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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Composite reverse osmosis membrane with a selective separation layer of double-layer structure for enhanced desalination, anti-fouling and durability properties
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Composite reverse osmosis membrane with a selective separation layer of double-layer structure for enhanced desalination, anti-fouling and durability properties

机译:复合反渗透膜具有双层结构选择性分离层,用于增强脱盐,防污和耐久性

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摘要

High performance membrane is crucial for energy-efficient desalination of salty water and reclamation of wastewater. Commercially available reverse osmosis membranes manufactured by interfacial polymerization or phase inversion techniques usually face the obstacle of "trade-off" effect between water permeation ability and salt rejection capability. In this work, a novel approach of constructing selective separation layer of double-layer structure was proposed to break through the difficulty of fabrication of reverse osmosis membrane with both high water permeation and salt rejection capabilities. Selective separation layer comprising loose polyamide (PA) sub bulk and dense hydroxypropyl methylcellulose (HPMC)-modified polyvinyl alcohol (PVA) top skin was constructed by the technique of interfacial polymerization followed with surface coating and cross-linking. The double-layer selective separation layer was found to possess an enhanced balance in water and salt permeations and endow the composite membrane with both high water flux and salt rejection. The desired membrane with an optimized selective layer of PA2/PVA + HPMC0.2 achieved 99.4% salt rejection and 37.9 kg/m(2) h MPa water permeance to brackish water, which were higher than those of commercial membrane BW30. Furthermore, the desired membrane also exhibited better separation and antifouling performances in reclamation of secondary industry effluent when compared with the state-of-theart antifouling membrane BW30FR.
机译:高性能的膜对于盐水的高效脱盐和废水的回收至关重要。通过界面聚合或相转化技术制造的商用反渗透膜通常面临着水渗透能力和盐截留能力之间的“权衡”效应的障碍。本研究提出了一种新的双层结构选择性分离层的构建方法,以突破制备具有高透水性和抗盐性的反渗透膜的困难。通过界面聚合、表面涂覆和交联技术,构建了由疏松聚酰胺(PA)亚块体和致密羟丙基甲基纤维素(HPMC)改性聚乙烯醇(PVA)顶皮组成的选择性分离层。发现双层选择性分离层具有增强的水和盐渗透平衡,并赋予复合膜高的水通量和盐截留率。所需的膜具有优化的PA2/PVA+HPMC0选择层。2对微咸水的截留率为99.4%,透水率为37.9kg/m(2)hmpa,高于商用膜BW30。此外,与目前最先进的防污膜BW30FR相比,所需的膜在二次工业废水回收中也表现出更好的分离和防污性能。

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