Validation of the Willems badge diffusive sampler for nitrogen dioxide determinations in occupational environments

The Willems badge, a diffusive sampler for nitrogen dioxide, has previously been validated for ambient air measurements. This paper describes the laboratory and field validation of the Willems badge for personal sampling under working environment conditions. The mean sampling rate in the laboratory...

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Published in:Analyst (London) Vol. 127; no. 1; p. 163
Main Authors: Hagenbjörk-Gustafsson, Annika, Lindahl, Roger, Levin, Jan-Olof, Karlsson, Doris
Format: Journal Article
Language:English
Published: England 01-01-2002
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Abstract The Willems badge, a diffusive sampler for nitrogen dioxide, has previously been validated for ambient air measurements. This paper describes the laboratory and field validation of the Willems badge for personal sampling under working environment conditions. The mean sampling rate in the laboratory tests was 46 ml min(-1), with an RSD of 12%. No statistically significant effects on sampling rate of the sampling time, concentration of NO2 or relative humidity were found. A slightly decreased sampling rate was observed at low wind velocity. This was also confirmed during static sampling, which makes the sampler less appropriate for static sampling indoors. No back diffusion was observed. Storage of the samplers for two weeks before or after exposure did not affect the sampling rate. Our analysis is based on a modified colorimetric method, performed by FIA (flow injection analysis). This technique was compared to ion chromatography analysis. The use of ion chromatography lowered the detection limit from 11 to 2 microg m(-3) for an 8 h sample, and furthermore enabled the detection of other anions. In conclusion, the diffusive sampler was found to perform well for personal measurements in industrial environments.
AbstractList The Willems badge, a diffusive sampler for nitrogen dioxide, has previously been validated for ambient air measurements. This paper describes the laboratory and field validation of the Willems badge for personal sampling under working environment conditions. The mean sampling rate in the laboratory tests was 46 ml min(-1), with an RSD of 12%. No statistically significant effects on sampling rate of the sampling time, concentration of NO2 or relative humidity were found. A slightly decreased sampling rate was observed at low wind velocity. This was also confirmed during static sampling, which makes the sampler less appropriate for static sampling indoors. No back diffusion was observed. Storage of the samplers for two weeks before or after exposure did not affect the sampling rate. Our analysis is based on a modified colorimetric method, performed by FIA (flow injection analysis). This technique was compared to ion chromatography analysis. The use of ion chromatography lowered the detection limit from 11 to 2 microg m(-3) for an 8 h sample, and furthermore enabled the detection of other anions. In conclusion, the diffusive sampler was found to perform well for personal measurements in industrial environments.
Author Levin, Jan-Olof
Hagenbjörk-Gustafsson, Annika
Lindahl, Roger
Karlsson, Doris
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  givenname: Annika
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  fullname: Hagenbjörk-Gustafsson, Annika
  email: annika.hagenbjork@niwl.se
  organization: National Institute for Working Life, Programme for Chemical Exposure Assessment, Umeå, Sweden. annika.hagenbjork@niwl.se
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  givenname: Roger
  surname: Lindahl
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  givenname: Jan-Olof
  surname: Levin
  fullname: Levin, Jan-Olof
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  givenname: Doris
  surname: Karlsson
  fullname: Karlsson, Doris
BackLink https://www.ncbi.nlm.nih.gov/pubmed/11827385$$D View this record in MEDLINE/PubMed
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Snippet The Willems badge, a diffusive sampler for nitrogen dioxide, has previously been validated for ambient air measurements. This paper describes the laboratory...
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StartPage 163
SubjectTerms Air Pollutants - analysis
Colorimetry - methods
Flow Injection Analysis
Nitrogen Dioxide - analysis
Title Validation of the Willems badge diffusive sampler for nitrogen dioxide determinations in occupational environments
URI https://www.ncbi.nlm.nih.gov/pubmed/11827385
Volume 127
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