材料科学
聚酰亚胺
过滤(数学)
空气过滤
复合材料
压力降
纤维
纺纱
下降(电信)
空气过滤器
微粒
图层(电子)
有机化学
化学
机械工程
热力学
计算机科学
物理
数学
统计
电信
入口
工程类
作者
Pei Lyu,Zheng Ju,Jun Hu,Heng Pan,Xing Li,Yuemei Liu,Jie Ren,Bin Shang,Xin Liu,Weilin Xu
标识
DOI:10.1002/adfm.202400685
摘要
Abstract Air pollution containing microorganisms poses a major hazard to human health. It is critical to develop air filters that are both highly efficient for indoor use and suitable for use in industrial settings. Developing long‐lasting electrostatic force‐assisted filtration while keeping high‐temperature resistance and antibacterial qualities is still challenging. Here, centrifugal spinning is used to fabricate fiber mats consisting of polyimide with silver incorporation (PI/Ag). The electrostatic force remained over –700 V after 330 days. The strong electrostatic effect improves the filtration efficiency, resulting in a high PM 0.3 removal efficiency of 99.1% with a low‐pressure drop of 103.67 Pa. The high filtration efficiency remains above 91.3% for PM 0.3 after placing it for 330 days and heating it at 280 °C. The PI/Ag fiber mats also show antimicrobial properties against the E. coli (Gram‐negative) and S. aureus (Gram‐positive) with prominent bacteriostatic zones >1.2 mm. The PI/Ag fiber mat filters are expected to have great potential for multi‐scenario air filtration.
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