🇵🇱 EGMAX KATARZYNA MAKSYMIUK PL
EnvironmentElectronics & EMCPetrochemistry & fuels
EGMAX KATARZYNA MAKSYMIUK is a laboratory accredited by PCA under number AB 1257 (Grabówka, Poland). Its accreditation scope covers 44 test methods in the following areas: Environment, Electronics & EMC, Petrochemistry & fuels. Test objects include: Workplace environment - air - air samples collected on filters, Workplace environment - air, Workplace environment - air - air samples collected on sorbent tubes, Environment – electromagnetic field in the vicinity of electric pow….
At a glance
- Accreditation number: PCA AB 1257
- Methods in scope: 44
- Types of test objects: 11
- City: Grabówka, Poland
- Accreditation number
- AB 1257
- Accreditation body
- PCA
- Address
- ZAKŁAD HIGIENY PRACY, ul. Wysoka 7, 15-523 Grabówka
- City
- Grabówka, Poland
What this laboratory tests (11)
- Workplace environment - air - air samples collected on filters — 13 methods
- Workplace environment - air — 7 methods
- Workplace environment - air - air samples collected on sorbent tubes — 4 methods
- Environment – electromagnetic field in the vicinity of electric power substations and power lines — 3 methods
- Workplace environment - air - air samples collected into absorbing solution — 3 methods
- Workplace environment - electromagnetic field in the workspace during the use of magnetotherapy devices — 3 methods
- Workplace environment - electromagnetic field in the workspace during the use of power systems and AC electrical supply installations in the power industry — 3 methods
- General environment − noise from installations, equipment and industrial plants — 2 methods
- Workplace environment - hand-arm vibration — 2 methods
- Workplace environment - noise — 2 methods
- Workplace environment - whole-body vibration — 2 methods
Accreditation scope — test methods (44)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | Workplace environment - air | Sampling for occupational exposure assessment to: - dust agents - inhalable fraction - respirable fraction - metals and their compounds, including - inhalable fraction - respirable fraction - organic substances, including - inhalable fraction - inorganic substances, including - inhalable fraction - thoracic fraction - respirable fraction Personal dosimetry method | PN-Z-04008-7:2002+Az1:2004 | ||
| 2 | Workplace environment - air | Sampling for occupational exposure assessment to: - organic substances - inorganic substances, including - inhalable fraction Stationary method | |||
| 3 | Workplace environment - air | Exposure index (calculated) | |||
| 4 | Workplace environment - air | Gas concentration Range: CO (2,32 – 174) mg/m3 (2 – 150) ppm NO (0,25 – 13,75) mg/m3 (0,2 – 11,0) ppm NO2 (0,077 – 6,69) mg/m3 (0,04 – 3,50) ppm Electrochemical method | Procedura Badawcza PB-04, wydanie 2 z dnia 16.12.2017 r. | ||
| 5 | Workplace environment - air | Exposure indices (calculated) | |||
| 6 | Workplace environment - noise | A-weighted equivalent sound level A-weighted maximum sound level Range: (35 – 135) dB C-weighted peak sound level Range: (45 – 137) dB Direct measurement method | PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 - punkt 10 i strategię 3 - punkt 11 | ||
| 7 | Workplace environment - noise | Noise exposure level referred to: - the 8-hour daily working time - the average weekly working time (calculated) | |||
| 8 | General environment − noise from installations, equipment and industrial plants | A-weighted equivalent sound level Range: (23 – 135) dB Direct measurement method | nr 7 | enia Ministra Klimatu i Środowiska z dnia 07.09.2021 r. (t.j. Dz.U. 2023 | eniem punktu F | ||
| 9 | General environment − noise from installations, equipment and industrial plants | A-weighted equivalent sound pressure level for the reference time T expressed by the indicators LAeqD and LAeqN (calculated) | |||
| 10 | Workplace environment - whole-body vibration | Frequency-weighted effective vibration acceleration Range: (0,04 – 56) m/s2 Direct measurement method | PN-EN 14253+A1:2011 | ||
