🇵🇱 ZAKŁADY METALOWE DEZAMET S.A. PL
Water & wastewaterEnvironmentConstruction
ZAKŁADY METALOWE DEZAMET S.A. is a laboratory accredited by PCA under number AB 1245 (Nowa Dęba, Poland). Its accreditation scope covers 31 test methods in the following areas: Water & wastewater, Environment, Construction. Test objects include: Water, water intended for human consumption, wastewater, Workplace environment – air, Water, wastewater, Workplace environment – indoor electric lighting.
At a glance
- Accreditation number: PCA AB 1245
- Methods in scope: 31
- Types of test objects: 11
- City: Nowa Dęba, Poland
- Accreditation number
- AB 1245
- Accreditation body
- PCA
- Address
- LABORATORIUM BADAWCZE, ul. Szypowskiego 1, 39-460 Nowa Dęba
- City
- Nowa Dęba, Poland
What this laboratory tests (11)
- Water, water intended for human consumption, wastewater — 15 methods
- Workplace environment – air — 4 methods
- Water, wastewater — 2 methods
- Workplace environment – indoor electric lighting — 2 methods
- Workplace environment – noise — 2 methods
- PCA — 1 method
- Wastewater — 1 method
- Water — 1 method
- Water intended for human consumption — 1 method
- Workplace environment – hand-arm vibration transmitted to the human body — 1 method
- Workplace environment – whole-body vibration — 1 method
Accreditation scope — test methods (31)
| No. | Test object | Methodology / Parameters | Technique | Reference document | |
|---|---|---|---|---|---|
| Test methods | |||||
| 1 | PCA | Scope of accreditation No. AB 1245 | |||
| 2 | Water, wastewater | Chemical oxygen demand - COD Range: (10 – 1500) mg/l O 2 Spectrophotometric method | PN-ISO 15705:2005 | ||
| 3 | Water, wastewater | Total suspended solids (TSS) Range: (5,0 – 500) mg/l Gravimetric method | PN-EN 872:2007+Ap1:2007 | ||
| 4 | Water, water intended for human consumption, wastewater | pH Range: 2,0 – 12,0 Potentiometric method | PN-EN ISO 10523:2012 | ||
| 5 | Water, water intended for human consumption, wastewater | Electrical conductivity Range: (80 – 5000) µS/cm Conductometric method | PN-EN 27888:1999 | ||
| 6 | Water, water intended for human consumption, wastewater | Ammonium nitrogen concentration Range: (0,010 – 3,00) mg/l Spectrophotometric method | PB - 16/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114752 | ||
| 7 | Water, water intended for human consumption, wastewater | Nitrate nitrogen concentration Range: (0,2 – 20,0) mg/l Total nitrogen concentration Range: (0,5 – 15,0) mg/l Spectrophotometric method | PB - 02/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114773 | ||
| 8 | Water, water intended for human consumption, wastewater | Nitrite nitrogen concentration Range: (0,002 – 1,00) mg/l Spectrophotometric method | PB - 17/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114776 | ||
| 9 | Water, water intended for human consumption, wastewater | Chloride concentration Range: (2,5 – 250) mg/l Spectrophotometric method | PB - 03/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114897 | ||
| 10 | Water, water intended for human consumption, wastewater | Chromium (VI) and total chromium concentration Range: (0,010 – 3,00) mg/l Spectrophotometric method Chromium (III) concentration (calculated) | PB - 04/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114758 | ||
| 11 | Water, water intended for human consumption, wastewater | Free cyanide concentration Range: (0,0020 – 0,500) mg/l Total cyanide concentration Range: (0,0020 – 0,500) mg/l Spectrophotometric method Bound cyanide concentration (calculated) | PB - 24/ZS Wydanie 1 z dnia 05.05.2022 r. na podstawie testu Spectroquant® nr 109701 | ||
| 12 | Water, water intended for human consumption, wastewater | Zinc concentration Range: (0,05 – 2,50) mg/l Spectrophotometric method | PB - 07/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114832 | ||
| 13 | Water, water intended for human consumption, wastewater | Phosphate (orthophosphate) concentration Range: (0,20 – 15,30) mg/l Total phosphorus concentration Range: (0,05 – 5,00) mg/l Spectrophotometric method | PB - 08/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114848 | ||
| 14 | Water, water intended for human consumption, wastewater | Copper concentration Range: (0,020 – 6,00) mg/l Spectrophotometric method | PB - 09/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114767 | ||
| 15 | Water, water intended for human consumption, wastewater | Nickel concentration Range: (0,03 – 5,00) mg/l Spectrophotometric method | PB - 10/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114785 | ||
| 16 | Water, water intended for human consumption, wastewater | Sulphate concentration Range: (100 – 1000) mg/l Spectrophotometric method | PB - 12/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114564 | ||
| 17 | Water, water intended for human consumption, wastewater | Concentration of iron (III) and total iron Range: (0,010 – 5,00) mg/l Spectrophotometric method Iron (II) concentration (calculated) | PB - 14/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 100796 | ||
