🇵🇱 GŁÓWNY INSPEKTORAT OCHRONY ŚRODOWISKA PL
水与废水环境
GŁÓWNY INSPEKTORAT OCHRONY ŚRODOWISKA 是由 PCA 认可的实验室,认可编号 AB 085(Warszawa,波兰)。认可范围涵盖 100 项检测方法,涉及以下领域:水与废水、环境。检测对象包括:水 废水、水、Sewage sludge Waste O): code 19 08 05、土壤。
要点速览
- 认可编号: PCA AB 085
- 认可范围内方法数: 100
- 检测对象种类: 13
- 城市: Warszawa, 波兰
- 认可编号
- AB 085
- 认可机构
- PCA
- 地址
- ul. Chmielna 132/134, 00-805 Warszawa, CENTRALNE LABORATORIUM BADAWCZE, ODDZIAŁ W ŁODZI, ul. Lipowa 16
- 城市
- Warszawa, 波兰
该实验室检测什么 (13)
- 水 废水 — 44 项方法
- 水 — 12 项方法
- Sewage sludge Waste O): code 19 08 05 — 10 项方法
- 土壤 — 9 项方法
- Sewage sludge, waste O): code 19 08 05 — 6 项方法
- 污水 — 6 项方法
- Environment - electromagnetic field in the vicinity of electric power substations and power lines — 3 项方法
- Environment - electromagnetic field in the vicinity of radiocommunication installations (broadband measurements) — 2 项方法
- General environment − impulse noise from installations, equipment and industrial plants — 2 项方法
- 一般环境 − 来自装置、设备和工业企业的噪声 — 2 项方法
- 一般环境 − 来自道路、铁路线、有轨电车线的噪声 — 2 项方法
- Sewage sludge, Waste O): code 19 08 05 — 1 项方法
- Soil, waste O): code 19 08 05 — 1 项方法
认可范围 — 项检测方法 (100)
| 序号 | 检测对象 | 方法 / 参数 | 技术 | 依据文件 | |
|---|---|---|---|---|---|
| 检测方法 | |||||
| 1 | 水 | Chromium (Cr+6) concentration Range: (0,003 – 0,50) mg/l Spectrophotometric method | PN-EN ISO 18412:2007 | ||
| 2 | 水 | Dissolved phosphate concentration Range: (0,03 – 50,0) mg/l Spectrophotometric method | PN-EN ISO 6878:2006 pkt. 4 + Ap1:2010+Ap2:2010 | ||
| 3 | 水 | Mercury concentration: Range: (0,0200 – 0,300) µg/l Cold vapour atomic spectrometry method with fluorescence detection (CVAFS) | PN-EN ISO 17852:2009 | ||
| 4 | 水 | Cyanide concentration Range: Total cyanides (0,008 – 0,10) mg/l Free cyanides (0,008 – 0,10) mg/l Flow analysis method with spectrophotometric detection (CFA) | PN-EN ISO 14403-2:2012 | ||
| 5 | 水 | Element concentrations Range: Antimony (0,10 – 100) µg/l Arsenic (1,00 – 100) µg/l Barium (1,00 – 1000) µg/l Beryllium (0,10 – 100) µg/l Boron (5,00 – 10000) µg/l Total chromium (1,00 – 100) µg/l Tin (1,00 – 100) µg/l Zinc (1,00 – 1000) µg/l Aluminium (5,00 – 10000) µg/l Cadmium (0,020 – 100) µg/l Cobalt (1,00 – 100) µg/l Magnesium (0,050 – 100) mg/l Manganese (1,00 – 10000) µg/l Copper (1,00 – 1000) µg/l Molybdenum (1,00 – 100) µg/l Nickel (1,00 – 1000) µg/l Lead (0,30 – 100) µg/l Potassium (0,050 – 100) mg/l Selenium (5,00 – 100) µg/l Sodium (0,050 – 100) mg/l Silver (1,00 – 100) µg/l Thallium (0,10 – 100) µg/l Vanadium (1,00 – 100) µg/l Calcium (0,10 – 200) mg/l Iron (5,00 – 10000) µg/l Titanium (1,00 – 100) µg/l Inductively coupled plasma mass spectrometry (ICP-MS) | PN-EN ISO 17294-2:2024-04 | ||
| 6 | 水 | Concentration of polycyclic aromatic hydrocarbons Range: Benzo(a)pyrene (0,00012 – 2,0) µg/l Benzo(b)fluoranthene (0,0013 – 2,0) µg/l Benzo(k)fluoranthene (0,0013 – 2,0) µg/l Anthracene (0,003 – 2,0) µg/l Fluoranthene (0,002 – 2,0) µg/l Naphthalene (0,002 – 2,0) µg/l Benzo(g,h,i)perylene (0,0012 – 2,0) µg/l Indeno(1,2,3-cd)pyrene (0,0011 – 2,0) µg/l Dibenzo(a,h)anthracene (0,003 – 2,0) µg/l High performance liquid chromatography method with fluorescence detection (HPLC–FLD) Sum of PAH (calculated) | PN-EN ISO 17993:2005 | ||
