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Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm

This study compared the simulated workplace protection factors (SWPFs) between NIOSH-approved N95 respirators and P100 respirators, including two models of filtering facepiece respirator (FFR) and two models of elastomeric half-mask respirator (EHR), against sodium chloride particles (NaCl) in a ran...

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Detalles Bibliográficos
Autores principales: He, Xinjian, Vo, Evanly, Horvatin, M, Liu, Y, Bergman, M, Zhuang, Z
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529391/
https://www.ncbi.nlm.nih.gov/pubmed/26273701
http://dx.doi.org/10.15436/2377-1372.15.015
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author He, Xinjian
Vo, Evanly
Horvatin, M
Liu, Y
Bergman, M
Zhuang, Z
author_facet He, Xinjian
Vo, Evanly
Horvatin, M
Liu, Y
Bergman, M
Zhuang, Z
author_sort He, Xinjian
collection PubMed
description This study compared the simulated workplace protection factors (SWPFs) between NIOSH-approved N95 respirators and P100 respirators, including two models of filtering facepiece respirator (FFR) and two models of elastomeric half-mask respirator (EHR), against sodium chloride particles (NaCl) in a range of 10 to 400 nm. Twenty-five human test subjects performed modified OSHA fit test exercises in a controlled laboratory environment with the N95 respirators (two FFR models and two EHR models) and the P100 respirators (two FFRs and two EHRs). Two Scanning Mobility Particle Sizers (SMPS) were used to measure aerosol concentrations (in the 10–400 nm size range) inside (C(in)) and outside (C(out)) of the respirator, simultaneously. SWPF was calculated as the ratio of C(out) to C(in). The SWPF values obtained from the N95 respirators were then compared to those of the P100 respirators. SWPFs were found to be significantly different (P<0.05) between N95 and P100 class respirators. The 10(th), 25(th), 50(th), 75(th) and 90(th) percentiles of the SWPFs for the N95 respirators were much lower than those for the P100 models. The N95 respirators had 5(th) percentiles of the SWPFs > 10. In contrast, the P100 class was able to generate 5(th) percentiles SWPFs > 100. No significant difference was found in the SWPFs when tested against nano-size (10 to 100 nm) and large-size (100 to 400 nm) particles. Overall, the findings suggest that the two FFRs and two EHRs with P100 class filters provide better performance than those with N95 filters against particles from 10 to 400 nm, supporting current OSHA and NIOSH recommendations.
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spelling pubmed-45293912015-09-07 Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm He, Xinjian Vo, Evanly Horvatin, M Liu, Y Bergman, M Zhuang, Z J Nanotechnol Mater Sci Article This study compared the simulated workplace protection factors (SWPFs) between NIOSH-approved N95 respirators and P100 respirators, including two models of filtering facepiece respirator (FFR) and two models of elastomeric half-mask respirator (EHR), against sodium chloride particles (NaCl) in a range of 10 to 400 nm. Twenty-five human test subjects performed modified OSHA fit test exercises in a controlled laboratory environment with the N95 respirators (two FFR models and two EHR models) and the P100 respirators (two FFRs and two EHRs). Two Scanning Mobility Particle Sizers (SMPS) were used to measure aerosol concentrations (in the 10–400 nm size range) inside (C(in)) and outside (C(out)) of the respirator, simultaneously. SWPF was calculated as the ratio of C(out) to C(in). The SWPF values obtained from the N95 respirators were then compared to those of the P100 respirators. SWPFs were found to be significantly different (P<0.05) between N95 and P100 class respirators. The 10(th), 25(th), 50(th), 75(th) and 90(th) percentiles of the SWPFs for the N95 respirators were much lower than those for the P100 models. The N95 respirators had 5(th) percentiles of the SWPFs > 10. In contrast, the P100 class was able to generate 5(th) percentiles SWPFs > 100. No significant difference was found in the SWPFs when tested against nano-size (10 to 100 nm) and large-size (100 to 400 nm) particles. Overall, the findings suggest that the two FFRs and two EHRs with P100 class filters provide better performance than those with N95 filters against particles from 10 to 400 nm, supporting current OSHA and NIOSH recommendations. 2015-09-07 /pmc/articles/PMC4529391/ /pubmed/26273701 http://dx.doi.org/10.15436/2377-1372.15.015 Text en http://creativecommons.org/licenses/by/4.0/ This is an Open access article distributed under the terms of Creative Commons Attribution 4.0 International License.
spellingShingle Article
He, Xinjian
Vo, Evanly
Horvatin, M
Liu, Y
Bergman, M
Zhuang, Z
Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm
title Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm
title_full Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm
title_fullStr Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm
title_full_unstemmed Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm
title_short Comparison of Simulated Workplace Protection Factors Offered by N95 and P100 Filtering Facepiece and Elastomeric Half-Mask Respirators against Particles of 10 to 400 nm
title_sort comparison of simulated workplace protection factors offered by n95 and p100 filtering facepiece and elastomeric half-mask respirators against particles of 10 to 400 nm
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529391/
https://www.ncbi.nlm.nih.gov/pubmed/26273701
http://dx.doi.org/10.15436/2377-1372.15.015
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