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用于口罩有效过滤细颗粒物的聚偏氟乙烯纳米纤维-尼龙网多层结构中的静电荷保持

Electrostatic Charge Retention in PVDF Nanofiber-Nylon Mesh Multilayer Structure for Effective Fine Particulate Matter Filtration for Face Masks.

作者信息

Kang Dong Hee, Kim Na Kyong, Kang Hyun Wook

机构信息

Department of Mechanical Engineering, Chonnam National University, 77 Yongbong-ro, Buk-gu, Gwangju 61186, Korea.

出版信息

Polymers (Basel). 2021 Sep 24;13(19):3235. doi: 10.3390/polym13193235.

Abstract

Currently, almost 70% of the world's population occupies urban areas. Owing to the high population density in these regions, they are exposed to various types of air pollutants. Fine particle air pollutants (<2.5 μm) can easily invade the human respiratory system, causing health issues. For fine particulate matter filtration, the use of a face mask filter is efficient; however, its use is accompanied by a high-pressure drop, making breathing difficult. Electrostatic interactions in the filter of the face mask constitute the dominant filtration mechanism for capturing fine particulate matter; these masks are, however, significantly weakened by the high humidity in exhaled breath. In this study, we demonstrate that a filter with an electrostatically rechargeable structure operates with normal breathing air power. In our novel face mask, a filter membrane is assembled by layer-by-layer stacking of the electrospun PVDF nanofiber mat formed on a nylon mesh. Tribo/piezoelectric characteristics via multilayer structure enhance filtration performance, even under air-powered filter bending taken as a normal breathing condition. The air gap between nanofiber and mesh layers increases air diffusion time and preserves the electrostatic charges within the multi-layered nanofiber filter membrane under humid air penetration, which is advantageous for face mask applications.

摘要

目前,世界上近70%的人口居住在城市地区。由于这些地区人口密度高,人们暴露于各种类型的空气污染物中。细颗粒空气污染物(<2.5μm)能够轻易侵入人体呼吸系统,引发健康问题。对于细颗粒物过滤而言,使用面罩过滤器是有效的;然而,其使用伴随着高压降,导致呼吸困难。面罩过滤器中的静电相互作用构成了捕获细颗粒物的主要过滤机制;然而,这些面罩会因呼出气体中的高湿度而显著减弱过滤效果。在本研究中,我们证明了具有可静电充电结构的过滤器能够在正常呼吸空气动力下运行。在我们的新型面罩中,滤膜是通过在尼龙网上形成的电纺聚偏氟乙烯纳米纤维垫逐层堆叠组装而成。多层结构产生的摩擦/压电特性可提高过滤性能,即使在将空气驱动过滤器弯曲视为正常呼吸条件的情况下也是如此。纳米纤维与网层之间的气隙增加了空气扩散时间,并在潮湿空气渗透时将静电荷保留在多层纳米纤维滤膜内,这对面罩应用是有利的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ded6/8513023/1f6f49176a92/polymers-13-03235-g001.jpg

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