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◆ Journal of Water Process Engineering2026-02-02· Membrane

pH-responsive nanofibrous membrane with P(AA-r-MPS)/SiO2 hybrid hydrogel coating for oil-water separation

Run Yuan, Qimin Xuan, Tingting Deng, Wensheng Qi, Dapeng Liu, Shusu Shen, G.Z. Zhang, Yaoliang Hong

原始摘要(英文原文)· Original abstract
The ecological environment faces significant risks from oil-containing wastewater, highlighting a pressing need for advanced and effective oil-water separation methods. Although membrane separation technology is recognized for its low energy consumption, it faces challenges including low porosity and high cost in its traditional forms. Smart membranes, offer a new path to overcome this bottleneck. This study developed a pH-responsive PVDF oil-water separation membrane by preparing an organic-inorganic hybrid material through the hydrolytic hybridization of a copolymer containing a silane coupling agent with nano-SiO 2 . The smart separation membrane not only achieved a high oil-water rejection rate (>99.80%) and remarkable flux of 1821 L·m −2 ·h −1 , but also exhibited intelligent self-cleaning properties. Leveraging its pH responsiveness, simple rinsing with acidic water effectively removed contaminants, resulting in a flux recovery rate of up to 97.90%, highlighting its significant potential for treating complex oily wastewater. Collectively, these results demonstrated that this strategy has achieved a degree of integration between high-efficiency separation performance and intelligent self-cleaning functionality, providing valuable insights and potential solutions for the advancement of intelligent separation technology.
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pH-responsive nanofibrous membrane with P(AA-r-MPS)/SiO2 hybrid hydrogel coating for oil-water separation — 科研速览 Science Skim