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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Study on the fouling behavior of silica nanocomposite modified polypropylene membrane in purification of collagen protein
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Study on the fouling behavior of silica nanocomposite modified polypropylene membrane in purification of collagen protein

机译:二氧化硅纳米复合改性聚丙烯膜在胶原蛋白纯化中的结垢行为研究

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摘要

In this study, microporous polypropylene (PP) membrane was fabricated via thermally induced phase separation (TIPS) method. Using Stober method, hydrophilic SiO2 nanoparticles (NPs) were synthesized by in situ and ex situ approaches and covalently connected to the membrane via hydrolysis-condensation reactions with hydroxyl (-OH) groups, created by Piranha solution (3:1, v/v, H2SO4 and H2O2) in pretreatment step. The average sizes of SiO2 NPs synthesized by in situ and ex situ approaches were about 250-300nm and 15-20 nm, respectively. Incorporation of SiO2 NPs on the membrane surface improved surface hydrophilicity, pure water flux and mechanical properties and increased the portion of reversible fouling ratio (RFR) which consequently resulted in higher flux recovery (FR) of the membrane due to the hydrophilic property of SiO2 NPs. The flux recovery (FR) increased from 64.5% for unmodified membrane to 71.8%, 79.2% and 88.6% for PP-SiO2 composite membranes prepared by in situ and two ex situ routes with 6 and 12 h immersion time intervals, respectively. Application of combined fouling models revealed that the "cake filtration-standard blockage" fouling mechanism is prevailing fouling mechanism for all membranes. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在本研究中,通过热诱导相分离(TIPS)方法制备了微孔聚丙烯(PP)膜。使用Stober方法,通过原位和非原位方法合成了亲水性SiO2纳米颗粒(NPs),并通过Piranha溶液(3:1,v / v)与羟基(-OH)的水解-缩合反应与膜共价连接。 ,H2SO4和H2O2)。通过原位和非原位合成方法合成的SiO2 NP的平均尺寸分​​别为250-300nm和15-20nm。在膜表面上掺入SiO2 NPs可改善表面亲水性,纯净水通量和机械性能,并增加可逆结垢率(RFR)的部分,由于SiO2 NPs的亲水性,因此可导致膜的通量恢复率(FR)更高。通量恢复率(FR)从未经修饰的膜的64.5%增至通过原位和两种异位途径分别以6和12 h浸泡时间间隔制备的PP-SiO2复合膜的71.8%,79.2%和88.6%。组合污垢模型的应用表明,“滤饼过滤-标准堵塞”污垢机理是所有膜的主要污垢机理。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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