🇵🇱 GRUPA AZOTY ZAKŁADY AZOTOWE „PUŁAWY” S.A. PL

PCA AB 1109 • Puławy, 波兰 • 24 项方法

环境

GRUPA AZOTY ZAKŁADY AZOTOWE „PUŁAWY” S.A. 是由 PCA 认可的实验室,认可编号 AB 1109(Puławy,波兰)。认可范围涵盖 24 项检测方法,涉及以下领域:环境。检测对象包括:工作场所环境 — 空气、Workplace environment - electric lighting、Workplace environment − hand-transmitted vibration、Workplace environment − whole-body vibration。

要点速览

  • 认可编号: PCA AB 1109
  • 认可范围内方法数: 24
  • 检测对象种类: 8
  • 城市: Puławy, 波兰
认可编号
AB 1109
认可机构
PCA
地址
LABORATORIUM HIGIENY PRACY, Al. Tysiąclecia Państwa Polskiego 13, 24-110 Puławy
城市
Puławy, 波兰

该实验室检测什么 (8)

认可范围 — 项检测方法 (24)

序号 检测对象 方法 / 参数 技术 依据文件
检测方法
1 工作场所环境 — 空气 Air sampling for occupational exposure assessment to: - dust agents inhalable fraction respirable fraction Personal dosimetry method PN-Z-04008-7:2002 PN-Z-04008-7:2002+Az1:2004
2 工作场所环境 — 空气 Air sampling for occupational exposure assessment to: - organic substances, including inhalable fraction - inorganic substances, including inhalable fraction respirable fraction Personal dosimetry method Stationary method
3 工作场所环境 — 空气 暴露指数(计算得出)
4 工作场所环境 — 空气 Ammonia concentration Range: (1,5 - 45) mg/m3 Spectrophotometric method PN-71/Z-04041 PB-01 Edycja 7 z dnia 16.04.2020 r.
5 工作场所环境 — 空气 Formaldehyde concentration Range: (0,033 - 1,0) mg/m3 Spectrophotometric method PN-76/Z-04045/02 PB-09 Edycja 7 z dnia 14.07.2023 r.
6 工作场所环境 — 空气 Gas concentration Range: CO - (2,3 - 150) mg/m3 (2 -129) ppm NO - (0,25 – 12,5) mg/m3 (0,2 – 10) ppm NO - (0,38 – 9) mg/m3 2 (0,2 – 4,7) ppm CO - (734 - 45750) mg/m3 2 Electrochemical method PB-04 8 z dnia 15.04.2025 r.
7 工作场所环境 — 空气 Benzene concentration Range: (0,11 - 11,53) mg/m3 Gas chromatography with mass spectrometry detection (GC-MS) PN-Z-04016-10:2005 PB-08 Edycja 6 z dnia 16.04.2020 r.
8 工作场所环境 — 空气 Concentration of harmful dust agents – inhalable fraction: - Wood dust - Flour dust - Dusts not classified according to toxicity - Organic dusts of animal and plant origin except wood and flour dust - Coal (hard, brown) - Magnesium calcium carbonate (dolomite) - Calcium sulphate (VI) (gypsum) Range: (0,15 – 20) mg/m3 Gravimetric method PN-Z-04507:2022-05+Ap1:2022-08
9 工作场所环境 — 空气 Concentration of harmful dust agents – respirable fraction: - Organic dusts of animal and plant origin except wood and flour dust - Coal (hard, brown) Range: (0,18 - 20) mg/m3 Gravimetric method PN-Z-04508:2022-05+Ap1:2022-08
10 工作场所环境 — 空气 Crystalline silica (quartz, cristobalite) concentration/content - respirable fraction Range: (0,010 - 0,5) mg/m3 Fourier transform infrared spectrometry method (FT-IR) Podstawy i Metody Oceny Środowiska Pracy 2012, Nr 4 (74), str. 117-130.
11 Workplace environment − hand-transmitted vibration Frequency-weighted r.m.s. vibration acceleration Range: (0,211 - 100) 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
12 Workplace environment − hand-transmitted vibration Daily exposure, expressed as the energy-equivalent value for an 8-hour working day of the vector sum of the frequency-corrected r.m.s. vibration accelerations, determined for the three directional components (a , a , a ) hwx hwy hwz Exposure lasting 30 minutes or less, expressed as the vector sum of the frequency-weighted r.m.s. vibration accelerations, determined for the three directional components (a , a , hwx hwy a ) (calculated) hwz
13 Workplace environment − whole-body vibration Frequency-weighted r.m.s. vibration acceleration Range: (0,0178 - 25) m/s2 Direct measurement method PN-EN 14253 +A1:2011
14 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 (1.4a , 1.4a , a ) wx wy wz 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 (1.4a , 1.4a , a ) wx wy wz (calculated)
15 工作场所环境 — 噪声 A-weighted equivalent sound level A-weighted maximum sound level Range: (35 - 136) dB C-weighted peak sound level Range: (50 - 139) dB Direct measurement method PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej Strategię 2 i Strategię 3 – punkt 10 i 11
16 工作场所环境 — 噪声 Noise exposure level referred to: - the 8-hour daily working time - the average weekly working time (calculated)
17 工作场所环境 — 能量消耗 Air temperature Range: (5 - 35) °C Air flow Range: (10 - 60) dm3/min Direct measurement method PB-03 edycja 6 z dnia 29.05.2024 r.
18 工作场所环境 — 能量消耗 能量消耗(计算值)
19 工作场所环境 — 高温微气候 Air temperature Range: (15 - 60) °C Natural wet bulb temperature Range: (15 - 60) °C Blackened globe temperature Range: (15 - 60) °C Direct measurement method PN-EN ISO 7243:2018-01
20 工作场所环境 — 高温微气候 WBGT index WBGT eff index (calculated)
21 工作场所环境 — 中等微气候 Air temperature Range: (10 - 40) °C Blackened globe temperature Range: (10 - 40) °C Air humidity Range: (25 - 75) % Air velocity Range: (0,15 - 5,0) m/s Direct measurement method PN-EN ISO 7730:2006+Ap2:2016-04
22 工作场所环境 — 中等微气候 PMV 指数 PPD 指数(计算值)
23 Workplace environment - electric lighting Illuminance Range: (0,5 – 9000) lx Direct measurement method PB-05 edycja 5 z dnia 17.03.2022 r.
24 Workplace environment - electric lighting 照度均匀度(计算值)

引用标准 (15)

PB-03 edycja 6 z dnia 29.05.2024 r.
PB-04 8 z dnia 15.04.2025 r.
PB-05 edycja 5 z dnia 17.03.2022 r.
PN-71/Z-04041 PB-01 Edycja 7 z dnia 16.04.2020 r.
PN-76/Z-04045/02 PB-09 Edycja 7 z dnia 14.07.2023 r.
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-EN ISO 7243:2018-01
PN-EN ISO 7730:2006+Ap2:2016-04
PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej Strategię 2 i Strategię 3 – punkt 10 i 11
PN-Z-04008-7:2002 PN-Z-04008-7:2002+Az1:2004
PN-Z-04016-10:2005 PB-08 Edycja 6 z dnia 16.04.2020 r.
PN-Z-04507:2022-05+Ap1:2022-08
PN-Z-04508:2022-05+Ap1:2022-08
Podstawy i Metody Oceny Środowiska Pracy 2012, Nr 4 (74), str. 117-130.