Bicontinuous porous membranes with micro-nano composite structure using a facile atomization-assisted nonsolvent induced phase separation method

被引:0
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作者
Jing Wang
Guoyuan Pan
Yu Li
Yang Zhang
Hongwei Shi
Xuanbo Liu
Hao Yu
Muhua Zhao
Yiqun Liu
Changjiang Wu
机构
[1] Beijing University of Chemical Technology,College of Materials Science and Engineering
[2] SINOPEC Beijing Research Institute of Chemical Industry,undefined
关键词
atomization; nonsolvent induced phase separation; bicontinuous porous structure; micro-nano composite structure; oil-water separation;
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中图分类号
学科分类号
摘要
The micro-nano composite structure can endow separation membranes with special surface properties, but it often has the problems of inefficient preparation process and poor structural stability. In this work, a novel atomization-assisted nonsolvent induced phase separation method, which is also highly efficient and very simple, has been developed. By using this method, a bicontinuous porous microfiltration membrane with robust micro-nano composite structure was obtained via commercially available polymers of polyacrylonitrile and polyvinylpyrrolidone. The formation mechanism of the micro-nano composite structure was proposed. The microphase separation of polyacrylonitrile and polyvinylpyrrolidone components during the atomization pretreatment process and the hydrogen bonding between polyacrylonitrile and polyvinylpyrrolidone molecules should have resulted in the nano-protrusions on the membrane skeleton. The membrane exhibits superhydrophilicity in air and superoleophobicity underwater. The membrane can separate both surfactant-free and surfactant-stabilized oil-in-water emulsions with high separation efficiency and permeation flux. With excellent antifouling property and robust microstructure, the membrane can easily be recycled for long-term separation. Furthermore, the scale-up verification from laboratory preparation to continuous production has been achieved. The simple, efficient, cost-effective preparation method and excellent membrane properties indicate the great potential of the developed membranes in practical applications.
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页码:1268 / 1280
页数:12
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