🇵🇱 POWIATOWA STACJA SANITARNO-EPIDEMIOLOGICZNA PL
Water & wastewaterEnvironmentMicrobiologyMaterials & polymers
POWIATOWA STACJA SANITARNO-EPIDEMIOLOGICZNA is a laboratory accredited by PCA under number AB 581 (Ostrów Mazowiecka, Poland). Its accreditation scope covers 132 test methods in the following areas: Water & wastewater, Environment, Microbiology, Materials & polymers. Test objects include: Workplace environment – air, Water, water intended for human consumption, Swimming pool water, Water intended for human consumption. Most frequently used techniques: Gas chromatography with flame ionization detection (GC-FID), Spectrophotometric method, Flame atomic absorption spectrometry (FAAS).
At a glance
- Accreditation number: PCA AB 581
- Methods in scope: 132
- Types of test objects: 18
- Techniques used: 26
- City: Ostrów Mazowiecka, Poland
- Accreditation number
- AB 581
- Accreditation body
- PCA
- Address
- W OSTROWI MAZOWIECKIEJ, ul. gen. Władysława Sikorskiego 3, 07-300 Ostrów Mazowiecka
- City
- Ostrów Mazowiecka, Poland
What this laboratory tests (18)
- Workplace environment – air — 49 methods
- Water, water intended for human consumption — 36 methods
- Swimming pool water — 11 methods
- Water intended for human consumption — 9 methods
- Water (including swimming pool water) — 4 methods
- Water (including swimming pool water), water intended for human consumption — 4 methods
- Water from bathing sites and sites occasionally used for bathing — 2 methods
- Workplace environment – hand-arm vibration — 2 methods
- Workplace environment – hot microclimate — 2 methods
- Workplace environment – indoor electric lighting — 2 methods
- Workplace environment – moderate microclimate — 2 methods
- Workplace environment – noise — 2 methods
- Workplace environment – whole-body vibration — 2 methods
- Biological indicator for sterilization process control: Sporal A — 1 method
- Biological indicator for sterilization process control: Sporal S — 1 method
- and 3 more
Analytical techniques used (26)
- Gas chromatography with flame ionization detection (GC-FID) — 25 methods
- Spectrophotometric method — 22 methods
- Flame atomic absorption spectrometry (FAAS) — 12 methods
- Membrane filtration method — 10 methods
- Electrothermal atomization atomic absorption spectrometry (ETAAS) — 7 methods
- Direct measurement method — 6 methods
- Ion chromatography with conductometric detection (IC-CD) — 6 methods
- Titrimetric method — 5 methods
- Plate method (pour plate) — 3 methods
- Potentiometric method — 3 methods
- Culture method — 2 methods
- Gravimetric method — 2 methods
- Nephelometric method — 2 methods
- Simplified method, paired, non-forced choice — 2 methods
- Turbidimetric method — 2 methods
- and 11 more
Accreditation scope — test methods (132)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Water (including swimming pool water) | Escherichia coli count | Membrane filtration method | PN-EN ISO 9308-1:2014-12 | PN-EN ISO 9308-1:2014-12/ A1:2017-04 | |
| 2 | Water (including swimming pool water) | Coagulase-positive staphylococci count | Membrane filtration method | Metodyka PZH-ZHK Warszawa 2007 „Gronkowce koagulazododatnie” | |
| 3 | Water (including swimming pool water) | Count of microorganisms at 36 °C | Plate method (pour plate) | PN-EN ISO 6222:2004 | |
| 4 | Water (including swimming pool water) | Pseudomonas aeruginosa count | Membrane filtration method | PN-EN ISO 16266:2009 | |
| 5 | Swimming pool water | Count of bacteria of the genus Legionella Range od 1 jtk/100 ml Matrix B Procedure 7, medium C-GVPC |
Membrane filtration method | PN-EN ISO 11731:2017-08 | PN-EN ISO 11731:2017-08/ Ap1:2019-12 | |
| 6 | Water intended for human consumption | Intestinal enterococci count | Membrane filtration method | PN-EN ISO 7899-2:2004 | |
| 7 | Water intended for human consumption | Clostridium perfringens count (including spores) | Membrane filtration method | PN-EN ISO 14189:2016-10 z wyłączeniem pkt. 8 | |
