Ruan Huimin, Li Bin, Ji Jianbing, Sotto Arcadio, Van der Bruggen Bart, Shen Jiangnan, Gao Congjie
Center for Membrane Separation and Water Science & Technology, Ocean College, Zhejiang University of Technology Hangzhou 310014 PR China
College of Chemical Engineering, Zhejiang University of Technology Hangzhou 310014 PR China.
RSC Adv. 2018 Apr 10;8(24):13353-13363. doi: 10.1039/c8ra00637g. eCollection 2018 Apr 9.
Membrane fouling is an urgent problem needing to be solved for practical application of nanofiltration membranes. In this study, an amphiphilic nanofiltration membrane with hydrophilic domains as well as low surface energy domains was developed, to integrate a fouling-resistant defense mechanism and a fouling-release defense mechanism. A simple and effective two-step surface modification of a polyamide NF membrane was applied. Firstly, triethanolamine (TEOA) with abundant hydrophilic functional groups was grafted to the membrane surface reacting with the residual acyl chloride group of the nanofiltration membrane, making the nanofiltration membranes more hydrophilic; secondly, the 1,1,2,2-perfluorodecyltrichlorosilane (PFTS), well-known as a low surface energy material, was covalently grafted on the hydroxyl functional groups through hydrogen bonding. Filtration experiments with model foulants (bovine serum albumin (BSA) protein solution, humic acid solution (HA) and sodium alginate solution (SA)) were performed to estimate the antifouling properties of the newly developed nanofiltration membranes. As a result of surface modification proposed in this study the antifouling properties of an amphiphilic modified F-PA/PSF membrane were enhanced more than 10% compared to the PA/PSF specimen in terms of flux recovery ratio.
膜污染是纳滤膜实际应用中亟待解决的问题。在本研究中,开发了一种具有亲水域和低表面能域的两亲性纳滤膜,以整合抗污染防御机制和防污释放防御机制。对聚酰胺纳滤膜进行了简单有效的两步表面改性。首先,将具有丰富亲水性官能团的三乙醇胺(TEOA)接枝到膜表面,与纳滤膜残留的酰氯基团反应,使纳滤膜更具亲水性;其次,将众所周知的低表面能材料1,1,2,2-全氟癸基三氯硅烷(PFTS)通过氢键共价接枝到羟基官能团上。进行了使用模型污染物(牛血清白蛋白(BSA)蛋白溶液、腐殖酸溶液(HA)和海藻酸钠溶液(SA))的过滤实验,以评估新开发的纳滤膜的抗污染性能。作为本研究中提出的表面改性的结果,两亲性改性的F-PA/PSF膜在通量恢复率方面的抗污染性能比PA/PSF样品提高了10%以上。