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Enhancing the performance of thin-film nanocomposite nanofiltration membranes using MAH-modified GO nanosheets

机译:使用MAH改性的GO纳米片增强薄膜纳米复合纳米过滤膜的性能

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摘要

In this work, novel thin-film nanocomposite (TFN) nanofiltration (NF) membranes were developed through modification with maleic anhydride functionalized graphene oxide (MAH-GO) via interfacial polymerization (IP). First, MAH-GO was synthesized by linking MAH molecules to the electrophilic groups (C–OH) of GO nanosheets. The resulting materials were characterized in depth by FT-IR, TEM, SEM, AFM, XPS and Raman spectroscopy. Subsequently, the MAH-GO and GO nanosheets were individually introduced into the polypiperazine-amide (PPA) active layer of TFN NF membranes via IP between piperazine (PIP) and trimesoyl chloride (TMC). The influence of the MAH-GO or GO concentrations on the morphology and performance of TFN NF membranes was systematically investigated. Compared with TFC-blank, the TFN-MG-60 and TFN-GO-80 membranes demonstrated significantly enhanced separation performance without reduction of the salt rejection. Particularly, the water flux of TFN-MG-60 and TFN-GO-80 was found to be 49.3 L m?2 h?1 and 42.0 L m?2 h?1, respectively, corresponding to 176.7% and 150.5% of TFC-blank. Moreover, TFN-MG-60 demonstrated superior water permeability, antifouling capability and chlorine resistance to TFN-GO-80, which was attributed to the incorporation of MAH-GO nanosheets having more hydrophilic carboxyl groups. Meanwhile, TFN-MG-60 retained a high salt rejection rate of 97.6% to Na2SO4, comparable to that of TFC-blank. The MAH-GO nanosheets show great potential in developing high-performance TFN NF membranes to overcome the trade-off effect of conventional thin-film composite membranes.
机译:在这项工作中,通过界面聚合(IP)通过马来酸酐官能化氧化石墨烯(MAH-GO)改性,开发了新型薄膜纳米复合材料(TFN)纳滤(NF)膜。首先,通过将MAH分子与GO纳米片的亲电基团(C-OH)连接来合成MAH-GO。通过FT-IR,TEM,SEM,AFM,XPS和拉曼光谱对所得材料进行深度表征。随后,通过哌嗪(PIP)和均苯三甲酰氯(TMC)之间的IP将MAH-GO和GO纳米片分别引入TFN NF膜的聚哌嗪酰胺(PPA)活性层。系统研究了MAH-GO或GO浓度对TFN NF膜的形态和性能的影响。与TFC-blank相比,TFN-MG-60和TFN-GO-80膜表现出显着增强的分离性能,且不降低盐分截留率。特别是,发现TFN-MG-60和TFN-GO-80的水通量为49.3 L m ?2 h ?1 < / sup> 和42.0 L m ?2 h ?1 ,分别对应于176.7 %和150.5%的TFC空白。此外,TFN-MG-60对TFN-GO-80表现出优异的透水性,防污能力和耐氯性,这归因于掺入了具有更多亲水性羧基的MAH-GO纳米片。同时,TFN-MG-60对Na 2 SO 4 的脱盐率仍高达97.6%,相当于TFC空白。 MAH-GO纳米片在开发高性能TFN NF膜方面显示出巨大的潜力,可以克服常规薄膜复合膜的权衡效果。

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