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具有超低压降的多功能介电异质结块过滤器的静电空气过滤

Electrostatic Air Filtration by Multifunctional Dielectric Heterocaking Filters with Ultralow Pressure Drop.

作者信息

Tian Enze, Xia Fanxuan, Wu Jiandong, Zhang Yinping, Li Ju, Wang Hao, Mo Jinhan

机构信息

Department of Building Science, Tsinghua University, Beijing 100084, China.

Beijing Key Laboratory of Indoor Air Quality Evaluation and Control, Beijing 100084, China.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 1;12(26):29383-29392. doi: 10.1021/acsami.0c07447. Epub 2020 Jun 19.

Abstract

In air filtration, for creating healthy indoor air, there is an intrinsic conflict between high filtration efficiency and low wind pressure drop. In this study, we overcame this conflict by developing new dielectric heterocaking (HC) filters, in which high relative dielectric constant (ε) materials were heterogeneously loaded on traditional polymer fibers. The dielectric HC filters in an electrostatic polarizing field generate a great amount of charges on their surface, leading to a strong attraction to precharged aerosol particles, and result in high filtration efficiency. Observing a charged coupled device camera, the migration speed of aerosol smoke particles toward the polarized HC fiber exceeded those toward the unpolarized HC fiber by a factor of 6. We loaded high-ε HCs including manganese dioxide (MnO), activated carbon, zinc oxide (ZnO), copper oxide (CuO), and barium titanate (BaTiO) on polyurethane foams using a fast and large-scale roll-to-roll gel squeezing method. Based on the experimental results, when HCs had a ε larger than 5.1, an increased ε did not benefit electrostatic filtration efficiency for aerosol particles much, but resulted in a larger net ozone production. We suggested a MnO-HC filter for efficient and multifunctional filtration of indoor particles, ambient ozone, and formaldehyde with only 3.8 Pa pressure drop at 1.1 m/s filtration velocity. This efficient and cost-effective dielectric HC filter opens a new avenue for the design of multifunctional filters, which will facilitate its large-scale production and commercial application in the ventilation system for healthy buildings.

摘要

在空气过滤中,为了营造健康的室内空气,高过滤效率和低风压降之间存在内在冲突。在本研究中,我们通过开发新型介电异质结块(HC)过滤器克服了这一冲突,在这种过滤器中,高相对介电常数(ε)材料被非均匀地负载在传统聚合物纤维上。介电HC过滤器在静电极化场中会在其表面产生大量电荷,从而对预充电的气溶胶颗粒产生强烈吸引力,进而实现高过滤效率。通过电荷耦合器件相机观察发现,气溶胶烟雾颗粒向极化HC纤维的迁移速度比向未极化HC纤维的迁移速度快6倍。我们使用快速大规模卷对卷凝胶挤压法将包括二氧化锰(MnO)、活性炭、氧化锌(ZnO)、氧化铜(CuO)和钛酸钡(BaTiO)在内的高ε值HC负载到聚氨酯泡沫上。基于实验结果,当HC的ε大于5.1时,ε的增加对气溶胶颗粒的静电过滤效率益处不大,但会导致更大的净臭氧产生量。我们提出了一种MnO-HC过滤器,用于高效多功能过滤室内颗粒、环境臭氧和甲醛,在1.1 m/s的过滤速度下,压降仅为3.8 Pa。这种高效且经济高效的介电HC过滤器为多功能过滤器的设计开辟了一条新途径,这将有助于其在健康建筑通风系统中的大规模生产和商业应用。

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