Fabrication of antibacterial and self-cleaning CuxP@g-C3N4/PVDF-CTFE mixed matrix membranes with enhanced properties for efficient ultrafiltration

纳米片 化学工程 结垢 材料科学 聚偏氟乙烯 超滤(肾) 基质(化学分析) 氟化物 色谱法 化学 纳米技术 复合材料 无机化学 生物化学 工程类
作者
Wenyi Ma,Jian Pan,Wanzheng Ren,Long Chen,Lilan Huang,Shanshan Xu,Zhaohui Jiang
出处
期刊:Journal of Membrane Science [Elsevier]
卷期号:659: 120792-120792 被引量:21
标识
DOI:10.1016/j.memsci.2022.120792
摘要

Despite membrane separation technology has been extensively implemented in various field, the fouling caused by bacterial and organic dye seriously impair the performance and lifespan of the membrane, the anti-fouling modification of the membrane is still a challenging. In this work, the antibacterial and self-cleaning poly (vinylidene fluoride-chlorotrifluoroethylene) (PVDF-CTFE) mixed matrix membranes were prepared by non-solvent induced phase separation method using self-made graphite carbon nitride nanosheet wrapped copper phosphide (Cux[email protected]3N4) as modification additive. The sequel of the incorporated Cux[email protected]3N4 nanosheet content on the morphology, pore structure and physicochemical structure of membranes was investigated in terms of pure water flux, anti-fouling and antibacterial properties. The results showed that the addition of Cux[email protected]3N4 nanosheets not only improved the hydrophilicity and mechanical property of the membranes, but also enabled PVDF-CTFE membrane with the ability of inactivation bacteria and self-cleaning, which significantly enhanced the anti-fouling performance of PVDF-CTFE membrane in complex environment. When the amount of Cux[email protected]3N4 reached 2 wt%, the mixed matrix membrane possessed outstanding comprehensive performance with the pure water flux of 641.1 L m−2 h−1, antibacterial rate over 99% and self-cleaning under simulated sunlight, making the mixed matrix membrane a potential choice for wastewater treatment. In conclusion, this study enlightened the fabrication strategy of multifunctional mixed matrix membranes.
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