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A Quantitative Assessment of the Total Inward Leakage of NaCl Aerosol Representing Submicron-Size Bioaerosol Through N95 Filtering Facepiece Respirators and Surgical Masks

机译:通过N95过滤式口罩呼吸器和手术口罩代表亚微米尺寸生物气溶胶的NaCl气溶胶总向内泄漏的定量评估

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摘要

Respiratory protection provided by a particulate respirator is a function of particle penetration through filter media and through faceseal leakage. Faceseal leakage largely contributes to the penetration of particles through a respirator and compromises protection. When faceseal leaks arise, filter penetration is assumed to be negligible. The contribution of filter penetration and faceseal leakage to total inward leakage (TIL) of submicron-size bioaerosols is not well studied. To address this issue, TIL values for two N95 filtering facepiece respirator (FFR) models and two surgical mask (SM) models sealed to a manikin were measured at 8 L and 40 L breathing minute volumes with different artificial leak sizes. TIL values for different size (20–800 nm, electrical mobility diameter) NaCl particles representing submicron-size bioaerosols were measured using a scanning mobility particle sizer. Efficiency of filtering devices was assessed by measuring the penetration against NaCl aerosol similar to the method used for NIOSH particulate filter certification. Results showed that the most penetrating particle size (MPPS) was ~45 nm for both N95 FFR models and one of the two SM models, and ~350 nm for the other SM model at sealed condition with no leaks as well as with different leak sizes. TIL values increased with increasing leak sizes and breathing minute volumes. Relatively, higher efficiency N95 and SM models showed lower TIL values. Filter efficiency of FFRs and SMs influenced the TIL at different flow rates and leak sizes. Overall, the data indicate that good fitting higher-efficiency FFRs may offer higher protection against submicron-size bioaerosols.
机译:颗粒呼吸器提供的呼吸保护是颗粒通过过滤介质和面膜渗漏的功能。面部密封件的泄漏在很大程度上有助于微粒通过呼吸器的渗透并损害防护。当出现面密封泄漏时,假定过滤器的渗透可忽略不计。过滤器的渗透和面膜泄漏对亚微米尺寸生物气溶胶总向内泄漏(TIL)的贡献尚未得到很好的研究。为了解决这个问题,在人体模型上分别以8 L和40 L呼吸分钟量测量了两个N95过滤式面罩呼吸器(FFR)模型和两个密封在人体模型上的手术口罩(SM)模型的TIL值。使用扫描迁移率粒度仪测量代表亚微米尺寸生物气溶胶的不同尺寸(20-800 nm,电迁移率直径)NaCl颗粒的TIL值。过滤装置的效率是通过测量对NaCl气溶胶的渗透率来评估的,类似于用于NIOSH微粒过滤器认证的方法。结果表明,在无泄漏以及不同泄漏尺寸的密封条件下,N95 FFR模型和两个SM模型之一的最大穿透粒径(MPPS)均为〜45 nm,另一个SM模型的最大穿透粒径为〜350 nm 。 TIL值随着泄漏量和呼吸分钟量的增加而增加。相对而言,效率更高的N95和SM模型显示出较低的TIL值。 FFR和SM的过滤效率在不同的流速和泄漏尺寸下会影响TIL。总体而言,数据表明,合适的高效率FFR可能针对亚微米尺寸的生物气溶胶提供更高的保护。

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