| 11 | Workplace environment - whole-body vibration | Daily exposure, expressed as the energy-equivalent value for 8 hours of action of the r.m.s. frequency-corrected vibration acceleration dominant among the vibration accelerations determined for three directional components taking into account the appropriate factors (1.4awx, 1.4awy, awz) Exposure lasting 30 minutes or less, expressed as the r.m.s. frequency-weighted vibration acceleration dominant among the vibration accelerations determined for three directional components taking into account the appropriate factors (1.4awx, 1.4awy, awz) (calculated) | |||
| 12 | Workplace environment - hand-arm vibration | Frequency-weighted effective vibration acceleration Range: (0,2 – 80) 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 | ||
| 13 | 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 or 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) | |||
| 14 | Workplace environment - electromagnetic field in the workspace during the use of power systems and AC electrical supply installations in the power industry | Electric field strength - in the frequency range from 45 Hz to 55 Hz Range: 50 V/m – 25 kV/m Direct measurement method | Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4 (90), s. 91 – 150 | ||
| 15 | Workplace environment - electromagnetic field in the workspace during the use of power systems and AC electrical supply installations in the power industry | Magnetic flux density - in the frequency range from 45 Hz to 55 Hz Range: 1 µT – 10 mT Direct measurement method | |||
| 16 | Workplace environment - electromagnetic field in the workspace during the use of power systems and AC electrical supply installations in the power industry | Magnetic field strength - in the frequency range from 45 Hz to 55 Hz (calculated) | |||
| 17 | Workplace environment - electromagnetic field in the workspace during the use of magnetotherapy devices | Electric field strength - in the frequency range from 20 Hz to 1000 Hz Range: 50 V/m – 25 kV/m Direct measurement method | Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4 (90), s. 151 – 180 | ||
| 18 | Workplace environment - electromagnetic field in the workspace during the use of magnetotherapy devices | Magnetic flux density - in the frequency range from 20 Hz – to 1000 Hz Range: 1 µT - 10 mT Direct measurement method | |||
| 19 | Workplace environment - electromagnetic field in the workspace during the use of magnetotherapy devices | Magnetic field strength - in the frequency range 20 Hz – 1000 Hz (calculated) | |||
| 20 | Environment – electromagnetic field in the vicinity of electric power substations and power lines | Electric field strength: - in the frequency range 50Hz Range: 50 V/m – 25 kV/m Direct measurement method | enia Ministra Klimatu z dnia 17.02.2020 r. (Dz.U. 2022 | ||
| 21 | Environment – electromagnetic field in the vicinity of electric power substations and power lines | Magnetic flux density - in the frequency range 50Hz Range: 1 µT – 10 mT Direct measurement method | |||
| 22 | Environment – electromagnetic field in the vicinity of electric power substations and power lines | Magnetic field strength: - in the frequency range 50Hz (calculated) | |||
| 23 | Workplace environment - air | Concentration of harmful dust agents - inhalable fraction: - Apatites and phosphorites - Portland cement - Titanium dioxide - Natural graphite - Synthetic graphite - Kaolin - Amorphous and synthetic silica - Wood dust - Flour dust - Dusts not classified according to toxicity - Organic dusts of animal and plant origin except wood and flour dust - Calcium sulphate (VI) (gypsum) - Carbon black - Talc - Coal (hard, brown) - Magnesium calcium carbonate (dolomite) - Silicon carbide, non-fibrous Range : (0,20 – 16,67) mg/m3 Gravimetric method | PN-Z-04507:2022-05 PN-Z-04507:2022-05/Ap1:2022-08 | ||
| 24 | 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 dust - Talc - Coal (hard coal, lignite) Range: (0,16 – 15,15) mg/m3 Gravimetric method | PN-Z-04508:2022-05 PN-Z-04508:2022-05/Ap1:2022-08 | ||
| 25 | Workplace environment - air - air samples collected on filters | Crystalline silica (quartz, cristobalite) concentration/content – respirable fraction Range: (0,006 – 0,63) mg/m3 (0,005 – 0,5) mg in the sample Fourier transform infrared spectrometry method (FT- IR) | Podstawy i Metody Oceny Środowiska Pracy 2014, 3 (81), str. 103-119 | ||
