🇵🇱 SIEĆ BADAWCZA ŁUKASIEWICZ PL
材料与高分子环境电子与电磁兼容
SIEĆ BADAWCZA ŁUKASIEWICZ 是由 PCA 认可的实验室,认可编号 AB 274(Gliwice,波兰)。认可范围涵盖 14 项检测方法,涉及以下领域:材料与高分子、环境、电子与电磁兼容。检测对象包括:Electrical and electronic equipment and its polymer, textile, paper…、Plastics、Copper and copper alloys、Copper concentrates。最常用的技术:电感耦合等离子体原子发射光谱法(ICP-OES)、气相色谱-质谱法(GC-MS)、汞冷蒸气原子吸收光谱法(CVAAS)。
要点速览
- 认可编号: PCA AB 274
- 认可范围内方法数: 14
- 检测对象种类: 12
- 所用技术数: 6
- 城市: Gliwice, 波兰
- 认可编号
- AB 274
- 认可机构
- PCA
- 地址
- - INSTYTUT METALI NIEŻELAZNYCH, CENTRUM CHEMII ANALITYCZNEJ, ul. Sowińskiego 5, 44-100 Gliwice
- 城市
- Gliwice, 波兰
该实验室检测什么 (12)
- Electrical and electronic equipment and its polymer, textile, paper and electronic components, materials used in the manufacture of electrical and electronic equipment and packaging — 2 项方法
- Plastics — 2 项方法
- Copper and copper alloys — 1 项方法
- Copper concentrates — 1 项方法
- Copper ores and geological materials (copper-bearing sandstones, dolomites and shales) — 1 项方法
- Copper ores, copper concentrates and flotation products — 1 项方法
- Copper, zinc, tin, aluminium and alloys of copper, zinc, tin, aluminium — 1 项方法
- General environment – waste gas and air samples collected into absorbing solution — 1 项方法
- General environment – waste gas and air samples collected on filters — 1 项方法
- General environment: - waste gas samples collected into absorbing solution — 1 项方法
- General environment: - waste gas samples collected on filters — 1 项方法
- Iron and iron alloys — 1 项方法
所用检测技术 (6)
- 电感耦合等离子体原子发射光谱法(ICP-OES) — 5 项方法
- 气相色谱-质谱法(GC-MS) — 2 项方法
- 汞冷蒸气原子吸收光谱法(CVAAS) — 2 项方法
- 滴定法 — 2 项方法
- 电感耦合等离子体质谱法(ICP-MS) — 2 项方法
- Electrogravimetric method and flame atomic absorption spectrometry (FAAS) — 1 项方法
认可范围 — 项检测方法 (14)
| 序号 | 检测对象 | 方法 / 参数 | 技术 | 依据文件 | |
|---|---|---|---|---|---|
| 检测方法 | |||||
| 1 | Copper concentrates | Cu content 范围 (7,00 - 45,00) % |
滴定法 | PB-01/ML wyd. 3 z dn. 16.05.2022 r. | |
| 2 | Copper and copper alloys | Cu content 范围 (60,00 – 99,90) % |
Electrogravimetric method and flame atomic absorption spectrometry (FAAS) | PB-10/ML wyd. 1 z dnia 16.08.2021 r. | |
| 3 | Copper ores and geological materials (copper-bearing sandstones, dolomites and shales) | Cu content 范围 (0,30 - 9,00) % |
滴定法 | PB-02/ML wyd. 2 z dn. 16.05.2022 r. | |
| 4 | General environment: - waste gas samples collected on filters | Content of: As, Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Tl, V, Zn As (0,0001 - 1,00) mg in the sample Cd (0,0001 - 1,00) mg in the sample Cr (0,0002 - 1,00) mg in the sample Co (0,0001 - 1,00) mg in the sample Cu (0,001 - 1,00) mg in the sample Mn (0,0001 - 1,00) mg in the sample Ni (0,001 - 1,00) mg in the sample Pb (0,0002 - 1,00) mg in the sample Sb (0,0001 - 1,00) mg in the sample Tl (0,0001 - 1,00) mg in the sample V (0,0002 - 1,00) mg in the sample Zn (0,001 - 1,00) mg in the sample |
电感耦合等离子体质谱法(ICP-MS) | PN-EN 14385:2005 | |
