Textile and Garment Industry of Research Institute, Zhongyuan University of Technology, Zhengzhou 450007, People's Republic of China; International Joint Laboratory of New Textile Materials and Textiles of Henan Province, Zhengzhou 450007, People's Republic of China.
Textile and Garment Industry of Research Institute, Zhongyuan University of Technology, Zhengzhou 450007, People's Republic of China; International Joint Laboratory of New Textile Materials and Textiles of Henan Province, Zhengzhou 450007, People's Republic of China.
J Colloid Interface Sci. 2022 Feb;607(Pt 1):711-719. doi: 10.1016/j.jcis.2021.09.040. Epub 2021 Sep 9.
Indoor air quality (IAQ) has assumed new significance given the extensive amount of time spent indoor due to the coronavirus pandemic and particulate matter (PM) pollution. Accordingly, the development of window air filters to effectively intercept PM from outdoor air under natural ventilation conditions is an important research topic. However, most existing filters inevitably suffer from the compromise among filtration capability, transparency, and air permeability. In this study, we fabricate a high-performance transparent air filter to improve IAQ via natural ventilation. polyvinylidene fluoride (PVDF) superfine nanofibers of size 20-35 nm are prepared using extremely dilute solution electrospinning; a multi-scale nanofiber structure is then designed. By adjusting the ratio of PVDF superfine nanofibers (SNs) to PVDF coarse fibers (CNs), we balance the structure-performance relationship. Benefiting from the multiscale structural features that include a small pore size (0.72 μm) and high porosity (92.22%), the resulting filters exhibit excellent performance including high interception efficiency (99.92%) for PM, low air resistance (69 Pa), high transparency (∼80%) and stable filtration after 100 h of UV irradiation. This work describes a new strategy for the fabrication of nanofibers with true-nanoscale diameters and the design of high-performance air filters.
由于冠状病毒大流行和颗粒物 (PM) 污染,人们大量时间都在室内,因此室内空气质量 (IAQ) 变得尤为重要。因此,开发能够在自然通风条件下有效拦截室外空气中 PM 的窗式空气过滤器是一个重要的研究课题。然而,大多数现有过滤器不可避免地在过滤能力、透明度和透气性之间存在折衷。在这项研究中,我们通过自然通风制造了一种高性能透明空气过滤器来改善室内空气质量。使用极其稀释的溶液纺丝制备尺寸为 20-35nm 的聚偏二氟乙烯 (PVDF) 超细纳米纤维;然后设计了一种多尺度纳米纤维结构。通过调整 PVDF 超细纳米纤维 (SNs) 与 PVDF 粗纤维 (CNs) 的比例,我们平衡了结构-性能关系。得益于包括小孔径 (0.72μm) 和高孔隙率 (92.22%) 在内的多尺度结构特征,所得过滤器表现出出色的性能,包括对 PM 的高拦截效率 (99.92%)、低空气阻力 (69 Pa)、高透明度(约 80%)和在 100 小时紫外线照射后稳定的过滤性能。这项工作描述了一种制造具有真正纳米级直径的纳米纤维的新策略和高性能空气过滤器的设计。