聚丙烯腈
乳状液
纤维素
复合数
膜
材料科学
化学工程
再生纤维素
极限抗拉强度
纳米纤维
复合材料
聚合物
工程类
遗传学
生物
作者
Dong Wang,Haiying Yang,Qingxiang Wang,Yi Lu,Jie Yan,Wanli Cheng,Orlando J. Rojas,Guangping Han
标识
DOI:10.1016/j.compositesa.2022.107300
摘要
As a result of fatigue and damage, the durability of separation membranes remains a major challenge for long-term use in the separation of multiphase systems, such as oily water and emulsions. Here, we synthesize electrospun membranes based on hydrolyzed polyacrylonitrile reinforced with cellulose nanocrystals (CNC). The nanofibers form highly porous systems that are held together by crosslinking, allowing fast mass transport while achieving high tensile strength and elongation at break. The membranes exhibit shape retention upon immersion in complex fluids. An underwater oil contact angle of 141° enables efficient emulsion separation (98.2 % separation at a flux as high as 1293 L·m−2·h−1 for hexane-in-water emulsions) and reliable operation for at least 20 filtration cycles. A similar performance is achieved in the separation of emulsions based on toluene, petroleum ether, diesel, and vegetable oils. Overall, the designed composite membranes endow stable three-dimensional structures, excellent durability, and separation performance.
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