Kim Min-Woo, An Seongpil, Seok Hyunjun, Yarin Alexander L, Yoon Sam S
School of Mechanical Engineering, Korea University, Seoul 02841, Republic of Korea.
SKKU Advanced Institute of Nanotechnology (SAINT) and Department of Nano Engineering, Sungkyunkwan University (SKKU), Suwon 16419, Republic of Korea.
ACS Appl Mater Interfaces. 2020 Jun 3;12(22):25266-25275. doi: 10.1021/acsami.0c01697. Epub 2020 May 21.
Air-quality control remains a major environmental concern as polluted air is a threat to public safety and health in major industrialized cities. To filter pollutants, fibrous filters employing electrostatic attraction have been widely used. However, such air filters suffer from some major disadvantages, including low recyclability and a significant pressure drop owing to clogging and a high packing density. Herein, we developed ionization-assisted electrostatic air filters consisting of nonwoven nanofibers. Ionization of particulate matter (PM) using air ionization enhanced the electrostatic attraction, thereby promoting efficient filtration. Metallization of the fibers facilitated strong electrical attraction and the consequent capture of PM of various sizes. The low packing density of the metallized fibers also facilitated efficient filtration of the PM, even at low driving pressures, which in turn reduced the energy consumption of the air-filtration device.
空气质量控制仍然是一个主要的环境问题,因为在主要工业化城市中,污染的空气对公众安全和健康构成威胁。为了过滤污染物,采用静电吸引的纤维过滤器已被广泛使用。然而,这种空气过滤器存在一些主要缺点,包括可回收性低、由于堵塞和高堆积密度导致的显著压降。在此,我们开发了由非织造纳米纤维组成的电离辅助静电空气过滤器。利用空气电离使颗粒物(PM)电离,增强了静电吸引力,从而促进了高效过滤。纤维的金属化促进了强电吸引力以及随之而来的各种尺寸PM的捕获。金属化纤维的低堆积密度也有助于即使在低驱动压力下也能高效过滤PM,这反过来又降低了空气过滤装置的能耗。