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Graphene oxide (GO) enhanced polyamide (PA) thin-film nanocomposite (TFN) membrane for water purification

机译:用于水净化的氧化石墨烯(GO)增强聚酰胺(PA)薄膜纳米复合材料(TFN)膜

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A thin-film nanocomposite (TFN) membrane containing graphene oxide (GO) nanosheets was prepared by the in-situ interfacial polymerization process. Aqueous m-phenylenediamine (MPD) and organic trimesoyl chloride (TMC)-GO mixture solutions were used in this process. GO nanosheets with a multilayer structure and an interlayer spacing around 0.83 nm were prepared and used as fillers at concentrations ranging from 0 to 0.02 wt% during the membrane fabrication. The membranes were characterized by scanning electron microscopy (SEM), transmission electron microscopy (TEM), atomic force microscopy (AFM), Raman spectroscopy, and attenuated total reflection Fourier transform infrared (ATR FT-IR) spectroscopy. The membrane performances were evaluated based on water permeability and salt rejection. Results indicated that the GO nanosheets were dispersed well in the polyamide (PA) layer and their incorporation improved membrane performances. With an increasing concentration of GO from 0 to 0.015 wt.% in the TMC-hexane phase during the fabrication, the permeate flux under 300 psi increased from 39.0 +/- 1.6 to 59.4 +/- 0.4 L/m(2) h, while rejections of NaCl and Na2SO4 slightly decreased from 95.7 +/- 0.6% to 93.8 +/- 0.6% and 98.1 +/- 0.4% to 97.3 +/- 0.3%, respectively. Interlayer spacing of GO nanosheets may have served as water channels and hence contributed to the water permeability enhancement. (C) 2015 Published by Elsevier B.V.
机译:通过原位界面聚合工艺制备了包含氧化石墨烯(GO)纳米片的薄膜纳米复合材料(TFN)膜。间苯二胺(MPD)水溶液和有机均苯三甲酰氯(TMC)-GO混合溶液用于此过程。制备具有多层结构和层间间距为约0.83nm的GO纳米片,并在膜制造期间以0至0.02重量%的浓度用作填充剂。通过扫描电子显微镜(SEM),透射电子显微镜(TEM),原子力显微镜(AFM),拉曼光谱和衰减全反射傅立叶变换红外(ATR FT-IR)光谱对膜进行表征。基于透水性和脱盐性来评价膜性能。结果表明,GO纳米片很好地分散在聚酰胺(PA)层中,它们的掺入改善了膜的性能。在制造过程中,随着TMC-己烷相中GO的浓度从0增加到0.015 wt。%,在300 psi下的渗透通量从39.0 +/- 1.6增加到59.4 +/- 0.4 L / m(2)h,而NaCl和Na2SO4的排斥率分别从95.7 +/- 0.6%降至93.8 +/- 0.6%和98.1 +/- 0.4%至97.3 +/- 0.3%。 GO纳米片的层间间距可能已经用作水通道,因此有助于提高水的渗透性。 (C)2015由Elsevier B.V.发布

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