Zhang Liyun, Wen Xin, Zhang Guilan, Wang Xin, Li Xiang, Peng Cong, Jiang Minghang, Wang Mengjun, Ma Lan
School of Science, Xihua University, Jinzhou Road, Chengdu, Sichuan 610039, P. R. China.
Langmuir. 2024 Oct 15;40(41):21663-21674. doi: 10.1021/acs.langmuir.4c02718. Epub 2024 Oct 5.
Developing a strong catalytic antifouling membrane to achieve efficient sewage purification has great potential for alleviating water crisis. In this work, we designed and prepared an Fe/Cu-layered double hydroxide (Fe-Cu LDH)-coated polyvinylidene fluoride (PVDF) composite membrane (PVDF/Fe-Cu LDHs) with strong antifouling and activating peroxymonosulfate (PMS) catalytic degradation performance through polydopamine-coordination anchoring and hydrothermal reaction. The results showed that abundant hydroxyl groups of the LDH surface endowed the superhydrophilicity (water contact angle <10°) and underwater superoleophobicity (underwater-oil contact angle >150°) of the membrane surface, which displayed outstanding resistance to crude oil adhesion. With assistance of the LDH surface-bound sulfate radical of the peroxymonosulfate system, the PVDF/Fe-Cu LDH membrane demonstrated robust catalytic degradation performance for the methylene blue (MB) in the dark; the degradation rate constant (, min) reached 0.96. Meanwhile, facing the oily wastewater, the selective wettability and charge effect of LDH of the surface made the PVDF/Fe-Cu LDH membrane realize the separation for the various surfactant-free and surfactant-stabilized emulsions. Importantly, the PMS-activation catalytic produced the ROS (•SO,•OH, •O, and O), which enhanced the regeneration of the fouled PVDF/Fe-Cu LDH membrane and obtained a high flux recovery ratio in the dark (94.7%) after 10 cycles of separation experiments. Hence, we believed that the PVDF/Fe-Cu LDH membrane can provide inspiration for the development and further practical application of antifouling membranes.
开发一种强大的催化防污膜以实现高效的污水净化,对于缓解水危机具有巨大潜力。在这项工作中,我们通过聚多巴胺配位锚固和水热反应,设计并制备了一种具有强防污和活化过一硫酸盐(PMS)催化降解性能的铁/铜层状双氢氧化物(Fe-Cu LDH)包覆聚偏氟乙烯(PVDF)复合膜(PVDF/Fe-Cu LDHs)。结果表明,LDH表面丰富的羟基赋予了膜表面超亲水性(水接触角<10°)和水下超疏油性(水下油接触角>150°),使其对原油粘附表现出优异的抗性。在过一硫酸盐体系中LDH表面结合的硫酸根自由基的辅助下,PVDF/Fe-Cu LDH膜在黑暗中对亚甲基蓝(MB)表现出强大的催化降解性能;降解速率常数(,min)达到0.96。同时,面对含油废水,表面LDH的选择性润湿性和电荷效应使PVDF/Fe-Cu LDH膜实现了对各种无表面活性剂和表面活性剂稳定乳液的分离。重要的是,PMS活化催化产生了ROS(•SO、•OH、•O和O),增强了污染的PVDF/Fe-Cu LDH膜的再生能力,并在10次分离实验循环后在黑暗中获得了较高的通量恢复率(94.7%)。因此,我们认为PVDF/Fe-Cu LDH膜可为防污膜的开发和进一步实际应用提供启示。