| 7 | 污水 | Concentration of polycyclic aromatic hydrocarbons Range: Benzo(a)pyrene (0,003 – 2,0) µg/l Benzo(b)fluoranthene (0,003 – 2,0) µg/l Benzo(k)fluoranthene (0,003 – 2,0) µg/l Benzo(g,h,i)perylene (0,003 – 2,0) µg/l Indeno(1,2,3-cd)pyrene (0,003 – 2,0) µg/l Dibenzo(a,h)anthracene (0,003 – 2,0) µg/l High performance liquid chromatography method with fluorescence detection (HPLC–FLD) Sum of PAH (calculated) | PN-EN ISO 17993:2005 | ||
| 8 | 污水 | Mercury concentration Range: (0,000200 – 1,00) mg/l Atomic absorption spectrometry with amalgamation technique | EPA METHOD 7473 02.2007 | ||
| 9 | 污水 | Element concentrations Range: Antimony (0,0100 – 10,0) mg/l Arsenic (0,0100 – 10,0) mg/l Barium (0,0100 – 10,0) mg/l Beryllium (0,0100 – 10,0) mg/l Boron (0,0500 – 10,0) mg/l Total chromium (0,0100 – 10,0) mg/l Tin (0,0100 – 10,0) mg/l Zinc (0,0500 – 10,0) mg/l Aluminium (0,100 – 10,0) mg/l Cadmium (0,0010 – 10,0) mg/l Cobalt (0,0100 – 10,0) mg/l Manganese (0,0100 – 10,0) mg/l Copper (0,0100 – 10,0) mg/l Molybdenum (0,0100 – 10,0) mg/l Nickel (0,0100 – 10,0) mg/l Lead (0,0100 – 10,0) mg/l Selenium (0,0500 – 10,0) mg/l Silver (0,0100 – 10,0) mg/l Thallium (0,0100 – 10,0) mg/l Vanadium (0,0100 – 10,0) mg/l Iron (0,100 – 10,0) mg/l Titanium (0,0100 – 10,0) mg/l Inductively coupled plasma mass spectrometry (ICP-MS) | PN-EN ISO 17294-2:2024-04 | ||
| 10 | 水 废水 | Total organic carbon (TOC) concentration Range: (1,00 – 500) mg/l Infrared range spectrometry method IR | PN-EN 1484:1999 | ||
| 11 | 水 废水 | Nitrite nitrogen concentration − N NO2 Range: (0,004 – 2,0) mg/l Continuous flow analysis (CFA) with spectrophotometric detection | PN-EN ISO 13395:2001 | ||
| 12 | 水 废水 | Nitrite concentration – NO 2 (calculated) | |||
| 13 | 水 废水 | Kjeldahl nitrogen concentration Range: (0,5 – 50,0) mg/l Titrimetric method | PN-EN 25663:2001 | ||
| 14 | 水 废水 | Total nitrogen concentration Sum of N , N and N kjeld NO2 NO3 (calculated) | PB-21/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 15 | 水 废水 | Phosphate concentration Range: (0,03 – 20,0) mg/l Continuous flow analysis method (CFA) with spectrophotometric detection | PN-EN ISO 15681-2:2019-02 | ||
| 16 | 水 废水 | Phosphate phosphorus concentration – P (calculated) | |||
| 17 | 水 废水 | Total suspended solids Range: (2 – 1000) mg/l Gravimetric method | PN-EN 872:2007 + Ap1:2007 | ||
| 18 | 水 废水 | Chromium (Cr+6) concentration Range: (0,02 – 2,0) mg/l Spectrophotometric method | PN-77/C-04604/08 | ||
| 19 | 水 废水 | Anion concentrations: Range: Chlorides (3,5 – 500) mg/l Sulfates (2,0 – 500) mg/l Nitrites (0,25 – 20,0) mg/l Nitrite nitrogen concentration – NNO2 (calculated) Nitrates (1,7 – 100) mg/l Nitrate nitrogen concentration – NNO3 (calculated) Fluorides (0,15 – 10,0) mg/l Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009 +AC:2012 | ||
| 20 | 水 废水 | Total phosphorus concentration Range: (0,05 – 25,0) mg/l Spectrophotometric method | PN-EN ISO 6878:2006 +Ap1:2010+Ap2:2010 | ||
