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用于过滤式面罩呼吸器去污和再利用的快速血浆去污系统的开发。

Development of a rapid plasma decontamination system for decontamination and reuse of filtering facepiece respirators.

作者信息

Kim Minkwan, Lawson John, Hervé Rodolphe, Jakob Henrike, Ganapathisubramani Bharathram, Keevil Charles W

机构信息

Aeronautics and Astronautics Engineering Department, University of Southampton, Southampton SO16 7QF, United Kingdom.

School of Biological Sciences, University of Southampton, Southampton SO17 1BJ, United Kingdom.

出版信息

AIP Adv. 2021 Oct 7;11(10):105311. doi: 10.1063/5.0067730. eCollection 2021 Oct.

Abstract

The COVID-19 pandemic has caused a high demand for filtering facepiece respirators (FFRs), which has brought global challenges in sustaining the supply chain for FFRs. Because respirators are basic personal protective equipment to protect frontline healthcare workers against COVID-19, the chronic, global shortage of N95/N99 masks is one of the most urgent threats to our collective ability to save lives from the coronavirus. The reuse of masks may need to be considered as a crisis capacity strategy to ensure continued availability even though most of the masks are considered one-time use. Moreover, environmentalists warn that single-use masks add to the glut of plastic pollution, threatening the health of oceans and marine life. In this study, we develop a method to decontaminate respirators to reuse filtering facepiece respirators. Samples of SARS-CoV-2 are applied to the 4 × 4 cm samples of FFP2 and FFP3 respirator materials. The filtration efficiency of plasma treated samples is measured using a planar particle image velocimetry technique with a neutrally charged polydisperse aerosol particle of NaCl. The measured viral decontamination and filtration efficiencies show that the developed plasma decontamination system can achieve a 4-log reduction for the coronavirus without reducing the filtration efficiency of masks after 5-min plasma exposure. The developed plasma decontamination system demonstrates the feasibility to tackle the acute shortages of FFRs in many countries and their environmental and economic burdens against discarding reusable masks.

摘要

新冠疫情导致对面部过滤式呼吸器(FFR)的需求大增,这给FFR供应链的持续稳定带来了全球性挑战。由于呼吸器是保护一线医护人员免受新冠病毒感染的基本个人防护装备,N95/N99口罩的长期全球短缺是我们从冠状病毒手中拯救生命的集体能力面临的最紧迫威胁之一。尽管大多数口罩被视为一次性使用,但口罩的重复使用可能需要作为一种应急能力策略加以考虑,以确保其持续供应。此外,环保人士警告说,一次性口罩加剧了塑料污染的泛滥,威胁着海洋和海洋生物的健康。在本研究中,我们开发了一种对面部过滤式呼吸器进行消毒以实现重复使用的方法。将新冠病毒样本应用于FFP2和FFP3呼吸器材料的4×4厘米样本上。使用平面粒子图像测速技术,通过带有中性电荷的多分散氯化钠气溶胶颗粒,测量经等离子体处理样本的过滤效率。测量得到的病毒消毒和过滤效率表明,所开发的等离子体消毒系统在5分钟的等离子体暴露后,可实现对冠状病毒4个对数级的杀灭,且不会降低口罩的过滤效率。所开发的等离子体消毒系统证明了应对许多国家FFR严重短缺问题以及解决丢弃可重复使用口罩所带来的环境和经济负担的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/818a/8501973/3cef4e26ec68/AAIDBI-000011-105311_1-g001.jpg

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