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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Enhanced performance of polyvinylidene fluoride ultrafiltration membranes by incorporating TiO2/graphene oxide
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Enhanced performance of polyvinylidene fluoride ultrafiltration membranes by incorporating TiO2/graphene oxide

机译:通过掺入TiO 2 /石墨烯氧化物来增强聚偏二氟乙烯超滤膜的性能

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摘要

Aiming to enhance the water flux and anti-fouling performance of poly(vinylidene fluoride) (PVDF) ultrafiltration membranes, TiO2-GO/PVDF membranes were first fabricated via blending and immersion precipitation phase inversion. Following that, TiO2-GO nanocomposites grafted with different polyethylene glycol (PEG) were employed as the additives to prepare the novel PVDF hybrid membranes. FTIR spectroscope, SEM, zeta potentiometer, and static contact angle analyzer were employed to characterize the structure and surface properties of the hybrid membranes. Ultrafiltration was used to evaluate the membrane performance. Results showed that the interaction between GO and TiO2 led to the good distribution of TiO2-GO in the polymeric membrane, which increased the polarity and porosity of the hybrid membranes, thus increasing their water flux and anti-fouling performance. The maximum flux of hybrid membranes was four times that of the neat PVDF membrane. The PEG grafted on the TiO2-GO nanocomposites did not only act as a pore-forming additive, but also improved the hydrophilicity and porosity of the hybrid membrane due to the enhancement on the distribution and surface polarity of TiO2-GO. Therefore, both the flux and anti-fouling performance of PVDF membranes containing PEG-modified TiO2-GO were significantly higher than those of membranes including unmodified TiO2-GO. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:旨在增强聚(偏二氟乙烯)(PVDF)超滤膜的水通量和防污性能,首先通过混合和浸渍沉淀相反转制造TiO2-GO / PVDF膜。在此之后,使用用不同的聚乙二醇(PEG)接枝的TiO2-Go纳米复合材料作为添加剂,以制备新的PVDF杂交膜。 FTIR光谱仪,SEM,Zeta电位器和静电接触角分析仪用于表征杂化膜的结构和表面性质。超滤用于评估膜性能。结果表明,去和TiO2之间的相互作用导致TiO2-Go的良好分布在聚合物膜中,这增加了杂交膜的极性和孔隙率,从而增加了流量和防污性能。杂化膜的最大通量是整洁PVDF膜的四倍。接枝在TiO2-Go纳米复合材料上的栓膜不仅用作孔形成添加剂,而且还通过提高TiO2-Go的分布和表面极性而改善了杂种膜的亲水性和孔隙率。因此,含有PEG改性TiO2-Go的PVDF膜的助焊剂和抗结垢性能明显高于包括未修饰的TiO2-Go的膜。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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