| 21 | 水 废水 | Biochemical oxygen demand - BOD 5 Range: (3,0 – 6000) mg/l O 2 Electrochemical method | PN-EN ISO 5815-1:2019-12 | ||
| 22 | 水 废水 | Biochemical oxygen demand - BOD 5 Range: (0,50 – 8,0) mg/l O 2 Electrochemical method | PN-EN 1899-2:2002 | ||
| 23 | 水 废水 | Chemical oxygen demand COD-Cr Range: (10,0 – 1000) mg/l Spectrophotometric method | PN-ISO 15705:2005 | ||
| 24 | 水 废水 | Mineral oil index Range: (0,06 – 500) mg/l Gas chromatography with flame ionisation detection (GC-FID) | PN-ISO 9377-2:2003 | ||
| 25 | 土壤 | Mercury content Range: (0,0300 – 2,00) mg/kg Atomic absorption spectrometry with amalgamation technique | EPA METHOD 7473 02.2007 | ||
| 26 | 土壤 | Content of elements Range: Arsenic (0,2 – 400) mg/kg Barium (2,0 – 400) mg/kg Total chromium (0,2 – 400) mg/kg Zinc (2,0 – 400) mg/kg Cadmium (0,2 – 400) mg/kg Cobalt (0,2 – 400) mg/kg Copper (2,0 – 400) mg/kg Molybdenum (0,2 – 400) mg/kg Nickel (0,2 – 400) mg/kg Lead (0,2 – 400) mg/kg Inductively coupled plasma mass spectrometry (ICP-MS) method | PN-EN 16173:2012 PN-EN 16171:2017-02 | ||
| 27 | 土壤 | Tin content Range: (2,0 – 400) mg/kg Inductively coupled plasma mass spectrometry (ICP-MS) | PN-EN 16174:2012 PN-EN 16171:2017-02 | ||
| 28 | Sewage sludge Waste O): code 19 08 05 | Mercury content Range: (0,0300 – 2,00) mg/kg Atomic absorption spectrometry with amalgamation technique | EPA METHOD 7473 02.2007 | ||
| 29 | Sewage sludge Waste O): code 19 08 05 | Content of elements Range: Arsenic (0,2 – 400) mg/kg Total chromium (0,2 – 400) mg/kg Zinc (2,0 – 400) mg/kg Cadmium (0,2 – 400) mg/kg Copper (2,0 – 400) mg/kg Nickel (0,2 – 400) mg/kg Lead (0,2 – 400) mg/kg Inductively coupled plasma mass spectrometry (ICP-MS) method | PN-EN 16171:2017-02 | ||
| 30 | Sewage sludge Waste O): code 19 08 05 | Calcium content Range: (0,2 – 200) g/kg (0,02 – 20,0) % Magnesium content Range: (0,02 – 20,0) g/kg (0,002 – 2,0) % Inductively coupled plasma mass spectrometry (ICP-MS) method | PN-EN 16171:2017-02 | ||
| 31 | 水 | Biochemical oxygen demand - BOD 5 Range: (3,0 – 200) mg/l O 2 Electrochemical method | PN-EN ISO 5815-1:2019-12 | ||
| 32 | 水 | Permanganate index Range: (0,5 – 100) mg/l O 2 Titrimetric method | PN-EN ISO 8467:2001 | ||
| 33 | 水 | 色度 范围:(5 – 70) mg/l Pt 目视法 | PN-EN ISO 7887:2012 metoda D | ||
| 34 | 水 | Total phosphorus concentration Range: (0,02 – 4,0) mg/l Spectrophotometric method | PN-EN ISO 6878:2006 + Ap1:2010 +Ap2:2010 | ||
| 35 | 污水 | Biochemical oxygen demand - BOD 5 Range: (3,0 – 6000) mg/l O 2 Electrochemical method | PN-EN ISO 5815-1:2019-12 | ||
| 36 | 污水 | Total phosphorus concentration Range: (0,02 – 400) mg/l Spectrophotometric method | PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010 | ||
| 37 | 水 废水 | Biochemical oxygen demand - BOD 5 Range: (0,5 – 6,0) mg/l O 2 Electrochemical method | PN-EN 1899-2:2002 | ||
| 38 | 水 废水 | 总氮浓度(计算值) | PB-28/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 39 | 水 废水 | Concentration of substances extractable with petroleum ether Range: (1,0 – 2500) mg/l Gravimetric method | PB-27/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 40 | 水 废水 | Total suspended solids Range: (2 – 2000) mg/l Gravimetric method | PN-EN 872:2007 +Ap1:2007 | ||