| 8 | Water intended for human consumption | Count of bacteria of the genus Legionella Range od 1 jtk/100 ml Matrix A Procedure 5, medium A-BCYE Matrix A Procedure 7, medium C-GVPC |
Membrane filtration method | PN-EN ISO 11731:2017-08 | PN-EN ISO 11731:2017-08/ Ap1:2019-12 | |
| 9 | Water intended for human consumption | Count of microorganisms at 22 °C | Plate method (pour plate) | PN-EN ISO 6222:2004 | |
| 10 | Water intended for human consumption | Count of microorganisms at 36 °C | Plate method (pour plate) | PN-EN ISO 6222:2004 | |
| 11 | Water intended for human consumption | Coliform bacteria count | Membrane filtration method | PN-EN ISO 9308-1:2014-12 | PN-EN ISO 9308-1:2014-12/ A1:2017-04 | |
| 12 | Water intended for human consumption | Escherichia coli count | Membrane filtration method | PN-EN ISO 9308-1:2014-12 | PN-EN ISO 9308-1:2014-12/ A1:2017-04 | |
| 13 | Water from bathing sites and sites occasionally used for bathing | Intestinal enterococci count | Membrane filtration method | PN-EN ISO 7899-2:2004 | |
| 14 | Water from bathing sites and sites occasionally used for bathing | Escherichia coli count | Miniaturized MPN method | PN-EN ISO 9308-3:2002 | |
| 15 | Water, water intended for human consumption | Fluoride concentration Range (0,10 – 2,2) mg/l |
Potentiometric method | PN-78/C-04588/03 | |
| 16 | Water, water intended for human consumption | Electrical conductivity Range (84 – 2500) μS/cm |
Conductometric method | PN-EN 27888:1999 | |
| 17 | Water, water intended for human consumption | pH Range 4,0 – 10,0 |
Potentiometric method | PN-EN ISO 10523:2012 | |
| 18 | Water, water intended for human consumption | Chloride concentration Range (5,0 – 250) mg/l |
Titrimetric method | PN-ISO 9297:1994 | |
| 19 | Water, water intended for human consumption | Total content of calcium and magnesium (total hardness) Range (5,0 – 1000) mg/l CaCO3 |
Titrimetric method | PN-ISO 6059:1999 | |
| 20 | Water, water intended for human consumption | Nitrite concentration Range (0,026 – 0,82) mg/l |
Spectrophotometric method | PN-EN 26777:1999 | |
| 21 | Water, water intended for human consumption | Nitrate concentration Range (0,44 – 100) mg/l |
Spectrophotometric method | PN-82/C-04576.08 | |
| 22 | Water, water intended for human consumption | Iron concentration Range (50 – 10000) μg/l |
Spectrophotometric method | PN-ISO 6332:2001 + Ap1:2016-06 | |
| 23 | Water, water intended for human consumption | Turbidity Range (0,20 – 50) NTU |
Nephelometric method | PN-EN ISO 7027-1:2016-09 | |
| 24 | Water, water intended for human consumption | Boron concentration Range (0,1 – 1,0) mg/l |
Spectrophotometric method | PN-75/C-04563/01 | |
| 25 | Water, water intended for human consumption | Boron concentration Range (0,10 – 1,0) mg/l |
Spectrophotometric method | Metoda producenta testu Merck Millipore nr 1.00826 z 07.2024 | |
| 26 | Water, water intended for human consumption | Sulfate concentration Range (2,5 – 250) mg/l |
Turbidimetric method | PN-79/C-04566.10 | |
| 27 | Water, water intended for human consumption | Permanganate index (oxidisability with KMnO4) Range (0,5 – 10) mg/l |
Titrimetric method | P N - EN ISO 8467:2001 | |
| 28 | Water, water intended for human consumption | Ammonium ion concentration Range (0,08 – 5,00) mg/l |
Spectrophotometric method | Metoda producenta testu Merck Millipore nr 1.14752 z 02.2024 | |
| 29 | Water, water intended for human consumption | Free chlorine concentration Range (0,03 – 1,00) mg/l |
Spectrophotometric method | PN-EN ISO 7393-2:2018-04 | |
| 30 | Water, water intended for human consumption | Free chlorine concentration Range (0,05 – 1,0) mg/l |
Spectrophotometric method | Metoda producenta testu Merck Millipore nr 1.00599 z 04.2024 | |
| 31 | Water, water intended for human consumption | Colour Range (4 – 40) mg/l Pt |
Spectrophotometric method | PN-EN ISO 7887:2012 + Ap1:2015-06 Metoda C | |
| 32 | Water, water intended for human consumption | Cyanide concentration Range (10,0 - 100) μg/l |
