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首页> 外文期刊>Separation and Purification Technology >Tuning the microstructure and permeation property of thin film nanocomposite membrane by functionalized inorganic nanospheres for solvent resistant nanofiltration
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Tuning the microstructure and permeation property of thin film nanocomposite membrane by functionalized inorganic nanospheres for solvent resistant nanofiltration

机译:通过功能化无机纳米球调节薄膜纳米复合膜的微结构和渗透性能,以实现耐溶剂纳米过滤

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摘要

Herein, a series of thin film nanocomposite (TFN) membranes are prepared by incorporating functionalized silica nanospheres into polyethyleneimine (PEI) matrix for solvent resistant nanofiltration (SRNF). Three functional groups are grafted onto the nanospheres in form of polymer layer via distillation-preci pitation polymerization for manipulating the free volume cavities of PEI matrix by interfacial interactions along PEI-nanosphere domains. The effects of nanospheres on the microstructures, physicochemical and permeation properties of TFN membranes are investigated systematically. The tested data suggest that the nanospheres are uniformly dispersed in PEI matrix without obvious defects, offering the excellent thermal stability and appropriate solvent resistance to the membranes. The microstructures of TFN membranes are elaborately regulated by varying the fractional free volume (FFV) and surface hydrophilic/hydrophobic nature, jointly yielding the tunable permeation properties. In particular, the permeate flux of ethanol is elevated from 21.2 to 30.8 L m(-1) h(-1) with the increase of FFV from 0.452% to 0.473% by incorporating various hydrophilic nanospheres. Meanwhile, the addition of hydrophobic nanospheres provided much higher fluxes for n-heptane from 0.1 to 21.7 L m(-1) h(-1), due to the enhanced solution capability. Moreover, the presence of nanospheres donates high rejection ability and promising operation stability to the TFN membranes. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文中,通过将官能化的二氧化硅纳米球掺入聚乙烯亚胺(PEI)基质中以制备耐溶剂纳米过滤(SRNF),制备了一系列薄膜纳米复合材料(TFN)膜。通过蒸馏-精密沉淀聚合将三个官能团以聚合物层的形式接枝到纳米球上,以通过沿PEI-纳米球域的界面相互作用来操纵PEI基质的自由体积腔。系统研究了纳米球对TFN膜的微观结构,理化性质和渗透性能的影响。测试数据表明,纳米球均匀分散在PEI基质中,没有明显的缺陷,提供了出色的热稳定性和对膜的适当耐溶剂性。通过改变自由体积分数(FFV)和表面亲水/疏水性质,可以精细地调节TFN膜的微观结构,共同产生可调的渗透性能。特别是,通过掺入各种亲水性纳米球,乙醇的渗透通量从21.2 Lm(-1)h(-1)增加到30.8 L m(-1)h(-1),FFV从0.452%增加到0.473%。同时,由于增强了溶液的溶解能力,疏水性纳米球的添加为正庚烷提供了从0.1到21.7 L m(-1)h(-1)更高的通量。此外,纳米球的存在为TFN膜提供了高排斥能力和有希望的操作稳定性。 (C)2016 Elsevier B.V.保留所有权利。

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