| 5 | General environment: - waste gas samples collected into absorbing solution | Concentration of: As, Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Tl, V, Zn As (0,001 - 2,00) mg/l Cd (0,0001 - 2,00) mg/l Cr (0,002 - 2,00) mg/l Co (0,001 - 2,00) mg/l Cu (0,01 - 2,00) mg/l Mn (0,001 - 2,00) mg/l Ni (0,01 - 2,00) mg/l Pb (0,002 - 2,00) mg/l Sb (0,001 - 2,00) mg/l Tl (0,0001 - 2,00) mg/l V (0,002 - 2,00) mg/l Zn (0,01 - 2,00) mg/l |
电感耦合等离子体质谱法(ICP-MS) | PN-EN 14385:2005 | |
| 6 | Plastics | Content of: Cd, Pb, Hg, Cr (digested) Cd (0,0005 - 0,015) % Pb (0,0010 - 0,10) % Hg (0,0002 - 0,10) % Cr (roztwarzany) (0,0005 - 0,10) % |
电感耦合等离子体原子发射光谱法(ICP-OES) | PB-15/ML wyd. 1 z dn. 16.08.2021 r. | |
| 7 | Plastics | Cr (VI) content 范围 (0,004 – 0,1) % |
电感耦合等离子体原子发射光谱法(ICP-OES) | PB-06/ML wyd. 3 z dnia 16.08.2021 r. | |
| 8 | Copper, zinc, tin, aluminium and alloys of copper, zinc, tin, aluminium | Content of: Cd, Pb, Hg, Cr Cd (0,0005 - 0,02) % Pb (0,0005 - 0,20) % Hg (0,0005 - 0,20 % Cr (0,0005 - 0,20 )% |
电感耦合等离子体原子发射光谱法(ICP-OES) | PB-11/ML wyd. 2 z dn. 16.08.2021 r. | |
| 9 | Iron and iron alloys | Content of: Cd, Pb, Hg, Cr, As Cd (0,0005-0,02) % Pb (0,0005-0,20) % Hg (0,0005-0,20 % Cr (0,0005-0,20 )% As (0,0005-0,20) % |
电感耦合等离子体原子发射光谱法(ICP-OES) | PB-11/ML wyd. 2 z dn. 16.08.2021 r. | |
| 10 | General environment – waste gas and air samples collected into absorbing solution | 汞浓度 范围 (0,01 - 500) μg w próbce |
汞冷蒸气原子吸收光谱法(CVAAS) | PN-EN 13211+AC:2006 | |
| 11 | General environment – waste gas and air samples collected on filters | 汞浓度 范围 (0,01 - 500) μg w próbce |
汞冷蒸气原子吸收光谱法(CVAAS) | PN-EN 13211+AC:2006 | |
| 12 | Copper ores, copper concentrates and flotation products | Cu content 范围 (0,040 - 46,31) % |
电感耦合等离子体原子发射光谱法(ICP-OES) | PB-05/ML wyd. 2 z dnia 16.08.2021 r. | |
| 13 | Electrical and electronic equipment and its polymer, textile, paper and electronic components, materials used in the manufacture of electrical and electronic equipment and packaging | Content of polybrominated biphenyls (PBB) and polybrominated ethers difenylowych (PBDE) Mono-BB Di-BB Tri-BB Tetra-BB Penta-BB Heksa-BB Hepta-BB Okta-BB Nona-BB Deka-BB Mono-BDE Di-BDE Tri-BDE Tetra-BDE Penta-BDE Heksa-BDE Hepta-BDE Okta-BDE Nona-BDE Deka-BDE 范围 (0,005 - 0,06) % |
气相色谱-质谱法(GC-MS) | PB-08/ML wyd. 3 z dn. 16.08.2021 r. | |
| 14 | Electrical and electronic equipment and its polymer, textile, paper and electronic components, materials used in the manufacture of electrical and electronic equipment and packaging | Phthalate content DIBP - Di-iso-butyl phthalate DBP - Dibutyl phthalate BBP - Benzyl butyl phthalate DEHP - Di-(2-ethylhexyl) phthalate DMEP - Di-(2-methoxyethyl) phthalate DIPP - Di-iso-pentyl phthalate nPIPP - N-pentyl-iso-pentyl phthalate DNPP - Di-n-pentyl phthalate DNHP - Di-n-hexyl phthalate 范围 (0,025 – 0,200) % |
气相色谱-质谱法(GC-MS) | PB-09/ML wyd. 3 z dn. 16.08.2021 | PN-EN 62321-8:2017 | |
引用标准 (12)
PB-01/ML wyd. 3 z dn. 16.05.2022 r.
PB-02/ML wyd. 2 z dn. 16.05.2022 r.
PB-05/ML wyd. 2 z dnia 16.08.2021 r.
PB-06/ML wyd. 3 z dnia 16.08.2021 r.
PB-08/ML wyd. 3 z dn. 16.08.2021 r.
PB-09/ML wyd. 3 z dn. 16.08.2021
PB-10/ML wyd. 1 z dnia 16.08.2021 r.
PB-11/ML wyd. 2 z dn. 16.08.2021 r.
PB-15/ML wyd. 1 z dn. 16.08.2021 r.
PN-EN 13211+AC:2006
PN-EN 14385:2005
PN-EN 62321-8:2017