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Preparation of Interconnected Biomimetic Poly(vinylidene fluoride-co-chlorotrifluoroethylene) Hydrophobic Membrane by Tuning the Two-Stage Phase Inversion Process

机译:调整两相转化工艺制备相互连接的仿生聚偏二氟乙烯-氯三氟乙烯共聚物疏水膜

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摘要

A facile strategy was applied for poly(vinylidene fluoride-co-chlorotrifluoroethylene) (PVDF-CTFE) hydrophobic membrane preparation by tuning the two-stage phase inversion process. The exposure stage was found to benefit the solid-liquid demixing process (gelation/crystallization) induced by the solvent evaporation and the subsequent phase inversion induced by immersion benefit the liquid-liquid demixing. It was confirmed that the electrospun nanostructure-like biomimetic surface and interconnected pore structure can be expected by controlling the exposure duration, and 300 s was considered as the inflection point of exposure duration for PVDF-CTFE membrane through which a tremendous variation would show. The micro/nanohierarchical structure in the membrane surface owing to the crystallization of PVDF-CTFE copolymer was responsible for the improvement of membrane roughness and hydrophobicity. Meanwhile, the interconnected pore structure in both the surface and the cross-section, which were formed because of the crystallization process, offers more mass transfer passages and enhances the permeate flux. The membrane then showed excellent MD performance with high permeate flux, high salt rejection, and relatively high stability during a 48 h continuous DCMD operation, according to the morphology, pore structure, and properties, which can be a substitute for hydrophobic membrane application.
机译:通过调整两阶段相转化过程,将简便的策略应用于聚偏二氟乙烯-共氯三氟乙烯(PVDF-CTFE)疏水膜的制备。发现曝光阶段有益于由溶剂蒸发引起的固液混合过程(胶凝/结晶),而随后的由浸渍引起的相转化有利于液-液混合。可以确认,通过控制曝光时间,可以期待类电纺纳米结构的仿生表面和相互连通的孔结构,PVDF-CTFE膜的曝光时间的拐点被认为是300 s,由此可以显示出巨大的变化。由于PVDF-CTFE共聚物的结晶,膜表面的微/纳米级结构有助于改善膜的粗糙度和疏水性。同时,由于结晶过程而形成的在表面和横截面中相互连通的孔结构提供了更多的传质通道并增强了渗透通量。然后,根据形态,孔结构和性能,该膜表现出优异的MD性能,具有高的渗透通量,高的脱盐率和相对较高的稳定性(根据形态,孔结构和特性),可替代疏水膜的应用。

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