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对已消毒的N95口罩进行充电和恢复活力。

Recharging and rejuvenation of decontaminated N95 masks.

作者信息

Hossain Emroj, Bhadra Satyanu, Jain Harsh, Das Soumen, Bhattacharya Arnab, Ghosh Shankar, Levine Dov

机构信息

Department of Condensed Matter Physics and Materials Science, Tata Institute of Fundamental Research, Mumbai 400005, India.

Department of Physics, Technion-IIT, 32000 Haifa, Israel.

出版信息

Phys Fluids (1994). 2020 Sep 1;32(9):093304. doi: 10.1063/5.0023940.

Abstract

N95 respirators comprise a critical part of the personal protective equipment used by frontline health-care workers and are typically meant for one-time usage. However, the recent COVID-19 pandemic has resulted in a serious shortage of these masks leading to a worldwide effort to develop decontamination and re-use procedures. A major factor contributing to the filtration efficiency of N95 masks is the presence of an intermediate layer of charged polypropylene electret fibers that trap particles through electrostatic or electrophoretic effects. This charge can degrade when the mask is used. Moreover, simple decontamination procedures (e.g., use of alcohol) can degrade any remaining charge from the polypropylene, thus severely impacting the filtration efficiency post-decontamination. In this report, we summarize our results on the development of a simple laboratory setup allowing measurement of charge and filtration efficiency in N95 masks. In particular, we propose and show that it is possible to recharge the masks post-decontamination and recover filtration efficiency.

摘要

N95口罩是一线医护人员使用的个人防护装备的关键组成部分,通常为一次性使用。然而,近期的新冠疫情导致这些口罩严重短缺,促使全球努力研发消毒和重复使用程序。影响N95口罩过滤效率的一个主要因素是存在一层带电荷的聚丙烯驻极体纤维中间层,该层通过静电或电泳效应捕获颗粒。口罩使用时,这种电荷会衰减。此外,简单的消毒程序(如使用酒精)会使聚丙烯上剩余的电荷衰减,从而严重影响消毒后的过滤效率。在本报告中,我们总结了关于开发一种简单实验室装置以测量N95口罩电荷和过滤效率的结果。特别是,我们提出并证明,消毒后给口罩重新充电并恢复过滤效率是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9a6/7513826/d63e5b3a6539/PHFLE6-000032-093304_1-g001.jpg

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