Lee Sol, Han Kyung Seok, Kim Minje, Kim Min Cheol, Anh Cao Viet, Nah Junghyo
Department of Electrical Engineering, Chungnam National University, Daejeon 34134, Korea.
ACS Appl Mater Interfaces. 2020 May 27;12(21):23914-23922. doi: 10.1021/acsami.0c03868. Epub 2020 May 15.
There is a growing interest in window air filters to protect indoor air quality from ultrafine particulate matter (PM) in outdoor air. The filters for this purpose must achieve high filtering efficiency without compromising the original functions of the window, such as high air permeability and visibility. Several filters meeting these requirements have been developed and demonstrate a high PM filtering efficiency. However, these filters are installed outside the window or on the window screen guard, thereby requiring high levels of ultraviolet (UV), chemical, and thermal resistance. These requirements have been overlooked so far. In this study, we examine the fabrication and performance of a polybenzimidazole-benzophenone (PBI-BP) composite nanofiber air filter that demonstrates superb UV resistance and chemical and thermal durability. Because of the UV absorbance of the BP in the nanofibers, the filter membrane is robust even under prolonged UV exposure, which is essential for filters for this purpose. The filter membrane is not damaged even after treatment in strong acids or annealing at high temperature up to 400 °C. Thus, the PBI-BP composite filter is suitable for practical application in window air filters and can be adapted to develop filters used under other harsh environments.
人们对窗户空气过滤器的兴趣日益浓厚,以保护室内空气质量免受室外空气中超细颗粒物(PM)的影响。用于此目的的过滤器必须在不影响窗户原有功能(如高气渗透性和可视性)的情况下实现高过滤效率。已经开发出了几种满足这些要求的过滤器,并展示出了高PM过滤效率。然而,这些过滤器安装在窗户外部或窗纱防护装置上,因此需要高水平的紫外线(UV)、化学和热抗性。到目前为止,这些要求一直被忽视。在本研究中,我们研究了一种聚苯并咪唑 - 二苯甲酮(PBI - BP)复合纳米纤维空气过滤器的制造和性能,该过滤器具有出色的抗紫外线性能以及化学和热耐久性。由于纳米纤维中BP的紫外线吸收能力,即使在长时间紫外线照射下,滤膜也很坚固,这对于此类过滤器至关重要。即使在强酸处理或高达400°C的高温退火后,滤膜也不会受损。因此,PBI - BP复合过滤器适用于窗户空气过滤器的实际应用,并且可以用于开发在其他恶劣环境下使用的过滤器。