Metal-phenolic network as precursor complex coating for forward osmosis membrane with enhanced antifouling property

Yan Sun, Xiaoyang Xie, Xiangdong Ma, Qianying Feng, Changhao Xu, Jiaqi Shen, Yuxin Gu, Chuanliang Zhao, JiaoJie He
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Abstract

In this study, a multi-functional layer was developed based on the commercially available cellulose triacetate (CTA) forward osmosis (FO) membrane to improve its antifouling properties. Tannic acid/ferric ion (TA/Fe3+) complexes were firstly coated as a precursor layer on the membrane surface via self-assembly. Afterwards, the tannic acid/diethylenetriamine (TA/DETA) hydrophilic functional layer was further coated, following Ag/polyvinylpyrrolidone (PVP) anti-bacterial layer was formed in situ through the reducibility of TA to obtain TA/Fe3+-TA/DETA-Ag/PVP-modified membrane. The optimized precursor layer was acquired by adjusting the buffer solution pH to 8, TA/Fe3+ ratio to 4 and the number of self-assembled layers to 5. The permeability testing results illustrated that the functional layer had an insignificant effect on the membrane transport parameters. The TA/Fe3+-TA/DETA-Ag/PVP-modified membrane simultaneously exhibited excellent physical and chemical stability. The coated membrane also demonstrated enhanced anti-bacterial properties, achieving 98.63 and 97.30% inhibition against Staphylococcus aureus and Escherichia coli, respectively. Furthermore, the dynamic fouling experiment showed a 12% higher water flux decrease for the TA/Fe3+-TA/DETA-Ag/PVP CTA membrane compared to the nascent CTA membrane, which proved its excellent antifouling performance. This work provides a feasible strategy to heighten the antifouling property of the CTA FO membrane.
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作为前驱体复合涂层的金属酚醛网络可增强正向渗透膜的防污性能
本研究在市售三醋酸纤维素(CTA)正渗透(FO)膜的基础上开发了一种多功能膜层,以改善其防污性能。首先,单宁酸/铁离子(TA/Fe3+)复合物作为前驱层通过自组装被涂覆在膜表面。然后进一步涂覆单宁酸/二乙烯三胺(TA/DETA)亲水功能层,再通过 TA 的还原性在原位形成 Ag/聚乙烯吡咯烷酮(PVP)抗菌层,得到 TA/Fe3+-TA/DETA-Ag/PVP 改性膜。将缓冲溶液的 pH 值调至 8,TA/Fe3+ 的比例调至 4,自组装层数调至 5,得到了优化的前体层。渗透性测试结果表明,功能层对膜传输参数的影响不大。TA/Fe3+-TA/DETA-Ag/PVP 改性膜同时表现出优异的物理和化学稳定性。涂覆膜还具有更强的抗菌性能,对金黄色葡萄球菌和大肠杆菌的抑制率分别达到 98.63% 和 97.30%。此外,动态污垢实验显示,与新生 CTA 膜相比,TA/Fe3+-TA/DETA-Ag/PVP CTA 膜的水通量下降率高达 12%,这证明了其卓越的防污性能。这项工作为提高 CTA FO 膜的防污性能提供了可行的策略。
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