| 41 | 水 废水 | Phosphate concentration Range: (0,05 – 12) mg/l Spectrophotometric method | PN-EN ISO 6878:2006 +Ap1:2010 +Ap2:2010 | ||
| 42 | 水 废水 | Phosphate concentration Range: (0,06 – 10) mg/l Continuous flow analysis method (CFA) with spectrophotometric detection | PN-EN ISO 15681-2:2019-02 | ||
| 43 | 水 废水 | Nitrate nitrogen concentration Range: (0,30 – 50) mg/l Continuous flow analysis (CFA) with spectrophotometric detection | PN-EN ISO 13395:2001 | ||
| 44 | 水 废水 | Nitrate concentration – NO 3 (calculated) | |||
| 45 | 水 废水 | Ammonium nitrogen concentration Range: (0,10 – 10) mg/l Continuous flow analysis (CFA) with spectrophotometric detection | PN-EN ISO 11732:2007 | ||
| 46 | 水 废水 | Concentration of ammonium ion, ammonia (calculated) | |||
| 47 | 水 废水 | Nitrite nitrogen concentration Range: (0,007 – 1,0) mg/l Continuous flow analysis (CFA) with spectrophotometric detection | PN-EN ISO 13395:2001 | ||
| 48 | 水 废水 | Un-ionised ammonia concentration (calculated) | PB-29/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 49 | 水 废水 | Ammonium nitrogen concentration Range: (0,040 – 100) mg/l Spectrophotometric method | PN-ISO 7150-1:2002 | ||
| 50 | 水 废水 | Kjeldahl nitrogen concentration Range: (0,5 – 250) mg/l Spectrophotometric method | PN-EN 25663:2001 | ||
| 51 | 水 废水 | Chemical oxygen demand - COD-Cr Range: (30,0 – 6000) mg/l O 2 Titrimetric method | PN-ISO 6060:2006 | ||
| 52 | 水 废水 | Chemical oxygen demand - COD-Cr Range: (9,0 – 150) mg/l O 2 Spectrophotometric method | PN-ISO 15705:2005 | ||
| 53 | 水 废水 | Phenol concentration (phenol index) Range: (0,0015 – 5,00) mg/l Continuous flow analysis method (CFA) with spectrophotometric detection | PN-EN ISO 14402:2004 | ||
| 54 | Soil, waste O): code 19 08 05 | Kjeldahl nitrogen content Range: (0,12 – 64) g/kg Spectrophotometric method | PB-35/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 55 | 土壤 | Content of organic substances, mineral substances Range: (100 – 850) g/kg (10 – 85) % Gravimetric method | PB-34/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 56 | 土壤 | Dry matter content / water content Range: (10 – 95) % Gravimetric method | PN-ISO 11465:1999 | ||
| 57 | 土壤 | pH – in KCl, pH - in H O 2 Range: 2,0 – 12,0 Potentiometric method | PN-EN ISO 10390:2022-09 | ||
| 58 | Sewage sludge, waste O): code 19 08 05 | pH Range: 2,0 – 12,0 Potentiometric method | PN-EN ISO 10390:2022-09 | ||
| 59 | Sewage sludge, waste O): code 19 08 05 | Kjeldahl nitrogen content Range: (3,0 – 64) g/kg (0,3 – 6,4) % Spectrophotometric method | PN-EN 13342:2002 | ||
| 60 | Sewage sludge, waste O): code 19 08 05 | Dry matter content / water content Range:(10 – 90) % (100 – 900) g/kg Gravimetric method | PN-EN 12880:2004 | ||
| 61 | Sewage sludge, waste O): code 19 08 05 | Total phosphorus content Range: (1,0 – 20,0) g/kg (0,1 – 2,0) % Spectrophotometric method | PN-EN 14672:2006 PN-EN ISO 6878:2006 | ||
| 62 | Sewage sludge, waste O): code 19 08 05 | Loss on ignition (organic matter content) Range: (5,0 – 90,0)% Gravimetric method | PN-EN 15935:2022-01 | ||
