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通过一种临时实验室方法确定非标准呼吸防护装置的过滤效果。

Determining the filtration effectiveness of non-standard respiratory protective devices by an ad-hoc laboratory methodology.

作者信息

Scungio Mauro, Parlani Giulia

机构信息

Department of Economics, Engineering, Society and Business Organization (DEIM). University of Tuscia, Via Del Paradiso 47, Viterbo, Italy.

出版信息

Atmos Environ (1994). 2023 Jun 1;302:119731. doi: 10.1016/j.atmosenv.2023.119731. Epub 2023 Mar 20.

Abstract

The recent pandemic caused by COVID-19 profoundly changed people's habits. Wearing a face mask has become usual in everyday life to reduce the risk of infection from airborne diseases. At the beginning of the pandemic, the massive request of surgical or filtering face piece (FFP) masks resulted in a global shortage of these devices for the most exposed people, such as healthcare workers. Due to this high demand for respiratory protective devices, many industrial plants have partly converted to the production of face masks using adapted materials and not complying with any specific regulation (non-standard respiratory protective devices or community masks). In this work, an ad-hoc laboratory methodology has been developed to evaluate the filtration efficiency of the materials that compose the community masks using specific instrumentation. The instrumentation consists of three main tools: an aerosol generator, a specifically designed measuring chamber, and an optical particle sizer (OPS) for the measurement of aerosol concentration. The generated aerosol was sent into the measuring chamber, divided into two separate sections by the respiratory mask. The OPS measured the aerosol mass concentration upstream and downstream of the respiratory mask, and from the concentration difference the filtration efficiency was evaluated. The proposed methodology has been validated by evaluating the particle filtration efficiency (PFE) of certified respiratory masks and was then applied for the evaluation of the filtration efficiency of different types of non-standard or community masks to analyze their effectiveness in protecting from the risk of infection of airborne diseases.

摘要

最近由新冠病毒引起的大流行深刻改变了人们的习惯。在日常生活中,佩戴口罩已成为常态,以降低空气传播疾病的感染风险。在大流行初期,对外科口罩或过滤式面罩(FFP)的大量需求导致这些防护用品在全球范围内短缺,而医护人员等最易暴露人群受影响最大。由于对呼吸防护设备的高需求,许多工厂部分转向使用适配材料生产口罩,但这些口罩不符合任何特定法规(非标准呼吸防护设备或社区口罩)。在这项工作中,开发了一种专门的实验室方法,使用特定仪器评估构成社区口罩的材料的过滤效率。该仪器由三个主要工具组成:一个气溶胶发生器、一个专门设计的测量腔室以及一个用于测量气溶胶浓度的光学粒子计数器(OPS)。产生的气溶胶被送入测量腔室,呼吸面罩将其分成两个独立部分。OPS测量呼吸面罩上游和下游的气溶胶质量浓度,并根据浓度差评估过滤效率。通过评估认证呼吸口罩的颗粒过滤效率(PFE)对所提出的方法进行了验证,然后将其应用于评估不同类型的非标准或社区口罩的过滤效率,以分析它们在防范空气传播疾病感染风险方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce95/10027294/1c4a47f805ac/gr1_lrg.jpg

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