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层压微纳过滤器的制备及其在可吸入颗粒物去除中的应用

Fabrication of Laminated Micro/Nano Filter and Its Application for Inhalable PM Removal.

作者信息

Ma Wenhua, Qi Huan, Zhang Yongmeng, Lin Minggang, Qiu Yiping, Zhang Chuyang

机构信息

College of Textile and Apparel, Xinjiang University, Urumqi 830049, China.

Institute of Smart & Ecological Textile, Quanzhou Normal University, Quanzhou 362002, China.

出版信息

Polymers (Basel). 2023 Mar 15;15(6):1459. doi: 10.3390/polym15061459.

Abstract

Particulate matter (PM) with a diameter of 0.3 µm is inhalable and brings great threats to human health. Traditional meltblown nonwovens used for air filtration need to be treated by high voltage corona charging, which has the problem of electrostatic dissipation and thus reduces the filtration efficiency. In this work, a kind of composite air-filter with high efficiency and low resistance was fabricated by alternating lamination of ultrathin electronspun nano-layer and melt-blown layer without corona charging treatment. The effects of fiber diameter, pore size, porosity, layer number, and weight on filtration performance were investigated. Meanwhile, the surface hydrophobicity, loading capacity, and storage stability of the composite filter were studied. The results indicate that the filters (18.5 gsm) laminated by 10 layers fiber-webs present excellent filtration efficiency (97.94%), low pressure drop (53.2 Pa), high quality factor (QF 0.073 Pa), and high dust holding capacity (9.72 g/m) for NaCl aerosol particles. Increasing the layers and reducing individual layer weight can significantly improve filtration efficiency and reduce pressure drop of the filter. The filtration efficiency decayed slightly from 97.94% to 96.48% after 80 days storage. The alternate arrangement of ultra-thin nano and melt-blown layers constructed a layer-by-layer interception and collaborative filtering effect in the composite filter, realizing the high filtration efficiency and low resistance without high voltage corona charging. These results provided new insights for the application of nonwoven fabrics in air filtration.

摘要

直径为0.3微米的颗粒物(PM)可被吸入,对人类健康构成巨大威胁。用于空气过滤的传统熔喷非织造布需要通过高压电晕充电处理,存在静电消散问题,从而降低过滤效率。在这项工作中,通过交替层压超薄静电纺纳米层和熔喷层,无需电晕充电处理,制备了一种高效低阻复合空气过滤器。研究了纤维直径、孔径、孔隙率、层数和重量对过滤性能的影响。同时,研究了复合过滤器的表面疏水性、负载能力和储存稳定性。结果表明,由10层纤维网层压而成的过滤器(18.5克/平方米)对氯化钠气溶胶颗粒具有优异的过滤效率(97.94%)、低压降(53.2帕)、高品质因数(QF 0.073帕)和高容尘量(9.72克/平方米)。增加层数和降低单层重量可显著提高过滤器的过滤效率并降低压降。储存80天后过滤效率从97.94%略有下降至96.48%。超薄纳米层和熔喷层的交替排列在复合过滤器中构建了逐层拦截和协同过滤效果,无需高压电晕充电即可实现高过滤效率和低阻力。这些结果为非织造布在空气过滤中的应用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c30c/10052305/590d928c9f4d/polymers-15-01459-g001.jpg

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