| 63 | Sewage sludge, waste O): code 19 08 05 | Ammonium nitrogen content Range: (0,40 – 20,0) g/kg (0,04 – 2,00) % Spectrophotometric method | PB-42/LO, wydanie 2 z dnia 01.08.2025 r. | ||
| 64 | 水 | Colour Range: (5 – 70) mg/l Pt Spectrophotometric method | PN-EN ISO 7887:2012 Metoda C | ||
| 65 | 水 废水 | Ammonium nitrogen concentration Range: (0,030 – 100) mg/l Spectrophotometric method | PN-ISO 7150-1:2002 | ||
| 66 | 水 废水 | Nitrite nitrogen concentration Range: (0,001 – 5) mg/l Spectrophotometric method | PN-EN 26777:1999 | ||
| 67 | 水 废水 | Kjeldahl nitrogen concentration Range: (1 – 150) mg/l Titrimetric method | PN-EN 25663:2001 | ||
| 68 | 水 废水 | 总氮浓度(计算值) | PB-08/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 69 | 水 废水 | Total phosphorus concentration Range: (0,005 – 50) mg/l Spectrophotometric method | PN-EN ISO 6878:2006 pkt 7 | ||
| 70 | 水 废水 | Dissolved orthophosphate concentration Range: (0,005 – 50,0) mg/l P Spectrophotometric method | PN-EN ISO 6878:2006 pkt. 4 +Ap2:2010 | ||
| 71 | 水 废水 | Total suspended solids Range: 2 mg/l – 3 g/l Gravimetric method | PN-EN 872:2007 + Ap1:2007 | ||
| 72 | 水 废水 | Anionic surfactants (MBAS index) Range: (0,06 – 5) mg/l Spectrophotometric method | PN-EN 903:2002 | ||
| 73 | 水 废水 | Chemical oxygen demand COD-Cr Range: 7,5 mg/l O - 5 g/l O 2 2 Spectrophotometric method | PN-ISO 15705:2005 | ||
| 74 | 土壤 | Dry matter Range: (60,0 – 99,9)% Water content Range: (0,1 – 40,0)% Gravimetric method | PN-ISO 11465:1999 | ||
| 75 | 土壤 | pH - in KCl Range: 2,0 – 12,0 Potentiometric method | PN-EN ISO 10390:2022-09 | ||
| 76 | Sewage sludge Waste O): code 19 08 05 | Total phosphorus content Range: (0,1 – 2,5) % (1,0 – 25) g/kg Spectrophotometric method | PN-EN14672:2006 PN-EN ISO 6878:2006 pkt. 8 +Ap1:2010+Ap2:2010 | ||
| 77 | Sewage sludge Waste O): code 19 08 05 | Ammonium nitrogen content Range: (0,050 – 1,5) % Spectrophotometric method | PB-14/LO, wydanie 4 z dnia 01.08.2025 r. | ||
| 78 | Sewage sludge Waste O): code 19 08 05 | Kjeldahl nitrogen content Range: (0,01 – 5)% Spectrophotometric method | PN-EN 13342:2002 | ||
| 79 | Sewage sludge Waste O): code 19 08 05 | pH - in H O 2 Range: 2,0 – 12,0 Potentiometric method | PN-EN ISO 10390:2022-09 | ||
| 80 | Sewage sludge Waste O): code 19 08 05 | Dry residue, water content Range: (5 – 95)% Gravimetric method | PN-EN 12880:2004 | ||
| 81 | Sewage sludge Waste O): code 19 08 05 | Loss on ignition of dry matter (LOI) / residue on ignition Range: (5,0 – 90,0)% Gravimetric method | PN-EN 15935:2022-01 | ||
| 82 | Sewage sludge Waste O): code 19 08 05 | Presence and number of viable eggs of intestinal parasites Ascaris sp., Toxocara sp., Trichuris sp. Range: from 10 ATT eggs/kg d.m. Microscopic method | PB-19/LO, wydanie 3 z dnia 01.08.2025 r. | ||
| 83 | 一般环境 − 来自装置、设备和工业企业的噪声 | A-weighted equivalent sound level Range: (26 - 135) dB Direct measurement method | nr 7 | enia Ministra Klimatu i Środowiska z dn. 07.09.2021 r. (t. j. Dz.U. 2023 poz. 1706) z wyłączeniem punku F | ||
| 84 | 一般环境 − 来自装置、设备和工业企业的噪声 | 参考时间 T 的 A 计权等效声级,以 LAeqD 和 LAeqN 表示(计算值) | |||
