A novel sampling cassette for field-based analysis of respirable crystalline silica

Field-based methods for the analysis of respirable crystalline silica are now possible with the availability of portable instrumentation. Such methods also require the use of cassettes that facilitate direct-on-filter analysis of field samples. Conventional sampling cassettes can be modified such th...

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Published inJournal of occupational and environmental hygiene Vol. 18; no. 3; pp. 103 - 109
Main Authors Chubb, Lauren G., Cauda, Emanuele G.
Format Journal Article
LanguageEnglish
Published England Taylor & Francis 04.03.2021
Taylor & Francis LLC
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Abstract Field-based methods for the analysis of respirable crystalline silica are now possible with the availability of portable instrumentation. Such methods also require the use of cassettes that facilitate direct-on-filter analysis of field samples. Conventional sampling cassettes can be modified such that they are amenable to direct-on-filter analysis while remaining compatible with common respirable dust samplers. The required modifications are described herein, and one version of such an analysis-ready cassette is described and evaluated in comparison to more traditional cassette designs. The novel cassette was found to result in a slightly higher mass of collected respirable material (for the same sampling duration), though this is likely due to the conductive material of the cassettes, which prevents particle wall losses in comparison to the more commonly used styrene cassette material. Both types of cassettes demonstrated comparable predictability in terms of respirable crystalline silica in a sample.
AbstractList Field-based methods for the analysis of respirable crystalline silica are now possible with the availability of portable instrumentation. Such methods also require the use of cassettes that facilitate direct-on-filter analysis of field samples. Conventional sampling cassettes can be modified such that they are amenable to direct-on-filter analysis while remaining compatible with common respirable dust samplers. The required modifications are described herein, and one version of such an analysis-ready cassette is described and evaluated in comparison to more traditional cassette designs. The novel cassette was found to result in a slightly higher mass of collected respirable material (for the same sampling duration), though this is likely due to the conductive material of the cassettes, which prevents particle wall losses in comparison to the more commonly used styrene cassette material. Both types of cassettes demonstrated comparable predictability in terms of respirable crystalline silica in a sample.
Author Cauda, Emanuele G.
Chubb, Lauren G.
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  organization: Pittsburgh Mining Research Division, National Institute for Occupational Safety and Health, Centers for Disease Control and Prevention
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Copyright This work was authored as part of the Contributor's official duties as an Employee of the United States Government and is therefore a work of the United States Government. In accordance with 17 USC. 105, no copyright protection is available for such works under US Law.
This work was authored as part of the Contributor's official duties as an Employee of the United States Government and is therefore a work of the United States Government. In accordance with 17 USC. 105, no copyright protection is available for such works under US Law..
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Snippet Field-based methods for the analysis of respirable crystalline silica are now possible with the availability of portable instrumentation. Such methods also...
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StartPage 103
SubjectTerms Air Pollutants, Occupational - analysis
Cassettes
Crystal structure
Crystallinity
Dust - analysis
Dust filters
Environmental Monitoring
Exposure monitoring
Inhalation Exposure - analysis
Instrumentation
Occupational Exposure - analysis
personal sampling
quartz
Samplers
Sampling
Silica
Silicon dioxide
Silicon Dioxide - analysis
Styrene
Title A novel sampling cassette for field-based analysis of respirable crystalline silica
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