College of Chemical Engineering, Fuzhou University, Fuzhou 350116, P. R. China.
Qingyuan Innovation Laboratory, Quanzhou 362801, P. R. China.
Environ Sci Technol. 2024 Oct 1;58(39):17376-17385. doi: 10.1021/acs.est.4c06225. Epub 2024 Sep 21.
The membrane fouling derived from the accumulated dust pollutants and highly viscous oily particles causes irreversible damage to the filtration performance of air filters and results in a significant reduction in their service life. However, it is still challenging to construct high-efficiency and antifouling air filtration membranes with recyclable regeneration. Herein, the fluorine-free amphiphobic micro/nanofiber composite membrane was controllably constructed by integrating click chemistry reaction and electrospinning technique. Low-surface-energy fibers were constructed by a thiol-ene click chemical reaction between mercaptosilane and vinyl groups of polystyrene-butadiene-styrene (SBS), combined with hydroxyl-terminated poly(dimethylsiloxane) during the electrospinning process. The functional air filter is then prepared by the two-layer composite strategy. Because of the advantages of liquid-like fibrous surface and micro/nanofibrous porous structure, SBS/PAN composite membrane simultaneously shows superior antifouling performances of pollutants and filtration efficiency of over 97% PM removal. More importantly, the antifouling fibrous membrane still presents a stable and efficient filtration efficiency after multiple washes. Its service life in dust filtration environments is approximately 1.7 times longer than that of the substrate membrane. This work may provide a significant reference for the design of antifouling fiber membranes and high-efficiency air filters with long life spans and reusability.
由积累的灰尘污染物和高粘性油性颗粒引起的膜污染对空气过滤器的过滤性能造成不可逆的损害,导致其使用寿命显著缩短。然而,构建具有可回收再生功能的高效、防污空气过滤膜仍然具有挑战性。在此,通过整合点击化学反应和静电纺丝技术,可控地构建了无氟两亲性微/纳米纤维复合膜。通过巯基-烯点击化学反应,将巯基硅烷与苯乙烯-丁二烯-苯乙烯(SBS)的乙烯基结合,同时在静电纺丝过程中结合端羟基聚二甲基硅氧烷(hydroxyl-terminated poly(dimethylsiloxane)),构建低表面能纤维。然后通过双层复合策略制备功能性空气过滤器。由于液态纤维表面和微/纳米纤维多孔结构的优势,SBS/PAN 复合膜同时表现出优异的防污性能和超过 97%的 PM 去除率的过滤效率。更重要的是,防污纤维膜在多次清洗后仍能保持稳定、高效的过滤效率。其在粉尘过滤环境中的使用寿命比基膜延长约 1.7 倍。这项工作可能为设计具有长寿命和可重复使用的防污纤维膜和高效空气过滤器提供重要参考。