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Synthesis of robust and high-performance aquaporin-based biomimetic membranes by interfacial polymerization-membrane preparation and RO performance characterization

机译:通过界面聚合 - 膜制备和RO性能表征合成稳健且高性能的水通道蛋白质仿生膜

摘要

Aquaporins are water channel proteins with excellent water permeability and solute rejection, which makes them promising for preparing high-performance biomimetic membranes. Despite the growing interest in aquaporin-based biomimetic membranes (ABMs), it is challenging to produce robust and defect-free ABMs that can be easily scaled up. In the current study, a thin film composite (TFC) ABM was prepared by the interfacial polymerization method, where AquaporinZ-containing proteoliposomes were added to the m-phenylene-diamine aqueous solution. Control membranes, either without aquaporins or with inactive (mutant) aquaporins, were also similarly prepared. The separation performance of these membranes was evaluated by cross-flow reverse osmosis (RO) tests. Compared to the controls, the active ABM achieved significantly higher water permeability (~4L/m 2hbar) with comparable NaCl rejection (~97%) at an applied pressure of 5bar. Its permeability was ~40% higher compared to a commercial brackish water RO membrane (BW30) and an order of magnitude higher compared to a seawater RO membrane (SW30HR), which clearly demonstrates the great potential of the TFC ABM for desalination applications. © 2012 Elsevier B.V..
机译:水通道蛋白是具有优异的水渗透性和溶质排斥性的水通道蛋白,这使其有望用于制备高性能仿生膜。尽管人们对基于水通道蛋白的仿生膜(ABM)的兴趣日益浓厚,但要生产出易于扩展的坚固且无缺陷的ABM仍然是一项挑战。在当前的研究中,通过界面聚合方法制备了薄膜复合材料(TFC)ABM,其中将含AquaporinZ的蛋白脂质体添加到间苯二胺水溶液中。还类似地制备了无水通道蛋白或无活性(突变的)水通道蛋白的对照膜。这些膜的分离性能通过错流反渗透(RO)测试进行了评估。与对照组相比,在5bar的施加压力下,活性ABM的水渗透率(〜4L / m 2hbar)显着提高,NaCl截留率相当(〜97%)。与市售的微咸水反渗透膜(BW30)相比,它的渗透率高40%,比海水反渗透膜(SW30HR)高一个数量级,这清楚地证明了TFC ABM在脱盐应用中的巨大潜力。 ©2012 Elsevier B.V.

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