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Fabrication of Stacked Graphene Oxide Nanosheet Membranes Using Triethanolamine as a Crosslinker and Mild Reducing Agent for Water Treatment

机译:三乙醇胺作为交联剂和轻度还原剂用于水处理的堆叠氧化石墨烯纳米片膜的制备

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摘要

Two-dimensional (2D) nanosheets show promise for the development of water treatment membranes with extraordinary separation properties and the advantages of atomic thickness with micrometer-sized lateral dimensions. Stacked graphene oxide (GO)-based membranes can demonstrate unique molecular sieving properties with fast water permeation. However, improvements to the structural stability of the membranes in water to avoid problems such as swelling, disruption of the ordered GO layer and decreased rejection are crucial issues. This study reports the fabrication of stacked GO nanosheet membranes by simple vacuum filtration using triethanolamine (TEOA) as a crosslinker and mild reducing agent for improved structural stability and membrane performance. Results show that GO membranes modified with TEOA (GO-TEOA membranes) have a higher structural stability in water than unmodified GO membranes, resulting in improved salt rejection performance. Furthermore, GO-TEOA membranes show stable water permeance at applied pressures up to 9 bar with Na2SO4 rejection of 85%, suggesting the potential benefits for water treatment applications.
机译:二维(2D)纳米片显示出有望开发出具有非凡分离特性的水处理膜,以及具有微米级横向尺寸的原子厚度优势的技术。堆叠的基于氧化石墨烯(GO)的膜可以展现出独特的分子筛特性,并具有快速的水渗透性。然而,改善膜在水中的结构稳定性以避免诸如溶胀,有序GO层的破坏和减少的拒收等问题是关键问题。这项研究报告了通过简单的真空过滤,使用三乙醇胺(TEOA)作为交联剂和温和的还原剂,以改善结构稳定性和膜性能,制造出堆叠的GO纳米片状膜的方法。结果表明,用TEOA改性的GO膜(GO-TEOA膜)在水中的结构稳定性高于未改性的GO膜,从而提高了脱盐性能。此外,GO-TEOA膜在高达9 bar的施加压力下表现出稳定的水渗透性,Na2SO4截留率达85%,这表明了其在水处理应用中的潜在优势。

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