| 85 | General environment − impulse noise from installations, equipment and industrial plants | A-weighted equivalent sound level Range: (26 - 135) dB Direct measurement method | Nr 8 | enia Ministra Klimatu i Środowiska z dnia 07.09.2021 r. (t. j. Dz.U. 2023 | ||
| 86 | General environment − impulse noise from installations, equipment and industrial plants | 参考时间 T 的 A 计权等效声级,以 LAeqD 和 LAeqN 表示(计算值) | |||
| 87 | 一般环境 − 来自道路、铁路线、有轨电车线的噪声 | A-weighted equivalent sound level A-weighted sound exposure level Range: (26 - 135) dB Direct measurement method | Nr 3 | enia Ministra Środowiska z dnia 16.06.2011 r. (Dz.U.2011 nr 140 | nr 288 | eniem punktu H | ||
| 88 | 一般环境 − 来自道路、铁路线、有轨电车线的噪声 | 参考时间 T 的 A 计权等效声级,以 LAeqD 和 LAeqN 表示(计算值) | |||
| 89 | 水 | Sampling for physical and chemical testing Manual method Temperature of water/of the water sample taken Range: (0,0 – 50,0) °C | PN-EN ISO 5667-6:2016-12 PN-ISO 5667-11:2017-10 PN-77/C-04584 | ||
| 90 | 污水 | Sampling for physical and chemical testing Manual/ automatic method Temperature of wastewater/of the wastewater sample taken Range: (0,0 – 50,0) °C | PN-ISO 5667-10:2021:11 PN-77/C-04584 | ||
| 91 | 水 废水 | pH Range: 2,0 – 12,0 Potentiometric method | PN-EN ISO 10523:2012 | ||
| 92 | 水 废水 | Electrical conductivity Range: (10 - 20000) μS/cm Conductometric method | PN-EN 27888:1999 | ||
| 93 | 水 废水 | Dissolved oxygen concentration Range: (0,2 – 15,0) mg/l Electrochemical method | PN-EN ISO 5814:2013-04 | ||
| 94 | 土壤 | 化学与物理检测用样品采集 | PN-ISO 10381-4:2007 PN-ISO 10381-5:2009 | ||
| 95 | Sewage sludge, Waste O): code 19 08 05 | Sampling for physical, chemical and biological testing | PN-EN ISO 5667-13:2011 z wyłączeniem pkt 6.3.3 | ||
| 96 | Environment - electromagnetic field in the vicinity of electric power substations and power lines | Electric field strength: - in the frequency range 50 Hz Range: 1,0 V/m – 50 kV/m Direct measurement method | enia Ministra Klimatu z dnia 17.02.2020 r. (Dz. U. 2022 | ||
| 97 | Environment - electromagnetic field in the vicinity of electric power substations and power lines | Magnetic flux density: - in the frequency range 50 Hz Range 0,1 µT – 10 mT Direct measurement method | |||
| 98 | Environment - electromagnetic field in the vicinity of electric power substations and power lines | Magnetic field strength: - in the frequency range 50 Hz (calculated) | |||
| 99 | Environment - electromagnetic field in the vicinity of radiocommunication installations (broadband measurements) | Electric field strength: - in the frequency range from 10 MHz to 3 GHz Range: (0,3 – 300) V/m - in the frequency range from 80 MHz to 60 GHz Range: (0,8 – 300) V/m Direct measurement method | enia Ministra Klimatu z dnia 17.02.2020 r. (Dz. U. 2022 | ||
| 100 | Environment - electromagnetic field in the vicinity of radiocommunication installations (broadband measurements) | Magnetic field strength: - in the frequency range from 10 MHz to 60 GHz (calculated) | enia Ministra Klimatu z dnia 17.02.2020 r. (Dz. U. 2022 | ||
引用标准 (70)
EPA METHOD 7473 02.2007
Nr 3
Nr 8
PB-08/LO, wydanie 3 z dnia 01.08.2025 r.
