🇵🇱 CE2 TECH CONSULTING M. DZIEWA I WSPÓLNICY Sp. j. PL
环境
CE2 TECH CONSULTING M. DZIEWA I WSPÓLNICY Sp. j. 是由 PCA 认可的实验室,认可编号 AB 974(Lublin,波兰)。认可范围涵盖 86 项检测方法,涉及以下领域:环境。检测对象包括:废气、自动测量系统(AMS)、General environment - waste gas samples collected into absorbing so…、一般环境 − 来自装置、设备和工业企业的噪声。最常用的技术:分光光度法、非分散红外光谱法(NDIR)、重量法。
要点速览
- 认可编号: PCA AB 974
- 认可范围内方法数: 86
- 检测对象种类: 5
- 所用技术数: 13
- 城市: Lublin, 波兰
- 认可编号
- AB 974
- 认可机构
- PCA
- 地址
- LABORATORIUM BADAŃ ŚRODOWISKOWYCH, ul. Powstania Styczniowego 95E/2, 20-706 Lublin
- 城市
- Lublin, 波兰
该实验室检测什么 (5)
- 废气 — 57 项方法
- 自动测量系统(AMS) — 19 项方法
- General environment - waste gas samples collected into absorbing solutions — 6 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
- 废气除尘设备 — 2 项方法
所用检测技术 (13)
- 分光光度法 — 8 项方法
- 非分散红外光谱法(NDIR) — 7 项方法
- 重量法 — 5 项方法
- 钍射气法 — 5 项方法
- 电位法 — 3 项方法
- 顺磁法 — 3 项方法
- Adsorption and condensation-adsorption method — 2 项方法
- 化学发光法 — 2 项方法
- Continuous flame ionization detection method (FID) — 1 项方法
- Continuous flame ionization detection method FID — 1 项方法
- Non-dispersive infrared spectrometry method (NDIR); Chemiluminescence method; Electrochemical method — 1 项方法
- Stagnation pressure method; Anemometric method — 1 项方法
- 直接测量法 — 1 项方法
认可范围 — 项检测方法 (86)
| 序号 | 检测对象 | 方法 / 参数 | 技术 | 依据文件 | |
|---|---|---|---|---|---|
| 检测方法 | |||||
| 1 | 废气 | 粉尘浓度测定采样 | PN-Z-04030-7:1994 | ||
| 2 | 废气 | 粉尘浓度 范围 (0,001 – 100) g/m3 |
重量法 | PN-Z-04030-7:1994 | |
| 3 | 废气 | 粉尘排放量(计算值) | PN-Z-04030-7:1994 | ||
| 4 | 废气 | Gas volume flow rate for dynamic pressures > 10 Pa Prędkość 范围 (1 – 6) m/s |
Stagnation pressure method; Anemometric method | PN-Z-04030-7:1994 | |
| 5 | 废气 | Concentration of nitrogen monoxide, nitrogen oxides NO (2,7-1340) mg/m3 NOx (4,1 - 2050) mg/m3 |
化学发光法 | PN-EN 14792:2017-04 | |
| 6 | 废气 | NO, NOx emission (NO and NO2 calculated as NO2) (calculated) | PN-EN 14792:2017-04 | ||
| 7 | 废气 | Concentration of sulphur dioxide, carbon monoxide, carbon dioxide SO2 (5,7 - 3000) mg/m3 CO (2,5 - 6250) mg/m3 CO2 (0,5 - 25) % Stężenie tlenków azotu 范围 (4,1 - 2050) mg/m3 氧浓度 范围 (0,5 - 23) % |
Non-dispersive infrared spectrometry method (NDIR); Chemiluminescence method; Electrochemical method | PN-ISO 10396:2001 | |
| 8 | 废气 | SO2, CO, CO2 emission (calculated) | PN-ISO 10396:2001 | ||
| 9 | 废气 | 一氧化碳浓度 范围 (2,5 - 6250) mg/m3 |
非分散红外光谱法(NDIR) | PN-EN 15058:2017-04 | |
| 10 | 废气 | 氧浓度 范围 (0,5 - 21) % |
顺磁法 | PN-EN 14789:2017-04 | |
| 11 | 废气 | Sampling for determination of the concentration of individual gaseous organic compounds | PN-EN 13649:2005 | ||
| 12 | 废气 | 单项气态有机化合物排放量(计算值) | PN-EN 13649:2005 | ||
| 13 | 废气 | Sampling for determination of hydrogen chloride concentration | PN-EN 1911:2011 | ||
| 14 | 废气 | Hydrogen chloride concentration 范围 (0,1 - 5000) mg/m3 |
分光光度法 | PN-EN 1911:2011 | |
| 15 | 废气 | HCl emission (calculated) | PN-EN 1911:2011 | ||
| 16 | 废气 | 粉尘浓度测定采样 | PN-EN 13284-1:2018-02 | ||
