Literature DB >> 28603336

Application of direct-reading and elemental carbon analysis methods to measure mass-based penetration of carbon nanotubes through elastomeric half-face and filtering facepiece respirators.

Evanly Vo1, Ziqing Zhuang1, Eileen Birch2, Quinn Birch2.   

Abstract

The aim of this study was to apply a direct-reading aerosol instrument method and an elemental carbon (EC) analysis method to measure the mass-based penetration of single-walled carbon nanotubes (SWCNTs) and multi-walled carbon nanotubes (MWCNTs) through elastomeric half-mask respirators (EHRs) and filtering facepiece respirators (FFRs). For the direct-reading aerosol instrument method, two scanning mobility particle sizer/aerodynamic particle sizer systems were used to simultaneously determine the upstream (outside respirator) and downstream (inside respirator) test aerosols. For the EC analysis method, upstream and downstream CNTs were collected on filter cassettes and then analyzed using a thermal-optical technique. CNT mass penetrations were found in both methods to be within the associated efficiency requirements for each type and class of the respirator models that were tested. Generally, the penetrations of SWCNTs and MWCNTs had a similar trend with penetration being the highest for the N95 EHRs, followed by N95 FFRs, P100 EHRs, and P100 FFRs. This trend held true for both methods; however, the CNT penetration determined by the direct-reading aerosol instrument method (0.009-1.09% for SWCNTs and 0.005-0.21% for MWCNTs) was greater relative to the penetration values found through EC analysis method (0.007-0.69% for SWCNTs and 0.004-0.13% for MWCNTs). The results of this study illustrate considerations for how the methods can be used to evaluate penetration of morphologically complex materials through FFRs and EHRs.

Entities:  

Year:  2016        PMID: 28603336      PMCID: PMC5464732          DOI: 10.1080/02786826.2016.1216519

Source DB:  PubMed          Journal:  Aerosol Sci Technol        ISSN: 0278-6826            Impact factor:   2.908


  12 in total

1.  Detection of carbon nanotubes in environmental matrices using programmed thermal analysis.

Authors:  Kyle Doudrick; Pierre Herckes; Paul Westerhoff
Journal:  Environ Sci Technol       Date:  2012-06-14       Impact factor: 9.028

2.  A review of assigned protection factors of various types and classes of respiratory protective equipment with reference to their measured breathing resistances.

Authors:  M P Clayton; B Bancroft; B Rajan
Journal:  Ann Occup Hyg       Date:  2002-08

3.  Exposure assessment of carbon nanotube manufacturing workplaces.

Authors:  Ji Hyun Lee; Seung-Bok Lee; Gwi Nam Bae; Ki Soo Jeon; Jin Uk Yoon; Jun Ho Ji; Jae Hyuck Sung; Byung Gyu Lee; Jong Han Lee; Jung Sun Yang; Hyeon Yeong Kim; Chang Soo Kang; Il Je Yu
Journal:  Inhal Toxicol       Date:  2010-04       Impact factor: 2.724

4.  Exposure control strategies in the carbonaceous nanomaterial industry.

Authors:  Matthew M Dahm; Marianne S Yencken; Mary K Schubauer-Berigan
Journal:  J Occup Environ Med       Date:  2011-06       Impact factor: 2.162

5.  Carbon Nanotube and Nanofiber Exposure Assessments: An Analysis of 14 Site Visits.

Authors:  Matthew M Dahm; Mary K Schubauer-Berigan; Douglas E Evans; M Eileen Birch; Joseph E Fernback; James A Deddens
Journal:  Ann Occup Hyg       Date:  2015-04-07

6.  Exposure and emissions monitoring during carbon nanofiber production--Part I: elemental carbon and iron-soot aerosols.

Authors:  M Eileen Birch; Bon-Ki Ku; Douglas E Evans; Toni A Ruda-Eberenz
Journal:  Ann Occup Hyg       Date:  2011-09-28

7.  Respiratory toxicity of multi-wall carbon nanotubes.

Authors:  Julie Muller; François Huaux; Nicolas Moreau; Pierre Misson; Jean-François Heilier; Monique Delos; Mohammed Arras; Antonio Fonseca; Janos B Nagy; Dominique Lison
Journal:  Toxicol Appl Pharmacol       Date:  2005-09-15       Impact factor: 4.219

8.  Measurement of mass-based carbon nanotube penetration through filtering facepiece respirator filtering media.

Authors:  Evanly Vo; Ziqing Zhuang; Eileen Birch; Qi Zhao; Matthew Horvatin; Yuewei Liu
Journal:  Ann Occup Hyg       Date:  2014-05-06

Review 9.  Carbon nanotubes: a review of their properties in relation to pulmonary toxicology and workplace safety.

Authors:  Ken Donaldson; Robert Aitken; Lang Tran; Vicki Stone; Rodger Duffin; Gavin Forrest; Andrew Alexander
Journal:  Toxicol Sci       Date:  2006-02-16       Impact factor: 4.849

10.  Inhalation vs. aspiration of single-walled carbon nanotubes in C57BL/6 mice: inflammation, fibrosis, oxidative stress, and mutagenesis.

Authors:  A A Shvedova; E Kisin; A R Murray; V J Johnson; O Gorelik; S Arepalli; A F Hubbs; R R Mercer; P Keohavong; N Sussman; J Jin; J Yin; S Stone; B T Chen; G Deye; A Maynard; V Castranova; P A Baron; V E Kagan
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2008-07-25       Impact factor: 5.464

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  1 in total

Review 1.  Role of different types of nanomaterials against diagnosis, prevention and therapy of COVID-19.

Authors:  Ferial Ghaemi; Amirhassan Amiri; Mohd Yazid Bajuri; Nor Yuliana Yuhana; Massimiliano Ferrara
Journal:  Sustain Cities Soc       Date:  2021-05-25       Impact factor: 7.587

  1 in total

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