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Engineering design of outer-selective tribore hollow fiber membranes for forward osmosis and oil-water separation

机译:用于正向渗透和油水分离的外选择性三孔中空纤维膜的工程设计

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Outer-selective thin-film composite (TFC) hollow fiber membranes offer advantages like less fiber blockage in the feed stream and high packing density for industrial applications. However, outer-selective TFC hollow fiber membranes are rarely commercially available due to the lack of effective ways to remove residual reactants from fiber's outer surface during interfacial polymerization and form a defect-free polyamide film. A new simplified method to fabricate outer-selective TFC membranes on tribore hollow fiber substrates is reported. Mechanically robust tribore hollow fiber substrates containing three circular-sector channels were first prepared by spinning a P84/ethylene glycol mixed dope solution with delayed demixing at the fiber lumen. The thin wall tribore hollow fibers have a large pure water permeability up to 300 L m(-2) h(-1) bar(-1). Outer-selective TFC tribore hollow fiber membranes were then fabricated by interfacial polymerization with the aid of vacuum sucking to ensure the TFC layer well-attached to the substrate. Under forward osmosis studies, the TFC tribore hollow fiber membrane exhibits a good water flux and a small flux difference between active-to-draw (i.e., the active layer facing the draw solution) and active-to-feed (i.e., the active layer facing the feed solution) modes due to the small internal concentration polarization. A hyperbranched polyglycerol was further grafted on top of the newly developed TFC tribore hollow fiber membranes for oily wastewater treatment. The membrane displays low fouling propensity and can fully recover its water flux after a simple 20-min water wash at 0.5 bar from its lumen side, which makes the membrane preferentially suitable for oil-water separation. (c) 2015 American Institute of Chemical Engineers AIChE J, 61: 4491-4501, 2015
机译:外部选择性薄膜复合材料(TFC)中空纤维膜具有以下优点,例如,进料流中的纤维阻塞更少,工业应用的堆积密度高。然而,由于缺乏在界面聚合过程中从纤维外表面除去残留反应物并形成无缺陷的聚酰胺膜的有效方法,因此,选择性外部TFC中空纤维膜很少能在市场上买到。报道了一种新的简化方法,用于在中孔中空纤维基材上制备外部选择性TFC膜。首先通过旋转P84 /乙二醇混合浓液并在纤维内腔处延迟解混来制备具有三个圆形扇区通道的机械坚固的中空纤维中空基材。薄壁tribore中空纤维具有高达300 L m(-2)h(-1)bar(-1)的大纯净水渗透率。然后在真空抽吸的帮助下,通过界面聚合反应制备外选择性TFC孔中空纤维膜,以确保TFC层与基材的附着力良好。在正向渗透研究中,TFC三孔中空纤维膜表现出良好的水通量,并且在主动吸油(即,面对吸液的活性层)和主动吸油(即,活性层)之间的通量差较小面对进料溶液)模式,因为内部浓度极化很小。在新开发的TFC三孔中空纤维膜上接枝了超支化聚甘油,用于处理含油废水。该膜显示低的结垢倾向,并且在从其管腔侧以0.5 bar的压力进行简单的20分钟水洗后即可完全恢复其水通量,这使得该膜特别适合用于油水分离。 (c)2015年美国化学工程师学会AIChE J,61:4491-4501,2015

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