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美国国家职业安全与健康研究所(NIOSH)批准的N95和P100过滤式面罩呼吸器对4至30纳米大小纳米颗粒的过滤性能。

Filtration performance of NIOSH-approved N95 and P100 filtering facepiece respirators against 4 to 30 nanometer-size nanoparticles.

作者信息

Rengasamy Samy, King William P, Eimer Benjamin C, Shaffer Ronald E

机构信息

Technology ResearchBranch, National Personal Protective Technology Laboratory, National Institute for Occupational Safety and Health, Pittsburgh, Pennsylvania 15236, USA.

出版信息

J Occup Environ Hyg. 2008 Sep;5(9):556-64. doi: 10.1080/15459620802275387.

Abstract

This study investigated the filtration performance of NIOSH-approved N95 and P100 filtering facepiece respirators (FFR) against six different monodisperse silver aerosol particles in the range of 4-30 nm diameter. A particle test system was developed and standardized for measuring the penetration of monodisperse silver particles. For respirator testing, five models of N95 and two models of P100 filtering facepiece respirators were challenged with monodisperse silver aerosol particles of 4, 8, 12, 16, 20, and 30 nm at 85 L/min flow rate and percentage penetrations were measured. Consistent with single-fiber filtration theory, N95 and P100 respirators challenged with silver monodisperse particles showed a decrease in percentage penetration with a decrease in particle diameter down to 4 nm. Penetrations less than 1 particle/30 min for 4-8 nm particles for one P100 respirator model, and 4-12 nm particles for the other P100 model, were observed. Experiments were also carried out with larger than 20 nm monodisperse NaCl particles using a TSI 3160 Fractional Efficiency Tester. NaCl aerosol penetration levels of 20 nm and 30 nm (overlapping sizes) particles were compared with silver aerosols of the same sizes by a three-way ANOVA analysis. A significant (p < 0.001) difference between NaCl and silver aerosol penetration levels was obtained after adjusting for particle sizes and manufacturers. A significant (p = 0.001) interaction with manufacturers indicated the difference in NaCl, and silver aerosol penetrations were not the same across manufacturers. The two aerosols had the same effect across 20 nm and 30 nm sizes as shown by the absence of any significant (p = 0.163) interaction with particle sizes. In the case of P100 FFRs, a significant (p < 0.001) difference between NaCl and silver aerosol (20 nm and 30 nm) penetrations was observed for both respirator models tested. The filtration data for 4-30 nm monodisperse particles supports previous studies that indicate NIOSH-approved air-purifying respirators provide expected levels of filtration protection against nanoparticles.

摘要

本研究调查了美国国家职业安全与健康研究所(NIOSH)批准的N95和P100过滤式面罩呼吸器(FFR)对六种直径在4 - 30纳米范围内不同的单分散银气溶胶颗粒的过滤性能。开发并标准化了一种颗粒测试系统,用于测量单分散银颗粒的穿透率。对于呼吸器测试,在85升/分钟的流量下,用直径为4、8、12、16、20和30纳米的单分散银气溶胶颗粒对五种型号的N95和两种型号的P100过滤式面罩呼吸器进行测试,并测量其穿透百分比。与单纤维过滤理论一致,用单分散银颗粒测试的N95和P100呼吸器的穿透百分比随着颗粒直径减小至4纳米而降低。观察到一种P100呼吸器型号对4 - 8纳米颗粒以及另一种P100型号对4 - 12纳米颗粒的穿透率低于每30分钟1个颗粒。还使用TSI 3160分级效率测试仪对直径大于20纳米的单分散氯化钠颗粒进行了实验。通过三因素方差分析比较了20纳米和30纳米(重叠尺寸)颗粒的氯化钠气溶胶穿透水平与相同尺寸的银气溶胶穿透水平。在调整颗粒尺寸和制造商因素后,氯化钠和气溶胶穿透水平之间存在显著差异(p < 0.001)。与制造商的显著交互作用(p = 0.001)表明,不同制造商的氯化钠和气溶胶穿透率存在差异。如与颗粒尺寸无任何显著交互作用(p = 0.163)所示,两种气溶胶在20纳米和30纳米尺寸上具有相同的效果。在P100 FFR的情况下,对于所测试的两种呼吸器型号,均观察到氯化钠和气溶胶(20纳米和30纳米)穿透率之间存在显著差异(p < 0.001)。4 - 30纳米单分散颗粒的过滤数据支持了先前的研究,这些研究表明NIOSH批准 的空气净化呼吸器对纳米颗粒提供了预期水平的过滤保护。

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