Spectrophotometric method | PN-80/C- 04603/01 | |
| 33 | Water, water intended for human consumption | Calcium concentration Range (4 - 125) mg/l |
Titrimetric method | PN-ISO 6058:1999 | |
| 34 | Water, water intended for human consumption | Magnesium concentration (calculated) | PN-C-04554-4:1999 | ||
| 35 | Water, water intended for human consumption | Total cyanide concentration Range (10 - 100) μg/l |
Flow injection analysis with spectrophotometric detection (FIA) | PN-EN ISO 14403-1:2012 | |
| 36 | Water, water intended for human consumption | Fluoride concentration Range (0,10 – 1,5) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009 | |
| 37 | Water, water intended for human consumption | Chloride concentration Range (5,0 – 250) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009 | |
| 38 | Water, water intended for human consumption | Nitrite concentration Range (0,050 – 0,60) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009 | |
| 39 | Water, water intended for human consumption | Nitrate concentration Range (1,0 – 60) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009 | |
| 40 | Water, water intended for human consumption | Sulfate concentration Range (5,0 – 250) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009 | |
| 41 | Swimming pool water | Free chlorine concentration Range (0,04 - 4,5) mg/l |
Spectrophotometric method | Metoda producenta testu Merck Millipore nr 1.00599 z 04.2024 | |
| 42 | Swimming pool water | Total chlorine concentration Range (0,04 - 4,5) mg/l |
Spectrophotometric method | Metoda producenta testu Merck Millipore nr 1.00599 z 04.2024 | |
| 43 | Swimming pool water | Combined chlorine concentration (calculated) | Metoda producenta testu Merck Millipore nr 1.00599 z 04.2024 | ||
| 44 | Swimming pool water | Free and total chlorine concentration Range (0,03 – 2,00) mg/l |
Spectrophotometric method | PN-EN ISO 7393-2:2018-04 | Instrukcja I-HK-85 wyd. 2 z dn. 19.10.2022 r. | |
| 45 | Swimming pool water | Combined chlorine concentration (calculated) | PN-EN ISO 7393-2:2018-04 | Instrukcja I-HK-85 wyd. 2 z dn. 19.10.2022 r. | ||
| 46 | Swimming pool water | Permanganate index (oxidisability with KMnO4) Range (0,5 – 10) mg/l |
Titrimetric method | P N - EN ISO 8467:2001 | |
| 47 | Swimming pool water | Redox potential (oxidation-reduction) Range (150 – 1100) mV |
Potentiometric method | PB-HK-26 Wydanie 2 z dnia 10.10.2016 r. | |
| 48 | Swimming pool water | Nitrate concentration Range (0,44 – 100) mg/l |
Spectrophotometric method | PN-82/C-04576.08 | |
| 49 | Swimming pool water | Turbidity Range (0,20 – 50) NTU |
Nephelometric method | PN-EN ISO 7027-1:2016-09 | |
| 50 | Swimming pool water | Nitrate concentration Range (1,0 – 12) mg/l |
Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009 | |
| 51 | Water intended for human consumption | Presence of foreign taste (qualitative method) Threshold flavour number TFN Range 1 |
Simplified method, paired, non-forced choice | PN-EN 1622:2006 | |
| 52 | Water intended for human consumption | Presence of foreign odour (qualitative method) Threshold odour number TON Range 1 |
Simplified method, paired, non-forced choice | PN-EN 1622:2006 | |
| 53 | Water, water intended for human consumption | Lead concentration Range (2,0 – 40) μg/l |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN ISO 15586:2005 | |
| 54 | Water, water intended for human consumption | Cadmium concentration Range (0,30 – 6,0) μg/l |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN ISO 15586:2005 | |
| 55 | Water, water intended for human consumption | Manganese concentration Range (6,0 – 3000) μg/l |
Flame atomic absorption spectrometry (FAAS) | PN-ISO 8288:2002 | |
| 56 | Water, water intended for human consumption | Antimony concentration Range (1,0 – 20) μg/l |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN ISO 15586:2005 | |
| 57 | Water, water intended for human consumption | Chromium concentration Range (10 – 60) μg/l |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN ISO 15586:2005 | |
