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Ultra-Thin Pore-Spanning Biomimetic Membrane Embedded with Aquaporin Z In Forward Osmosis

机译:超薄孔跨越仿生膜,嵌入前进渗透性血管蛋白Z

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Aquaporin (Aqp), a highly selective water channel protein, has received worldwide attention because of its potential to form Aqp-based membranes with high flux and rejection for water reuse and desalination. However, proof-of-concept has never been demonstrated. Here, we molecularly architect a pore-spanning biomimetic membrane embedded with aquaporin Z (AqpZ) via a combination of surface modification followed by pressure-assisted vesicle adsorption and, finally, covalent conjugation-driven vesicle fusion onto a porous support. The biomimetic membrane consisting of a 1:100 molar ratio of AqpZ to poly(2-methyloxazoline)-b-poly(dimethylsiloxane)-6-poly(2-methyloxazoline), end functionalized with acrylate, (PMOXA12-PDMS54-PMOXA12) exhibits a water flux as high as 142 L/m~2/h with a sufficiently low salt reverse flux in forward osmosis (FO) operation using 2.0 M NaCl as the draw solution. The proposed AqpZ embedded pore-spanning membrane design not only shows superior performance in the FO process, but also may open a new horizon for next-generation membranes aimed at water purification and production.
机译:Aquaporin(AQP)是一种高精度的水通道蛋白,已经在全球范围内引起了全世界的注意,因为它可能形成基于AQP的膜,具有高通量和排斥水再利用和脱盐。但是,从未证明概念验证。在这里,我们通过表面改性的组合,通过表面改性的组合分子建筑物嵌入水蛋白Z(AQPZ),然后通过压力辅助囊泡吸附,最后,共价缀合驱动的囊泡融合到多孔载体上。由AQPZ与聚(2-甲氧唑啉)-B-聚(二甲基硅氧烷)-6-聚(2-甲氧基唑啉)的1:100摩尔比组成的仿真膜组成,用丙烯酸酯官能化(PMOXA12-PDMS54-PMOX12)展示水通量高达142L / m〜2 / h,使用2.0 m NaCl作为绘制溶液,具有足够低的渗透逆转渗透渗透量(Fo)操作。提出的AQPZ嵌入式孔隙型膜设计不仅在FO过程中表现出优越的性能,而且可能对旨在净水和生产的下一代膜开辟新的地平线。

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