首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >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
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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

机译:直接读取和元素碳分析方法在弹性半面和过滤面呼吸器测量碳纳米管的质量渗透

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摘要

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.
机译:本研究的目的是应用直接读取气溶胶仪器方法和元素碳(EC)分析方法,以测量单壁碳纳米管(SWCNT)和多壁碳纳米管(MWCNT)的质量基础渗透弹性半面罩呼吸器(EHRS)和过滤面板呼吸器(FFR)。对于直接读取气溶胶仪器方法,使用两种扫描迁移粒度分子/空气动力学粒子Sizer系统同时测定上游(外部呼吸器)和下游(内部呼吸器)测试气溶胶。对于EC分析方法,在过滤器盒上收集上游和下游CNT,然后使用热光学技术分析。在两种方法中发现了CNT质量渗透,以便在测试的呼吸器模型的每种类型和类别的相关效率要求内。通常,SWCNT和MWCNT的渗透具有类似的趋势,渗透为N95 EHRS最高,其次是N95 FFR,P100 EHRS和P100 FFRS。这两种方法都持有这种趋势;然而,通过直接读取气溶胶仪器方法测定的CNT渗透率(0.009-1.09%,对于MWCNTs的0.005-0.21%)相对于通过EC分析方法发现的渗透值(SWCNTS 0.007-0.69%和0.004)更大mwcnts的-0.13%)。本研究的结果说明了如何通过FFR和EHRS评估形态学复杂材料的渗透性的方法的考虑。

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