| 58 | Water, water intended for human consumption | Copper concentration Range (0,050 – 4,0) mg/l |
Flame atomic absorption spectrometry (FAAS) | PN-ISO 8288:2002 | |
| 59 | Water, water intended for human consumption | Nickel concentration Range (5,0 – 40) μg/l |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN ISO 15586:2005 | |
| 60 | Water, water intended for human consumption | Selenium concentration Range (2,0 – 20) μg/l |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN ISO 15586:2005 | |
| 61 | Water, water intended for human consumption | Sodium concentration Range (5,0 – 200) mg/l |
Flame atomic absorption spectrometry (FAAS) | PN-ISO 9964-1:1994+Ap1:2009 | |
| 62 | Water, water intended for human consumption | Mercury concentration Range (0,30 – 4,0) μg/l |
Cold vapour atomic absorption spectrometry (CVAAS) | PN-EN ISO 12846:2012 + Ap1:2016-07 | |
| 63 | Water (including swimming pool water), water intended for human consumption | Concentration of highly volatile halogenated hydrocarbons trichloromethane (chloroform) Range (0,0002 – 0,15) mg/l bromodichloromethane (0,0002 – 0,15) mg/l dibromochloromethane (0,0002 – 0,15) mg/l tribromomethane (bromoform) (0,0002 – 0,15) mg/l tetrachloromethane (carbon tetrachloride) (0,1 – 50) μg/l 1,2-dichloroethane (0,9 – 100) μg/l trichloroethene (0,1 – 50) μg/l tetrachloroethene (0,1 – 50) μg/l |
Gas chromatography with electron capture detection (GC-ECD) | PN-EN ISO 10301:2002 | |
| 64 | Water (including swimming pool water), water intended for human consumption | Sum of THM (calculated) | PN-EN ISO 10301:2002 | ||
| 65 | Water (including swimming pool water), water intended for human consumption | Sum of trichloroethene and tetrachloroethene (calculated) | PN-EN ISO 10301:2002 | ||
| 66 | Water (including swimming pool water), water intended for human consumption | Aluminium concentration Range (10 – 300) μg/l |
Electrothermal atomization atomic absorption spectrometry (ETAAS) | PN-EN ISO 15586:2005 | |
| 67 | Workplace environment – air | Concentration of iron oxides - calculated as Fe Iron (III) oxide Iron (II) oxide Triiron tetraoxide inhalable fraction Range (0,18 – 17,0) mg/m3 respirable fraction Range (0,09 – 8,9) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04469:2025-02 | |
| 68 | Workplace environment – air | Concentration of manganese and its inorganic compounds calculated as Mn inhalable fraction Range (0,0036 – 0,53) mg/m3 respirable fraction Range (0,0038 – 0,55) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04472:2015-10 + Ap1:2015-12 | |
| 69 | Workplace environment – air | Concentration of copper and its inorganic compounds – calculated as Cu Range (0,014 – 0,69) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-79/Z-04106.02 | |
| 70 | Workplace environment – air | Metallic nickel concentration Range (0,009 – 0,55) mg/m3 Concentration of nickel compounds - calculated as Ni inhalable fraction Range (0,0008 – 0,14) mg/m3 respirable fraction Range (0,0008 – 0,15) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04502:2019-10 | |
| 71 | Workplace environment – air | Zinc oxide concentration - calculated as Zn inhalable fraction Range (0,12 – 40,0) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-87/Z-04100/03 | |
| 72 | Workplace environment – air | Concentration of tin and its inorganic compounds, except stannane – calculated as Sn inhalable fraction Range (0,2 – 5,0) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04488:2017-10 | |
| 73 | Workplace environment – air | Concentration of metallic aluminium, aluminium powder (non-stabilised) inhalable fraction Range (0,07 – 6,9) mg/m3 respirable fraction Range (0,074 – 7,3) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04263-1:2012 | |
| 74 | Workplace environment – air | Silver concentration inhalable fraction Range (0,0035 – 0,17) mg/m3 Concentration of silver insoluble compounds expressed as Ag Range (0,0035 – 0,17) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04216-2:2012 | |
