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Development of a molecular separation membrane for efficient separation of low-molecular-weight organics and salts

机译:高效分离低分子量有机物和盐类的分子分离膜的开发

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A positively charged nanomaterial was prepared adopting the graft polymerization of ionic liquid monomers on halloysite nanotubes (HNTs) via reverse atom transfer radical polymerization (RATRP). A novel and facile organic-inorganic hybrid molecular separation membrane was then fabricated by the incorporation of modified HNTs via phase inversion method. This hybrid membrane was investigated in terms of morphology structure, hydrophilicity, thermal, mechanical and electrical properties, and separation performances. The results revealed that the hybrid membranes represented thickened and loosened skin layer, enhanced surface hydrophilicity and water flux, as well as good thermal and mechanical properties. Most importantly, the hybrid membranes showed stabilized rejection for Reactive Black 5 (above 90%) and Reactive Red 49 (80%-90%), whereas the rejection for sorts of salts declined to below 10% indicating a potential molecular separation characteristic for dye desalination. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过反向原子转移自由基聚合(RATRP),采用离子液体单体在埃洛石纳米管(HNT)上的接枝聚合反应,制备了带正电荷的纳米材料。然后,通过相转化法掺入改性的HNTs,制备了一种新颖,简便的有机-无机杂化分子分离膜。从形态结构,亲水性,热,机械和电性能以及分离性能方面研究了这种混合膜。结果表明,杂化膜具有增厚和疏松的表皮层,增强的表面亲水性和水通量以及良好的热和机械性能。最重要的是,杂化膜对活性黑5(高于90%)和活性红49(80%-90%)表现出稳定的排斥,而对各种盐类的排斥则降至10%以下,表明染料具有潜在的分子分离特性海水淡化。 (C)2014 Elsevier B.V.保留所有权利。

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