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DES改变胺单体扩散速率制备高性能复合反渗透膜

何金 赖裕文 李艳春 周士林 周勇 高从堦

化工进展2024,Vol.43Issue(4):1972-1980,9.
化工进展2024,Vol.43Issue(4):1972-1980,9.DOI:10.16085/j.issn.1000-6613.2023-0713

DES改变胺单体扩散速率制备高性能复合反渗透膜

DES changed the diffusion rate of amine monomer to prepare high-performance composite reverse osmosis membrane

何金 1赖裕文 1李艳春 1周士林 1周勇 2高从堦1

作者信息

  • 1. 浙江工业大学化工学院膜分离与水科学技术中心,浙江杭州 310014
  • 2. 浙江工业大学化工学院膜分离与水科学技术中心,浙江杭州 310014||浙江工业大学膜分离与水处理协同创新中心湖州研究院,浙江湖州 313000
  • 折叠

摘要

Abstract

Among the commonly used methods to improve the performance of composite films,interfacial polymerization(IP),a key step to regulate the formation of composite films,is a simple and effective method,however,the influence of deep eutectic solvents in the process of interfacial polymerization is relatively rare,and a polyamide composite reverse osmosis membrane is prepared by introducing deep eutectic solvents(DES with a molar ratio of 1∶2)into the interfacial polymerization process.The structure and physicochemical properties of composite films were characterized by Fourier infrared spectroscopy(FTIR),X-ray photoelectron spectroscopy(XPS),field emission scanning electron microscopy(SEM)and atomic force microscopy(AFM).The effect of DES addition on the performance of reverse osmosis membrane was investigated,and the effect of viscosity on the diffusion rate of amine monomer was systematically analyzed.When the DES addition amount was 5%,the composite membrane had the best comprehensive performance,with a flux of 63L/(m2·h)and a retention rate of 99%.The results showed that the incorporation of DES reduced the surface roughness,hydrophilicity and electronegativity,and increased the flux of the composite reverse osmosis membrane modified by DES compared with the unmodified composite membrane.This work was of great significance for the preparation of high-performance composite membranes.

关键词

/聚合/扩散/低共熔溶剂/反渗透

Key words

membranes/polymerization/diffusion/deep eutectic solvents(DES)/reverse osmosis

分类

化学化工

引用本文复制引用

何金,赖裕文,李艳春,周士林,周勇,高从堦..DES改变胺单体扩散速率制备高性能复合反渗透膜[J].化工进展,2024,43(4):1972-1980,9.

基金项目

国家重点研发计划(2021YFB3801103). (2021YFB3801103)

化工进展

OA北大核心CSTPCD

1000-6613

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