| 75 | Workplace environment – air | Concentration of metallic chromium, chromium (II), (III) and (VI) compounds calculated as Cr Range (0,018 – 1,3) mg/m3 |
Flame atomic absorption spectrometry (FAAS) | PN-Z-04434:2011 | |
| 76 | Workplace environment – air | Acetone concentration Range (2,75 – 2250) mg/m3 Toluene concentration Range (2,75 – 475) mg/m3 Ethyl acetate concentration Range (2,75 – 2250) mg/m3 Range (0,75 – 613,9) ppm Xylene concentration - mixture of isomers (1,2-, 1,3-, 1,4-) Range (2,75 – 475) mg/m3 Butan-1-ol concentration Range (2,75 – 475) mg/m3 Ethanol concentration Range (2,75 – 4750) mg/m3 n-Butyl acetate concentration Range (2,75 – 2250) mg/m3 2-methylpropan-1-ol concentration Range (2,75 – 475) mg/m3 2-butoxyethanol concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-89/Z-04023/02 | |
| 77 | Workplace environment – air | Butan-2-one concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04449:2014-06 | |
| 78 | Workplace environment – air | Ethylbenzene concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-79/Z-04081.01 | |
| 79 | Workplace environment – air | Hexane concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04136-3:2003 | |
| 80 | Workplace environment – air | 2-butoxyethyl acetate concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04304:2003 | |
| 81 | Workplace environment – air | Trimethylbenzene concentration - mixture of isomers (1,2,3-, 1,2,4-, 1,3,5-) Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04016-4:1998 | |
| 82 | Workplace environment – air | Styrene concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-86/Z-04152/02 | |
| 83 | Workplace environment – air | Benzene concentration Range (0,16 – 45,0) mg/m3 Range (0,05 – 13,85) ppm |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04016-10:2005 | |
| 84 | Workplace environment – air | Butan-2-ol concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04155-4:1996 | |
| 85 | Workplace environment – air | Heptane concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-84/Z-04138/02 | |
| 86 | Workplace environment – air | Propan-2-ol concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-92/Z-04224/02 | |
| 87 | Workplace environment – air | Octane concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-86/Z-04166/02 | |
| 88 | Workplace environment – air | Pentane concentration Range (2,75 – 4750) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04318:2005 | |
| 89 | Workplace environment – air | Methylcyclohexane concentration Range (2,75 – 4750) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-84/Z-04137/02 | |
| 90 | Workplace environment – air | 1-methoxypropan-2-ol concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04354:2005 | |
| 91 | Workplace environment – air | 4-methylpentan-2-one concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04372:2009 | |
| 92 | Workplace environment – air | 2-methoxy-1-methylethyl acetate concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04119-10:2008 | |
| 93 | Workplace environment – air | Cumene concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04016-6:1998 | |
| 94 | Workplace environment – air | Vinyl acetate concentration Range (0,85 – 150) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-87/Z-04178/02 | |
| 95 | Workplace environment – air | Tetrachloroethene concentration Range (2,75 – 475) mg/m3 Range (0,4 – 68,8) ppm |
Gas chromatography with flame ionization detection (GC-FID) | PN-78/Z-04118/01 | |
| 96 | Workplace environment – air | Cyclohexane concentration Range (2,75 – 2250) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-86/Z-04151/02 | |
| 97 | Workplace environment – air | Cyclohexanone concentration Range (2,75 – 475) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04447:2014-06 | |
| 98 | Workplace environment – air | Isobutyl acetate concentration Range (3,0 – 450) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04520:2020-12 | |