| 26 | Workplace environment - air - air samples collected into absorbing solution | Concentration/content of ammonia Range: (1,25 – 60,00) mg/m3 (0,012 – 0,300) mg in the sample Spectrophotometric method | PN-71/Z-04041 | ||
| 27 | Workplace environment - air - air samples collected into absorbing solution | Concentration/content of formaldehyde Range: (0,028 – 1,389) mg/m3 (0,00025 – 0,050) mg in the sample Spectrophotometric method | PN-76/Z-04045/04 | ||
| 28 | Workplace environment - air - air samples collected into absorbing solution | Concentration/content of chlorine Range: (0,031 – 1,000) mg/m3 (0,00025 – 0,00600) mg in the sample Spectrophotometric method | PN-75/Z-04037/03 | ||
| 29 | Workplace environment - air - air samples collected on filters | Concentration/content of highly refined mineral oil excluding metalworking fluids - inhalable fraction Range: (0,5 – 10) mg/m3 (0,3 – 6) mg in the sample Spectrophotometric method | PN-Z-04108-6:2006 PN-Z-04108-6:2006/Az1:2009 | ||
| 30 | Workplace environment - air - air samples collected on filters | Concentration/content of chromium (VI) compounds Range: (0,001 – 0,050) mg/m3 (0,0007 – 0,0360) mg in the sample Spectrophotometric method | PN-87/Z-04126/02 | ||
| 31 | Workplace environment - air - air samples collected on filters | Concentration/content of manganese and its inorganic compounds calculated as Mn – inhalable fraction – respirable fraction Range: (0,004 – 0,555) mg/m3 (0,003 – 0,400) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04472:2015-10 PN-Z-04472:2015-10/Ap1:2015-12 | ||
| 32 | Workplace environment - air - air samples collected on filters | Concentration/ content of iron oxides, calculated as Fe Iron (III) oxide Iron (II) oxide Triiron tetraoxide - inhalable fraction - respirable fraction Range: (0,14 – 20,00) mg/m3 (0,10 – 7,92) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04469:2015-10 | ||
| 33 | Workplace environment - air - air samples collected on filters | Concentration/ content of lead and its inorganic compounds - calculated as Pb - inhalable fraction Range: (0,0035 – 0,1389) mg/m3 (0,0025 – 0,1000) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04487:2017-10 | ||
| 34 | Workplace environment - air - air samples collected on filters | Concentration/ content of copper and its inorganic compounds, calculated as Cu Range: (0,014 – 0,486) mg/m3 (0,01 – 0,35) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04106-3:2002 | ||
| 35 | Workplace environment - air - air samples collected on filters | Concentration/ content of cadmium and its inorganic compounds - calculated as Cd - inhalable fraction - respirable fraction Range: (0,0002 – 0,0278) mg/m3 (0,00015 – 0,02000) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04102-3:2013-10 | ||
| 36 | Workplace environment - air - air samples collected on filters | Concentration/ content of sodium hydroxide Range: (0,032 – 4,400) mg/m3 (0,023 – 3,170) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04435:2011 | ||
| 37 | Workplace environment - air - air samples collected on filters | Concentration/ content of calcium oxide - inhalable fraction - respirable fraction Range: (0,025 – 12,00) mg/m3 (0,018 – 2,880) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04442:2013-10 | ||
| 38 | Workplace environment - air - air samples collected on filters | Concentration/ content of calcium hydroxide - inhalable fraction - respirable fraction Range: (0,03 – 12,00) mg/m3 (0,024 – 3,170) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04497:2018-09 | ||
| 39 | Workplace environment - air - air samples collected on filters | Concentration/ content of calcium carbonate - inhalable fraction Range: (0,045 – 25,0) mg/m3 (0,032 – 18,000) mg in the sample Flame atomic absorption spectrometry method (FAAS) | PN-Z-04294:2001 | ||
| 40 | Workplace environment - air - air samples collected on filters | Concentration/ content of zinc oxide - inhalable fraction Range: (0,035 – 12,5) mg/m3 (0,025 – 5,000) mg in the sample Flame atomic absorption spectrometry method (FAAS) | Podstawy i Metody Oceny Środowiska Pracy 2009, nr 1(59), str. 175-180 | ||
