纳滤
膜
界面聚合
化学
糖
渗透
化学工程
水溶液
麦芽糖
聚酰胺
单体
聚酯纤维
氯化物
色谱法
有机化学
高分子化学
反渗透
蔗糖
聚合物
生物化学
渗透
工程类
作者
Junfeng Zheng,Yanling Liu,Junyong Zhu,Pengrui Jin,Tim Croes,A. Volodin,Shushan Yuan,Bart Van der Bruggen
标识
DOI:10.1016/j.memsci.2020.118786
摘要
Sugar-based nanofiltration membranes were successfully developed through a facile interfacial polymerization reaction. Glucose, maltose and raffinose, representing the most classic mono-, di- and tri-saccharides, were used as the aqueous monomers to react with trimesoyl chloride. Importantly, NaOH was utilized to accelerate the reaction between acyl chloride groups and the lowly active hydroxyl groups, forming a dense polyester separation layer. The optimal sugar-based membrane shows a high water permeance of 33.7 ± 1.4 L m−2 h−1 bar−1 and a Na2SO4 rejection of ~95%, demonstrating the potential of rapid desalination. Systematic characterizations by chemical analyses and optical microscopy were carried out. The results revealed that the high separation performance of the sugar-based membrane mainly benefited from its negatively charged, hydrophilic surface and super thin polyester layer. Considering the sustainable and green nature of saccharides, the sugar-based membrane is promising to stand out in the next-generation membrane field. Our findings enlighten the development of sugar as bio-monomer in fabricating high-performance nanofiltration membranes.
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