| 99 | Workplace environment – air | Isopropyl acetate concentration Range (3,0 – 2000) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-Z-04119-7:2006 | |
| 100 | Workplace environment – air | Methyl acetate concentration Range (3,0 – 650) mg/m3 |
Gas chromatography with flame ionization detection (GC-FID) | PN-78/Z-04119.01 | |
| 101 | Workplace environment – air | Sampling for the assessment of occupational exposure to: dust agents inhalable fraction respirable fraction metals and their compounds, including inhalable fraction respirable fraction respirable asbestos fibres refractory ceramic fibres refractory ceramic fibres mixed with other man-made mineral fibres respirable man-made mineral fibres excluding refractory ceramic fibres |
Personal dosimetry method | PN-Z-04008-7:2002 + Az1:2004 | |
| 102 | Workplace environment – air | Sampling for the assessment of occupational exposure to: organic substances, including inhalable fraction inorganic substances, including inhalable fraction respirable fraction |
Personal dosimetry method; Stationary method | PN-Z-04008-7:2002 + Az1:2004 | |
| 103 | Workplace environment – air | Exposure index (calculated) | PN-Z-04008-7:2002 + Az1:2004 | ||
| 104 | Workplace environment – air | Hydrogen chloride concentration Range (0,5 – 25,0) mg/m3 |
Turbidimetric method | PN-93/Z-04225/03 | |
| 105 | Workplace environment – air | Formaldehyde concentration Range (0,037 – 3,5) mg/m3 |
Spectrophotometric method | PN-76/Z-04045/02 | |
| 106 | Workplace environment – air | Phenol concentration Range (0,77 – 30,5) mg/m3 |
Spectrophotometric method | PN-70/Z-04044 | |
| 107 | Workplace environment – air | Ammonia concentration Range (1,4 – 92,0) mg/m3 |
Spectrophotometric method | PN-71/Z-04041 | |
| 108 | Workplace environment – air | Carbon monoxide concentration Range (2,4 – 145) mg/m3 Range (2 – 125) ppm |
Electrochemical method | PB-HP-02 Wydanie 4 z dn. 04.07.2024 r. | |
| 109 | Workplace environment – air | Chlorine concentration Range (0,07 – 5,0) mg/m3 |
Spectrophotometric method | PN-75/Z-04037.03 | |
| 110 | Workplace environment – air | Sulphur dioxide concentration Range (0,13 – 5,12) mg/m3 Range (0,05 – 1,9) ppm |
Spectrophotometric method | PN-Z-04015-12:1996 + Ap1:2001 | |
| 111 | Workplace environment – air | Nitrogen oxide concentration Range (0,22 – 23,00) mg/m3 Range (0,18 – 18,4) ppm |
Spectrophotometric method | PN-Z-04009.11:2008 | |
| 112 | Workplace environment – air | Nitrogen dioxide concentration Range (0,067 – 7,00) mg/m3 Range (0,035 – 3,65) ppm |
Spectrophotometric method | PN-Z-04009.11:2008 | |
| 113 | Workplace environment – air | Ozone concentration Range (0,025 – 0,25) mg/m3 |
Spectrophotometric method | PN-Z-04007-2:1994 | |
| 114 | Workplace environment – air | Concentration of harmful dust agents – inhalable fraction Apatites and phosphorites Petroleum bitumen Portland cement Titanium dioxide Natural graphite Synthetic graphite Kaolin Amorphous and synthetic silica Wood dusts Flour dusts Dusts not classified according to toxicity Organic dusts of animal and plant origin, excluding wood dust and flour Carbon black Calcium sulfate (VI) (gypsum) Talc Coal (hard, brown) Calcium magnesium carbonate - dolomite Silicon carbide, non-fibrous Man-made mineral fibres, except refractory ceramic fibres Range (0,14 – 20,83) mg/m3 |
Gravimetric method | PN-Z-04507:2022-05 | PN-Z-04507:2022-05/Ap1:2022-08 | |
| 115 | Workplace environment – air | Concentration of harmful dust agents – respirable fraction Apatites and phosphorites Portland cement Natural graphite Amorphous and synthetic silica Organic dusts of animal and plant origin, excluding wood dust and flour Talc Coal (hard, brown) Range (0,08 – 18,94) mg/m3 |
Gravimetric method | PN-Z-04508:2022-05 | PN-Z-04508:2022-05/Ap1:2022-08 | |
| 116 | Workplace environment – noise | A-weighted equivalent sound level Maximum A-weighted sound level Range (45 – 135) dB C-weighted peak sound pressure level Range (60 – 137) dB |
