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Updated: Sep 8, 2025

Self-Assembly of Hybrid Lipid Membranes Doped with Hydrophobic Organic Molecules at the Water/Air Interface
Published on: May 1, 2020
Innovative Organic-Inorganic Hybrid Membrane for Oil-Water Separation via Chemical Bond Reconstruction-Enhanced
Yaning Liu1, Zaijun Gui1, Liang Du1
1Lab of Clean Energy & Environmental Catalysis, School of Chemical and Chemical Engineering Anhui University, Hefei, 230601, China.
Abstract:
Membrane separation technology, characterized by low cost and high efficiency, holds great promise for oil-water separation. Performance hinges on membrane polarity and pore size. Using electrospinning, PVDF nanofiber membranes with 300 nm pores is prepared. Then, the nanofibers are coated with a hybrid organic-inorganic polymer via chitosan-zirconium salt crosslinking. Introducing a novel chemical bond reorganization method, glutaraldehyde broke metal complex bonds, forming high-energy covalent bonds and exposing positively charged zirconium ions. This unique structure created a durable anti-oil barrier, enhancing interface polarity and water film formation. At an applied pressure of 0.02 MPa, the membrane achieved a pure water flux of 7828 L m-2 h-1 bar-1 and an emulsion flux of 4280 L m-2 h-1 bar-1. The membrane maintained stable flux performance throughout 100 hydraulic cycles and 30 oil/water emulsion separation cycles. Remarkably, this technology removes hard-to-filter light oil emulsions (like kerosene), achieving comprehensive oil-water separation, underscoring the importance of interfacial polarity and chemical reorganization in membrane development.
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