO 7027-1:2016-09
PN-EN ISO 7887:2012+Ap1:2015-06 Metoda D
PN-EN ISO 7899-2:2004
PN-EN ISO 8467:2001
PN-EN ISO 9308-1:2014-12 +A1:2017-04
PN-EN ISO 9963-1:2001+Ap1:2004 pkt. 8.2
PN-EN ISO 9963-1:2001+Ap1:2004 pkt. 8.2 PN-ISO 6059:1999
PN-ISO 10381-4:2007 PN-ISO 10381-5:2009 PN-R-04031:1997
PN-ISO 10396:2001
PN-ISO 11423-1:2002
PN-ISO 5667-10:2021-11 PN-77/C-04584
PN-ISO 5667-11:2017-10 z wył. pkt. 5.2
PN-ISO 5667-5:2017-10+Ap1:2019-07 PN-77/C-04584
PN-ISO 6059:1999
PN-ISO 6332:2001 + Ap1:2016-06
PN-ISO 9280:2002
PN-ISO 9297:1994
PN-Z-04030-7:1994
PN-Z-04030-7:1994 PT-1 wydanie 7 z dnia 02.09.2019 r.
PN-Z-04030-7:1994, PT-1 wydanie 7 z dnia 02.09.2019 r.
PT-12 wydanie nr 1 z dnia 04.05.2020 r. na podstawie testu HACH nr 8311 AccuVac Ampuls
PT-14 wydanie 1 z dnia 12.05.2020 r.
PT-21 wydanie 2 z dnia 30.10.2023 r.
PT-5 wydanie nr 1 z dnia 01.07.2019 r. na podstawie testu MERCK nr 100 597
PT-6 wydanie nr 1 z dnia 01.07.2019 r. na podstawie testu MERCK
PT-7 wydanie nr 1 z dnia 01.07.2019 r. na podstawie testu HACH LANGE
ended Method No. 60 2019-06
ended Method No. 62 2021-12