Direct measurement method | PN-N-01307:1994 | PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 3 pkt 11 | |
| 117 | Workplace environment – noise | Noise exposure level normalised to an 8-hour working day or a working week (calculated) | PN-N-01307:1994 | PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 3 pkt 11 | ||
| 118 | Workplace environment – indoor electric lighting | Illuminance Range (5 – 10000) lx |
Direct measurement method | PN-83/E-04040.03 | |
| 119 | Workplace environment – indoor electric lighting | Illuminance uniformity (calculated) | PN-83/E-04040.03 | ||
| 120 | Workplace environment – hand-arm vibration | Frequency-weighted r.m.s. vibration acceleration Range (0,23 – 50) m/s2 |
Direct measurement method | PN-EN ISO 5349-1:2004 | PN-EN ISO 5349-2:2004 | PN-EN ISO 5349-2:2004/A1:2015-11 | |
| 121 | Workplace environment – hand-arm vibration | Daily exposure, expressed as the energy-equivalent for 8 hours of the vector sum of the r.m.s., frequency-weighted vibration accelerations, determined for the three directional components (ahwx, ahwy, ahwz), Exposure lasting 30 minutes and less expressed as the vector sum of the r.m.s., frequency-weighted vibration accelerations, determined for the three directional components (ahwx, ahwy, ahwz) (calculated) | PN-EN ISO 5349-1:2004 | PN-EN ISO 5349-2:2004 | PN-EN ISO 5349-2:2004/A1:2015-11 | ||
| 122 | Workplace environment – whole-body vibration | Frequency-weighted r.m.s. vibration acceleration Range (0,02 – 15) m/s2 |
Direct measurement method | PN-EN 14253+A1:2011 | |
| 123 | Workplace environment – whole-body vibration | Daily exposure, expressed as the energy-equivalent for 8 hours of the r.m.s., frequency-weighted vibration acceleration, dominant among the vibration accelerations, determined for the three directional components taking into account the appropriate factors (1,4awx, 1,4awy, awz), Exposure lasting 30 minutes and less expressed as the r.m.s., frequency-weighted vibration acceleration, dominant among the vibration accelerations, determined for the three directional components taking into account the appropriate factors (1,4awx, 1,4awy, awz) (calculated) | PN-EN 14253+A1:2011 | ||
| 124 | Workplace environment – moderate microclimate | Air temperature Range (-20 – 50) °C Black globe temperature Range (-20 – 50) °C Air humidity Range (20 – 90) % Air velocity Range (0,15 – 5) m/s |
Direct measurement method | PN-EN ISO 7730:2006+Ap2:2016-04 | |
| 125 | Workplace environment – moderate microclimate | PMV index, PPD index (calculated) | PN-EN ISO 7730:2006+Ap2:2016-04 | ||
| 126 | Workplace environment – hot microclimate | Air temperature Range (20 – 50) °C Black globe temperature Range (20 – 50) °C Natural wet bulb temperature Range (20 – 50) °C |
Direct measurement method | PN-EN ISO 7243:2018-01 | |
| 127 | Workplace environment – hot microclimate | WBGT index, WBGTeff index (calculated) | PN-EN ISO 7243:2018-01 | ||
| 128 | Human biological material (faeces, rectal swab), Bacterial strains | Presence and identification of rods of the genera Salmonella, Shigella | Culture method with biochemical and serological confirmation | PB-E-01 Wydanie 2 z dnia 01.07.2004 r. | |
| 129 | Human biological material (faeces) | Presence and identification of rods of the genus Yersinia | Culture method with biochemical confirmation | PB-E-10 Wydanie 1 z dnia 12.12.2007 r. | |
| 130 | Human biological material (faeces, rectal swab) | Presence and identification of parasites | Microscopic method | PB-E-02 Wydanie 2 z dnia 08.08.2008 r. | |
| 131 | Biological indicator for sterilization process control: Sporal A | Presence of indicator microorganisms (Geobacillus stearothermophilus) | Culture method | PB-P-04 w.1 z dn. 16.10.2020 r. | |
| 132 | Biological indicator for sterilization process control: Sporal S | Presence of indicator microorganisms (Bacillus subtilis) | Culture method | PB-P-01 w.4 z dn. 27.08.2021 r. | |
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Instrukcja I-HK-85 wyd. 2 z dn. 19.10.2022 r.