| 41 | Workplace environment - air - air samples collected on sorbent tubes | Concentration/ content of organic compounds Range: trimethylbenzene – mixture of isomers (1,2,3-, 1,2,4- and 1,3,5-) (2,5 – 340,0) mg/m3 (0,09 – 7,20) mg in the sample acetone (14,0 – 3600,0) mg/m3 (0,5 – 21,6) mg in the sample acetonitrile (2,5 – 2800,0) mg/m3 (0,09 – 5,04) mg in the sample benzene (0,28 – 3,33) mg/m3 (0,09 – 1,03) ppm (0,01 – 0,12) mg in the sample extraction naphtha (22 – 3000) mg/m3 (0,78 – 36,00) mg in the sample cyclohexane (8,3 – 2000,0) mg/m3 (0,3 – 11,5) mg in the sample dichloromethane (3,6 – 700,0) mg/m3 (1,02 – 198,63) ppm (0,13 – 6,34) mg in the sample ethanol (30 – 3800) mg/m3 (0,5 – 11,4) mg in the sample ethylbenzene (2,8 – 800,0) mg/m3 (0,1– 14,5) mg in the sample hexane (3,6 – 150,0) mg/m3 (0,13 – 5,20) mg in the sample xylene – mixture of isomers (1,2-, 1,3- and 1,4-) (2,5 – 400,0) mg/m3 (0,09 – 7,20) mg in the sample n-butyl acetate (1,25 – 1440,00) mg/m3 (0,22 – 17,30) mg in the sample ethyl acetate (15,6 – 3000,00) mg/m3 (4,27 – 820,57) ppm (0,56 – 18,00) mg in the sample propan-2-ol (13,9 – 2160,0) mg/m3 (0,5 – 10,8) mg in the sample styrene (2,8 – 200,0) mg/m3 (0,1 – 3,6) mg in the sample toluene (2,8 – 400,0) mg/m3 (0,1 – 7,2) mg in the sample Gas chromatography method with flame ionisation detection (GC-FID) | Procedura Badawcza PB-05, wydanie 10 z dnia 04.11.2023 r. | ||
| 42 | Workplace environment - air - air samples collected on sorbent tubes | Concentration/ content of organic compounds Range: 1-methoxypropan-2-ol (3,6 – 720,0) mg/m3 (0,17 – 6,50) mg in the sample butan-1-ol (2,2 – 300,0) mg/m3 (0,09– 3,60) mg in the sample propan-1-ol (propyl alcohol) (5,6 – 1200,0) mg/m3 (0,2 – 14,4) mg in the sample tetrachloroethene (8,1 – 340,0) mg/m3 (1,18 – 49,41) ppm (0,29 – 6,32) mg in the sample methanol (3,3 – 600,0) mg/m3 (0,12 – 3,60) mg in the sample pentane (11 – 6000) mg/m3 (0,4 – 18,0) mg in the sample heptane (1,5 – 4000,0) mg/m3 (0,4 – 22,0) mg in the sample white spirit (22,5 – 1800,0) mg/m3 (0,45 – 21,60) mg in the sample kerosene (3,3 – 600,0) mg/m3 (0,1 – 7,2) mg in the sample Gas chromatography method with flame ionisation detection (GC-FID) | Procedura Badawcza PB-05, wydanie 10 z dnia 04.11.2023 r. | ||
| 43 | Workplace environment - air - air samples collected on sorbent tubes | Concentration/ content of phenol Range: (0,59 – 32,00) mg/m3 (0,02 – 0,72) mg in the sample Gas chromatography method with flame ionisation detection (GC-FID) | Procedura Badawcza PB-06, wydanie 2 z dnia 04.11.2023 r. | ||
| 44 | Workplace environment - air - air samples collected on sorbent tubes | Concentration/ content of acetic acid Range: (1,39 – 56,67) mg/m3 (0,56 – 22,74) ppm (0,05 – 1,5) mg in the sample Gas chromatography method with flame ionisation detection (GC-FID) | PN-Z-04323:2004 | ||
Reference standards (32)
PN-71/Z-04041
PN-75/Z-04037/03
PN-76/Z-04045/04
PN-87/Z-04126/02
PN-EN 14253+A1:2011
PN-EN ISO 5349-1: 2004 PN-EN ISO 5349-2: 2004 PN-EN ISO 5349-2: 2004/A1:2015-11
PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 - punkt 10 i strategię 3 - punkt 11
PN-Z-04008-7:2002+Az1:2004
PN-Z-04102-3:2013-10
PN-Z-04106-3:2002
PN-Z-04108-6:2006 PN-Z-04108-6:2006/Az1:2009
PN-Z-04294:2001
PN-Z-04323:2004
PN-Z-04435:2011
PN-Z-04442:2013-10
PN-Z-04469:2015-10
PN-Z-04472:2015-10 PN-Z-04472:2015-10/Ap1:2015-12
PN-Z-04487:2017-10
PN-Z-04497:2018-09
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
Podstawy i Metody Oceny Środowiska Pracy 2009, nr 1(59), str. 175-180
Podstawy i Metody Oceny Środowiska Pracy 2014, 3 (81), str. 103-119
Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4 (90), s. 151 – 180
Podstawy i Metody Oceny Środowiska Pracy 2016, nr 4 (90), s. 91 – 150
Procedura Badawcza PB-04, wydanie 2 z dnia 16.12.2017 r.
Procedura Badawcza PB-05, wydanie 10 z dnia 04.11.2023 r.
Procedura Badawcza PB-06, wydanie 2 z dnia 04.11.2023 r.
enia Ministra Klimatu i Środowiska z dnia 07.09.2021 r. (t.j. Dz.U. 2023
enia Ministra Klimatu z dnia 17.02.2020 r. (Dz.U. 2022
eniem punktu F
nr 7