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Evaluation of filtration characteristics and microbial recovery rates of commercial filtering facepiece respirators against airborne bacterial particles

机译:商业过滤面板呼吸器对空气粒细菌颗粒的过滤特性和微生物回收率的评价

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Many brands of filtering facepiece respirators are used against air pollution, including bioaerosols; however, studies have explored exposure to bioaerosols from the inside surfaces of respirators. We evaluated the filtration efficiencies and microbial recovery rates of commercial filtering facepiece respirators against bioaerosols. Eight filtering facepiece respirators and one surgical mask were selected, all with high market shares in the Republic of Korea and certified by national or international standards. The tested filtering facepiece respirators were installed on the head of a mannequin under various airflow velocity and relative humidity (RH) conditions. The filtration efficiency against Staphylococcus epidermidis and Escherichia coli bioaerosols, the pressure drop of the filter, and the relative recovery rates for the bacteria were evaluated. The filtration efficiency of each filtering facepiece respirator ranged from 82% to 99%, depending on the filtration grade. The pressure drop was significantly affected by variations in the surrounding RH. The mean relative recovery rates of all filtering facepiece respirators were 14 +/- 4.8% and 9 +/- 4.7% for S. epidermidis and E. coli, respectively. These results indicate that airborne microorganisms can survive and accumulate on the surfaces of filtering facepiece respirators, which may lead to harmful health outcomes. Our findings will be useful as background information for the development of commercial filtering facepiece respirators while considering their biological properties and reliable guidance to users. (C) 2019 Elsevier B.V. All rights reserved.
机译:许多品牌过滤面板呼吸器用于空气污染,包括生物溶解;然而,研究已经探讨了来自呼吸器内表面的生物溶胶。我们评估了商用过滤面板呼吸器对生物溶胶的过滤效率和微生物回收率。选择了八个过滤面板呼吸器和一个手术面具,所有韩国市场份额高,国家或国际标准认证。在各种气流速度和相对湿度(RH)条件下,测试的过滤面板呼吸器安装在时装模特的头部。评价对葡萄球菌的过滤效率和大肠杆菌生物化合物,过滤器的压降,以及细菌的相对回收率。根据过滤等级,每个过滤面部呼吸器的过滤效率范围为82%至99%。通过周围RH的变化显着影响压降。所有过滤面板呼吸器的平均相对回收率分别为S.表皮和大肠杆菌的14 +/- 4.8%和9 +/- 4.7%。这些结果表明,空气传播的微生物可以存活并积聚在过滤面板呼吸器的表面上,这可能导致有害的健康结果。我们的调查结果将作为开发商业过滤面板呼吸器的背景信息,同时考虑其生物学特性和对用户可靠的指导。 (c)2019 Elsevier B.v.保留所有权利。

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