Metoda producenta testu Merck Millipore nr 1.00599 z 04.2024
Metoda producenta testu Merck Millipore nr 1.00826 z 07.2024
Metoda producenta testu Merck Millipore nr 1.14752 z 02.2024
Metodyka PZH-ZHK Warszawa 2007 „Gronkowce koagulazododatnie”
P N - EN ISO 8467:2001
PB-E-01 Wydanie 2 z dnia 01.07.2004 r.
PB-E-02 Wydanie 2 z dnia 08.08.2008 r.
PB-E-10 Wydanie 1 z dnia 12.12.2007 r.
PB-HK-26 Wydanie 2 z dnia 10.10.2016 r.
PB-HP-02 Wydanie 4 z dn. 04.07.2024 r.
PB-P-01 w.4 z dn. 27.08.2021 r.
PB-P-04 w.1 z dn. 16.10.2020 r.
PN-70/Z-04044
PN-71/Z-04041
PN-75/C-04563/01
PN-75/Z-04037.03
PN-76/Z-04045/02
PN-78/C-04588/03
PN-78/Z-04118/01
PN-78/Z-04119.01
PN-79/C-04566.10
PN-79/Z-04081.01
PN-79/Z-04106.02
PN-80/C- 04603/01
PN-82/C-04576.08
PN-83/E-04040.03
PN-84/Z-04137/02
PN-84/Z-04138/02
PN-86/Z-04151/02
PN-86/Z-04152/02
PN-86/Z-04166/02
PN-87/Z-04100/03
PN-87/Z-04178/02
PN-89/Z-04023/02
PN-92/Z-04224/02
PN-93/Z-04225/03
PN-C-04554-4:1999
PN-EN 14253+A1:2011
PN-EN 1622:2006
PN-EN 26777:1999
PN-EN 27888:1999
PN-EN ISO 10301:2002
PN-EN ISO 10304-1:2009
PN-EN ISO 10523:2012
PN-EN ISO 11731:2017-08
PN-EN ISO 11731:2017-08/ Ap1:2019-12
PN-EN ISO 12846:2012 + Ap1:2016-07
PN-EN ISO 14189:2016-10 z wyłączeniem pkt. 8
PN-EN ISO 14403-1:2012
PN-EN ISO 15586:2005
PN-EN ISO 16266:2009
PN-EN ISO 5349-1:2004
PN-EN ISO 5349-2:2004
PN-EN ISO 5349-2:2004/A1:2015-11
PN-EN ISO 6222:2004
PN-EN ISO 7027-1:2016-09
PN-EN ISO 7243:2018-01
PN-EN ISO 7393-2:2018-04
PN-EN ISO 7730:2006+Ap2:2016-04
PN-EN ISO 7887:2012 + Ap1:2015-06 Metoda C
PN-EN ISO 7899-2:2004
PN-EN ISO 9308-1:2014-12
PN-EN ISO 9308-1:2014-12/ A1:2017-04
PN-EN ISO 9308-3:2002
PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 3 pkt 11
PN-ISO 6058:1999
PN-ISO 6059:1999
PN-ISO 6332:2001 + Ap1:2016-06
PN-ISO 8288:2002
PN-ISO 9297:1994
PN-ISO 9964-1:1994+Ap1:2009
PN-N-01307:1994
PN-Z-04007-2:1994
PN-Z-04008-7:2002 + Az1:2004
PN-Z-04009.11:2008
PN-Z-04015-12:1996 + Ap1:2001
PN-Z-04016-10:2005
PN-Z-04016-4:1998
PN-Z-04016-6:1998
PN-Z-04119-10:2008
PN-Z-04119-7:2006
PN-Z-04136-3:2003
PN-Z-04155-4:1996
PN-Z-04216-2:2012
PN-Z-04263-1:2012
PN-Z-04304:2003
PN-Z-04318:2005
PN-Z-04354:2005
PN-Z-04372:2009
PN-Z-04434:2011
PN-Z-04447:2014-06
PN-Z-04449:2014-06
PN-Z-04469:2025-02
PN-Z-04472:2015-10 + Ap1:2015-12
PN-Z-04488:2017-10
PN-Z-04502:2019-10
PN-Z-04507:2022-05
PN-Z-04507:2022-05/Ap1:2022-08
PN-Z-04508:2022-05
PN-Z-04508:2022-05/Ap1:2022-08
PN-Z-04520:2020-12