| 17 | 废气 | 粉尘浓度 范围 (0,2 – 50) mg/m3 |
重量法 | PN-EN 13284-1:2018-02 | |
| 18 | 废气 | 粉尘排放量(计算值) | PN-EN 13284-1:2018-02 | ||
| 19 | 废气 | Sampling for determination of metal concentrations: As, Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Tl, V | PN-EN 14385:2025-05 | ||
| 20 | 废气 | Emission of metals: As, Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Tl, V (calculated) | PN-EN 14385:2025-05 | ||
| 21 | 废气 | Water vapour concentration (H2O) 范围 (4– 40) % obj. |
Adsorption and condensation-adsorption method | PN-EN 14790:2017-04 | |
| 22 | 废气 | Sampling for the determination of hydrogen fluoride | ISO 15713:2006 CEN/TS 17340:2020-09 | ||
| 23 | 废气 | Hydrogen fluoride concentration 范围 (0,02 - 200) mg/m3 |
电位法 | ISO 15713:2006 CEN/TS 17340:2020-09 | |
| 24 | 废气 | HF emission (calculated) | ISO 15713:2006 CEN/TS 17340:2020-09 | ||
| 25 | 废气 | Sampling for determination of sulfur dioxide | PN-EN 14791:2017-04 | ||
| 26 | 废气 | Sulphur dioxide concentration 范围 (0,8 - 5000) mg/m3 |
钍射气法 | PN-EN 14791:2017-04 | |
| 27 | 废气 | Sulphur dioxide emission (calculated) | PN-EN 14791:2017-04 | ||
| 28 | 废气 | Sampling for determination of, H2SO4, SO3 | PB-2/Tech/10 wyd. B z dnia 08.01.2019 r. | ||
| 29 | 废气 | H2SO4, SO3 concentration 范围 (1,3 - 5000) mg/m3 |
钍射气法 | PB-2/Tech/10 wyd. B z dnia 08.01.2019 r. | |
| 30 | 废气 | Emission of H2SO4, SO3 (calculated) | PB-2/Tech/10 wyd. B z dnia 08.01.2019 r. | ||
| 31 | 废气 | Sampling for determination of total mercury concentration | PN-EN 13211+AC:2006 | ||
| 32 | 废气 | Mercury emission (calculated) | PN-EN 13211+AC:2006 | ||
| 33 | 废气 | Sampling of PCDD/PCDF | PN-EN 1948-1:2006 +Ap1:2017-08 | ||
| 34 | 废气 | PCDD/PCDF emission (calculated) | PN-EN 1948-1:2006 +Ap1:2017-08 | ||
| 35 | 废气 | 以总气态有机碳表示的气态与蒸气态有机物浓度 范围 (1,0 – 250) mg/m3 |
Continuous flame ionization detection method FID | PN- EN 12619:2013-05 | |
| 36 | 废气 | 以总气态有机碳表示的气态与蒸气态有机物排放量(计算值) | PN- EN 12619:2013-05 | ||
| 37 | 废气 | Concentration of carbon monoxide, carbon dioxide CO (2,5 – 6250) mg/m3 CO2 (0,5 – 25) % |
非分散红外光谱法(NDIR) | PN-ISO-10396:2001 | EPA – Method 205:2019 | |
| 38 | 废气 | Concentration of carbon monoxide, carbon dioxide CO (6250 – 62500) mg/m3 CO2 (25 – 100) % (计算得出) |
PN-ISO-10396:2001 | EPA – Method 205:2019 | ||
| 39 | 废气 | 一氧化碳浓度 范围 (2,5 – 6250) mg/m3 |
非分散红外光谱法(NDIR) | PN-EN 15058:2017-04 | EPA – Method 205:2019 | |
| 40 | 废气 | 一氧化碳浓度 范围 (6250 - 62500) mg/m3 (计算得出) |
PN-EN 15058:2017-04 | EPA – Method 205:2019 | ||
| 41 | 废气 | 氧浓度 范围 (0,5 - 23) % |
顺磁法 | PN-EN 14789:2017-04 | EPA – Method 205:2019 | |
| 42 | 废气 | 氧浓度 范围 (23 – 100) % (计算得出) |
PN-EN 14789:2017-04 | EPA – Method 205:2019 | ||
| 43 | 废气 | Sampling for determination of ammonia concentration | PN-EN ISO 21877:2020-03 | ||
| 44 | 废气 | 氨浓度 范围 (0,02 – 600) mg/m3 |
分光光度法 | PN-EN ISO 21877:2020-03 | |
| 45 | 废气 | Ammonia emission (calculated) | PN-EN ISO 21877:2020-03 | ||