PB-14/LO, wydanie 4 z dnia 01.08.2025 r.
PB-19/LO, wydanie 3 z dnia 01.08.2025 r.
PB-21/LO, wydanie 3 z dnia 01.08.2025 r.
PB-27/LO, wydanie 3 z dnia 01.08.2025 r.
PB-28/LO, wydanie 3 z dnia 01.08.2025 r.
PB-29/LO, wydanie 3 z dnia 01.08.2025 r.
PB-34/LO, wydanie 3 z dnia 01.08.2025 r.
PB-35/LO, wydanie 3 z dnia 01.08.2025 r.
PB-42/LO, wydanie 2 z dnia 01.08.2025 r.
PN-77/C-04604/08
PN-EN 12880:2004
PN-EN 13342:2002
PN-EN 14672:2006 PN-EN ISO 6878:2006
PN-EN 1484:1999
PN-EN 15935:2022-01
PN-EN 16171:2017-02
PN-EN 16173:2012 PN-EN 16171:2017-02
PN-EN 16174:2012 PN-EN 16171:2017-02
PN-EN 1899-2:2002
PN-EN 25663:2001
PN-EN 26777:1999
PN-EN 27888:1999
PN-EN 872:2007 + Ap1:2007
PN-EN 872:2007 +Ap1:2007
PN-EN 903:2002
PN-EN ISO 10304-1:2009 +AC:2012
PN-EN ISO 10390:2022-09
PN-EN ISO 10523:2012
PN-EN ISO 11732:2007
PN-EN ISO 13395:2001
PN-EN ISO 14402:2004
PN-EN ISO 14403-2:2012
PN-EN ISO 15681-2:2019-02
PN-EN ISO 17294-2:2024-04
PN-EN ISO 17852:2009
PN-EN ISO 17993:2005
PN-EN ISO 18412:2007
PN-EN ISO 5667-13:2011 z wyłączeniem pkt 6.3.3
PN-EN ISO 5667-6:2016-12 PN-ISO 5667-11:2017-10 PN-77/C-04584
PN-EN ISO 5814:2013-04
PN-EN ISO 5815-1:2019-12
PN-EN ISO 6878:2006 + Ap1:2010 +Ap2:2010
PN-EN ISO 6878:2006 +Ap1:2010 +Ap2:2010
PN-EN ISO 6878:2006 +Ap1:2010+Ap2:2010
PN-EN ISO 6878:2006 pkt 7
PN-EN ISO 6878:2006 pkt. 4 + Ap1:2010+Ap2:2010
PN-EN ISO 6878:2006 pkt. 4 +Ap2:2010
PN-EN ISO 6878:2006+Ap1:2010 +Ap2:2010
PN-EN ISO 7887:2012 Metoda C
PN-EN ISO 7887:2012 metoda D
PN-EN ISO 8467:2001
PN-EN14672:2006 PN-EN ISO 6878:2006 pkt. 8 +Ap1:2010+Ap2:2010
PN-ISO 10381-4:2007 PN-ISO 10381-5:2009
PN-ISO 11465:1999
PN-ISO 15705:2005
PN-ISO 5667-10:2021:11 PN-77/C-04584
PN-ISO 6060:2006
PN-ISO 7150-1:2002
PN-ISO 9377-2:2003
enia Ministra Klimatu i Środowiska z dn. 07.09.2021 r. (t. j. Dz.U. 2023 poz. 1706) z wyłączeniem punku F
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
enia Ministra Środowiska z dnia 16.06.2011 r. (Dz.U.2011 nr 140
eniem punktu H
nr 288
nr 7