膜
聚丙烯腈
渗透
化学工程
油酸
材料科学
色谱法
纤维
膜技术
多孔性
化学
聚合物
复合材料
生物化学
工程类
作者
Nuannuan Wang,Mengjiao Xu,Changyu Leng,Qingtao Ma,Jiale Wei,Luxiang Wang,Nannan Guo,Lili Ai,Shizhan Feng,Jiaojiao Dai,Xiaoting Xu,Lanlan Zhao,Lanlan Zhao
标识
DOI:10.1016/j.seppur.2024.129043
摘要
The design of fiber membranes with both ultra-high flux and pH-responsive oil/water separation is challenging but of great significance to environmental protection and human health. In this work, the pH-responsive fiber membranes were prepared by immersing the silica-modified polyacrylonitrile fiber substrates into oleic acid solution. The obtained membranes exhibited highly rough surface structures (Ra = 14.26 µm), large pore sizes (5.35 µm), high porosities (86.04%), and pH-responsive functional groups, respectively. The pH-responsive fiber membranes also had superhydrophobic surfaces and excellent selective separation for oil/water mixtures, for example, a trichloromethane permeation flux of 87,829 L m-2h-1 for immiscible oil/water separation, and a water permeation flux of 69,802 L m-2h-1 after turning the pH of water from 7 to 13. The above data were much higher than those of stimulus-responsive fiber membranes used for oil/water separation. In addition, the pH-responsive fiber membranes were also used for separating water-in-oil emulsions and oil-in-water emulsions, and achieved the highest separation flux of 15,120 L m-2h-1. This work provides a simple strategy for the preparation of a stimulus responsiveness and high-performance material that can be used in the direction of treating practical oily wastewater.
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