| 18 | Water, water intended for human consumption, wastewater | Anion concentrations Range: chlorides (5 – 400) mg/l nitrates (5 – 400) mg/l nitrate nitrogen (1,13 – 90,4) mg/l nitrites (0,025 – 0,500) mg/l nitrite nitrogen (0,008 – 0,152) mg/l sulfates (15 – 1200) mg/l Ion chromatography with conductometric detection (IC-CD) | PN-EN ISO 10304-1:2009+AC:2012 | ||
| 19 | Wastewater | Sampling for chemical and physical testing By manual and automatic method Temperature of the wastewater sample taken Range: (0 – 50) °C | PN-ISO 5667-10:2021-11 PB - 15/ZS Wydanie 1 z dnia 18.06.2019 r. | ||
| 20 | Water intended for human consumption | Sampling for chemical and physical testing Temperature of the collected water sample Range: (0 – 50) °C | PN-ISO 5667-5:2017-10 PB - 15/ZS Wydanie 1 z dnia 18.06.2019 r. | ||
| 21 | Water | Sampling for chemical and physical testing Temperature of the collected water sample Range: (0 – 50) °C | PN-EN-ISO 5667-6:2016-12 z wyłączeniem pkt. 7.2 | PN-ISO 5667-11:2017-10 PN-88/C-04621 PB - 15/ZS Wydanie 1 z dnia 18.06.2019 r. | ||
| 22 | Workplace environment – noise | A-weighted equivalent sound level A-weighted maximum sound level Range: (25 – 135) dB C-weighted peak sound level Range: (40 – 135) dB Direct measurement method | PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 i 3 – punkty 10 i 11 | ||
| 23 | Workplace environment – noise | Noise exposure level referred to: - the 8-hour daily working time - the average weekly working time (calculated) | |||
| 24 | Workplace environment – indoor electric lighting | Illuminance Range: (20 – 9836) lx Direct measurement method | PN-83/E-04040.03 | ||
| 25 | Workplace environment – indoor electric lighting | Illuminance uniformity (calculated) | |||
| 26 | Workplace environment – hand-arm vibration transmitted to the human body | Frequency-weighted r.m.s. vibration acceleration Range: (0,5 – 100) m/s2 Direct measurement method Daily exposure, expressed as the energy-equivalent value for 8 hours of the vector sum of the frequency-weighted 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 a ) hwx hwy, hwz (calculated) | PN-EN ISO 5349-1:2004 PN-EN ISO 5349-2:2004 PN-EN ISO 5349-2:2004/A1:2015 | ||
| 27 | Workplace environment – whole-body vibration | Frequency-weighted effective vibration acceleration Range: (0,05 – 10) m/s2 Direct measurement method Daily exposure, expressed as the energy-equivalent for 8 hours of action of the frequency-corrected effective vibration acceleration dominant among the vibration accelerations determined for the three directional components, taking into account the relevant factors (1,4·a , 1,4·a a ) wx wy, wz Exposure lasting 30 minutes and less, expressed as the frequency-weighted effective vibration acceleration dominant among the vibration accelerations determined for the three directional components, taking into account the relevant factors (1,4·a , 1,4·a a ) wx wy, wz (calculated) | PN-EN 14253+A1:2011 | ||
| 28 | Workplace environment – air | Sampling for occupational exposure assessment to: - dust agents - inhalable fraction - respirable fraction - inorganic compounds, including - respirable fraction - organic substances, including - inhalable fraction - metals and their compounds, including - inhalable fraction - respirable fraction Personal dosimetry method | PN-Z-04008/07:2002+Az1:2004 | ||
| 29 | Workplace environment – air | Exposure index (calculated) | |||
| 30 | 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) - Calcium carbonate - Silicon carbide, non-fibrous Range: (0,14 – 20,0) mg/m3 Gravimetric method | PN-Z-04507:2022-05 PN-Z-04507:2022-05/Ap1:2022-08 | ||
| 31 | 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 except wood and flour dust - Talc - Coal (hard, brown) Range: (0,10 – 20,0) mg/m3 Gravimetric method | PN-Z-04508:2022-05 PN-Z-04508:2022-05/Ap1:2022-08 | ||
Reference standards (28)
PB - 02/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114773
PB - 03/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114897
PB - 04/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114758
PB - 07/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114832
PB - 08/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114848
PB - 09/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114767
PB - 10/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114785
PB - 12/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114564
PB - 14/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 100796
PB - 16/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114752
PB - 17/ZS Wydanie 1 z dnia 18.06.2019 r. na podstawie testu Spectroquant® nr 114776
PB - 24/ZS Wydanie 1 z dnia 05.05.2022 r. na podstawie testu Spectroquant® nr 109701
PN-83/E-04040.03
PN-EN 14253+A1:2011
PN-EN 27888:1999
PN-EN 872:2007+Ap1:2007
PN-EN ISO 10304-1:2009+AC:2012
PN-EN ISO 10523:2012
PN-EN ISO 5349-1:2004 PN-EN ISO 5349-2:2004 PN-EN ISO 5349-2:2004/A1:2015
PN-EN-ISO 5667-6:2016-12 z wyłączeniem pkt. 7.2
PN-ISO 15705:2005
PN-ISO 5667-10:2021-11 PB - 15/ZS Wydanie 1 z dnia 18.06.2019 r.
PN-ISO 5667-11:2017-10 PN-88/C-04621 PB - 15/ZS Wydanie 1 z dnia 18.06.2019 r.
PN-ISO 5667-5:2017-10 PB - 15/ZS Wydanie 1 z dnia 18.06.2019 r.
PN-N-01307:1994 PN-EN ISO 9612:2011 z wyłączeniem metody obejmującej strategię 2 i 3 – punkty 10 i 11
PN-Z-04008/07:2002+Az1:2004
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