| 46 | 废气 | Sampling for determination of hydrogen sulphide concentration | PB-05/Tech/12 wyd. B z dnia 08.01.2019 r. | ||
| 47 | 废气 | Hydrogen sulphide concentration 范围 (2,0 – 450) mg/m3 |
分光光度法 | PB-05/Tech/12 wyd. B z dnia 08.01.2019 r. | |
| 48 | 废气 | Hydrogen sulphide emission (calculated) | PB-05/Tech/12 wyd. B z dnia 08.01.2019 r. | ||
| 49 | 废气 | Sampling for determination of total mercury concentration (ONTARIO method) | PB-06/Tech/12 wyd. C z dnia 21.11.2019 r. | ||
| 50 | 废气 | Emission of total mercury (calculated) | PB-06/Tech/12 wyd. C z dnia 21.11.2019 r. | ||
| 51 | 废气 | Sampling for determination of PM2,5 and PM10 dust concentration | PN-Z-04030-7:1994 | ||
| 52 | 废气 | Sampling for determination of PM2,5 and PM10 dust concentration | PN-EN 13284-1:2018-02 | ||
| 53 | 废气 | Sampling for determination of metal concentrations: Se, Sn, Zn | PN-EN 14385:2025-05 | ||
| 54 | 废气 | Emission of metals: Se, Sn, Zn (calculated) | PN-EN 14385:2025-05 | ||
| 55 | 废气 | N2O concentration 范围 (1,0 – 130) mg/m3 |
非分散红外光谱法(NDIR) | PN-EN ISO 21258:2010 | |
| 56 | 废气 | Sampling for determination of CH4 concentration | PN-EN ISO 25139:2011 | ||
| 57 | 废气 | CH4 emission (calculated) | PN-EN ISO 25139:2011 | ||
| 58 | General environment - waste gas samples collected into absorbing solutions | Hydrogen chloride content 范围 (0,06 – 180) mg w próbce |
分光光度法 | PN-EN 1911:2011 | |
| 59 | General environment - waste gas samples collected into absorbing solutions | SO2 content 范围 (0,4 – 500) mg w próbce |
钍射气法 | PN-EN 14791:2017-04 | |
| 60 | General environment - waste gas samples collected into absorbing solutions | H2SO4 , SO3 content 范围 (0,7 – 500) mg w próbce |
钍射气法 | PB-2/Tech/10 wyd. B z dnia 08.01.2019 r. | |
| 61 | General environment - waste gas samples collected into absorbing solutions | HF content 范围 (0,02 – 20) mg w próbce |
电位法 | ISO 15713:2006 | |
| 62 | General environment - waste gas samples collected into absorbing solutions | Ammonia content 范围 (0,008 – 40) mg w próbce |
分光光度法 | PN-EN ISO 21877:2020-03 | |
| 63 | General environment - waste gas samples collected into absorbing solutions | Hydrogen sulphide content 范围 (0,12 – 27,00) mg w próbce |
分光光度法 | PB-05/Tech/12 wyd. B z dnia 08.01.2019 r. | |
| 64 | 一般环境 − 来自装置、设备和工业企业的噪声 | A 计权等效声级 范围 (25 − 137) dB |
直接测量法 | Załącznik nr 7 do Rozporządzenia Ministra Klimatu i Środowiska z dnia 07.09.2021 r. (Dz.U. 2023 poz. 1706) z wyłączeniem punktu F | |
| 65 | 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) | Załącznik nr 7 do Rozporządzenia Ministra Klimatu i Środowiska z dnia 07.09.2021 r. (Dz.U. 2023 poz. 1706) z wyłączeniem punktu F | ||
| 66 | 废气除尘设备 | 粉尘浓度 范围 (0,0002 – 100) g/m3 |
重量法 | PN-Z-04030-7:1994 | PN-EN 13284-1:2018-02 | PN-87/M-34129 metoda A | |
| 67 | 废气除尘设备 | Dust removal efficiency (calculated) | PN-Z-04030-7:1994 | PN-EN 13284-1:2018-02 | PN-87/M-34129 metoda A | ||
| 68 | 自动测量系统(AMS) | AMS calibration (QAL2) for: N2O, NH3, Hg | PN-EN 14181:2015-02 | ||
