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Reduced graphene oxide-NH2 modified low pressure nanofiltration composite hollow fiber membranes with improved water flux and antifouling capabilities

机译:减少的氧化石墨烯-NH2改性的低压纳滤复合中空纤维膜,具有改善的水通量和防污能力

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Reduced graphene oxide-NH2 (R-GO-NH2), a kind of amino graphene oxide, was embedded into the polyamide (PA) layer of nanofiltration (NF) composite hollow fiber membranes via interfacial polymerization to enhance the permeate flux and antifouling properties of NF membranes under low pressure conditions. In addition, it could mitigate the poor compatibility issue between graphene oxide materials and PA layer. To evaluate the influence of R-GO-NH2 on the performance of the NF composite hollow fiber membrane, SEM, AFM, FTIR, XPS and Zeta potentials were used to characterize the membranes. The results indicated that the compatibility and interactions between R-GO-NH2 and PA layer were enhanced, which was mainly due to the polymerization reaction between amino groups of R-GO-NH2 and acyl chloride groups of TMC. Therefore, salts rejection of the current membranes was improved significantly, and the modified membranes with 50 mg/L R-GO-NH2 demonstrated highest performance in terms of the rejections, which were 26.9%, 98.5%, 98.1%, and 96.1%, for NaCl, Na2SO4, MgSO4, and CaCl2 respectively. It was found that with the R-GO-NH2 contents rasing from 0 to 50 mg/L, pure water flux increased from 30.44 +/- 1.71 to 38.57 +/- 2.01 L/(m(2).h) at 2 bar. What's more, the membrane demonstrated improved antifouling properties. (C) 2017 Elsevier B.V. All rights reserved.
机译:还原型氧化石墨烯-NH2(R-GO-NH2)是一种氨基氧化石墨烯,通过界面聚合作用被嵌入到纳滤(NF)复合中空纤维膜的聚酰胺(PA)层中,以增强其渗透通量和防污性能。低压条件下的NF膜。此外,它可以减轻氧化石墨烯材料与PA层之间相容性差的问题。为了评估R-GO-NH2对NF复合中空纤维膜性能的影响,使用SEM,AFM,FTIR,XPS和Zeta电位表征了膜。结果表明,R-GO-NH2与PA层之间的相容性和相互作用得到增强,这主要归因于R-GO-NH2的氨基与TMC的酰氯基之间的聚合反应。因此,当前膜的盐截留率得到了显着改善,含有50 mg / L R-GO-NH2的改性膜表现出最高的截留率,分别为26.9%,98.5%,98.1%和96.1%,分别用于NaCl,Na2SO4,MgSO4和CaCl2。结果发现,随着R-GO-NH2含量从0上升至50 mg / L,纯净水通量在2 bar下从30.44 +/- 1.71 L /(m(2).h)增加至。而且,该膜表现出改进的防污性能。 (C)2017 Elsevier B.V.保留所有权利。

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