| 69 | 自动测量系统(AMS) | Annual surveillance tests (AST) for: N2O, NH3, Hg | PN-EN 14181:2015-02 | ||
| 70 | 自动测量系统(AMS) | N2O concentration 范围 (1,0 – 130) mg/m3 |
非分散红外光谱法(NDIR) | PN-EN ISO 21258:2010 | |
| 71 | 自动测量系统(AMS) | NH3 concentration 范围 (0,02 – 600) mg/m3 |
分光光度法 | PN-EN ISO 21877:2020-03 | |
| 72 | 自动测量系统(AMS) | Sampling for determination of total mercury concentration | PN-EN 13211+AC:2006 | ||
| 73 | 自动测量系统(AMS) | Total mercury concentration (calculated) | PN-EN 13211+AC:2006 | ||
| 74 | 自动测量系统(AMS) | AMS calibration (QAL2) for: dust, NO, NOx, SO2, CO2 , HF, HCl, O2,CO, H2O, organic substances in the form of gases and vapours expressed as total gaseous organic carbon | PN-EN 14181:2015-02 | ||
| 75 | 自动测量系统(AMS) | Annual surveillance tests (AST) for: dust, NO, NOx, SO2, CO2 , HF, HCl, O2, CO, H2O, organic substances in the form of gases and vapours expressed as total gaseous organic carbon | PN-EN 14181:2015-02 | ||
| 76 | 自动测量系统(AMS) | 粉尘浓度 范围 (0,001 – 100) g/m3 |
重量法 | PN-Z-04030-7:1994 | |
| 77 | 自动测量系统(AMS) | 粉尘浓度 范围 (0,2 – 50) mg/m3 |
重量法 | PN-EN 13284-1:2018-02 | |
| 78 | 自动测量系统(AMS) | Concentration of nitrogen monoxide, nitrogen oxides NO (2,7 - 1340) mg/m3 NOx (4,1 - 2050) mg/m3 |
化学发光法 | PN-EN 14792:2017-04 | |
| 79 | 自动测量系统(AMS) | Sulphur dioxide concentration 范围 (0,8 – 5000) mg/m3 |
钍射气法 | PN-EN 14791:2017-04 | |
| 80 | 自动测量系统(AMS) | CO2 concentration 范围 (0,5 – 25) % |
非分散红外光谱法(NDIR) | PN-ISO 10396:2001 | |
| 81 | 自动测量系统(AMS) | HF concentration 范围 (0,02 - 200) mg/m3 |
电位法 | ISO 15713:2006 CEN/TS 17340:2020-09 | |
| 82 | 自动测量系统(AMS) | CO concentration 范围 (2,5 – 6250) mg/m3 |
非分散红外光谱法(NDIR) | PN-EN 15058:2017-04 | |
| 83 | 自动测量系统(AMS) | O2 concentration 范围 (0,5 – 21) % |
顺磁法 | PN-EN 14789:2017-04 | |
| 84 | 自动测量系统(AMS) | Hydrogen chloride concentration 范围 (0,1 – 5000) mg/m3 |
分光光度法 | PN-EN 1911:2011 | |
| 85 | 自动测量系统(AMS) | 以总气态有机碳表示的气态与蒸气态有机物浓度 范围 (1,0 – 250) mg/m3 |
Continuous flame ionization detection method (FID) | PN- EN 12619:2013-05 | |
| 86 | 自动测量系统(AMS) | Water vapour concentration (H2O) 范围 (4 – 40) % obj. |
Adsorption and condensation-adsorption method | PN-EN 14790:2017-04 | |
引用标准 (27)
EPA – Method 205:2019
ISO 15713:2006
ISO 15713:2006 CEN/TS 17340:2020-09
PB-05/Tech/12 wyd. B z dnia 08.01.2019 r.
PB-06/Tech/12 wyd. C z dnia 21.11.2019 r.
PB-2/Tech/10 wyd. B z dnia 08.01.2019 r.
PN- EN 12619:2013-05
PN-87/M-34129 metoda A
PN-EN 13211+AC:2006
PN-EN 13284-1:2018-02
PN-EN 13649:2005
PN-EN 14181:2015-02
PN-EN 14385:2025-05
PN-EN 14789:2017-04
PN-EN 14790:2017-04
PN-EN 14791:2017-04
PN-EN 14792:2017-04
PN-EN 15058:2017-04
PN-EN 1911:2011
PN-EN 1948-1:2006 +Ap1:2017-08
PN-EN ISO 21258:2010
PN-EN ISO 21877:2020-03
PN-EN ISO 25139:2011
PN-ISO 10396:2001
PN-ISO-10396:2001
PN-Z-04030-7:1994
Załącznik nr 7 do Rozporządzenia Ministra Klimatu i Środowiska z dnia 07.09.2021 r. (Dz.U. 2023 poz. 1706) z wyłączeniem punktu F