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Graphene oxide/sodium alginate nanofiltration membrane with double cross-linked structure for high-performance in dye separation

机译:具有双交联结构的氧化石墨烯/海藻酸钠纳滤膜,用于高性能染料分离

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摘要

Abstract Carbon materials have wide applicability in water purification, so graphene oxide (GO), which has tunable physicochemical properties, has great potential in molecular separation. Here, a method to precisely control the interlayer spacing by double cross-linking of sodium alginate (SA) and multivalent cations is reported. In this work, SA was first uniformLy anchored on the surface of GO nanosheets to form composite nanosheets (GO-SA), and then multivalent cations (Ba2+/Fe3+) were added to complete the crosslinking reaction and finally assembled into membranes (M/GO-SAx). The results show that the additional GO-SA component enlarged the nanochannels, and the water permeability of GO membranes is up to 72.29 L m−2 h−1 bar−1. Compared with the traditional GO membrane, the water permeability is increased by 3.5 times. Meanwhile, the composite nanofiltration membrane exhibits decent dye screening performance and the rejection rate of Methylene blue (MB) and Rhodamine B (RB) was more than 99. At the same time, the multivalent cations that participate in the membrane construction affect the performance of the membrane, and this makes the screening ability of the membrane for dyes significantly better. These studies provide new ideas and methods for designing nanofiltration membranes, which can be used to design and develop new nanofiltration membranes for water treatment.Graphical Abstract
机译:摘要 碳材料在水净化中具有广泛的适用性,因此具有可调理化性质的氧化石墨烯(GO)在分子分离方面具有巨大潜力。本文报道了一种通过海藻酸钠(SA)和多价阳离子双交联来精确控制层间距的方法。本工作首先将SA均匀地锚定在GO纳米片表面形成复合纳米片(GO-SA),然后加入多价阳离子(Ba2+/Fe3+)完成交联反应,最后组装成膜(M/GO-SAx)。结果表明,额外的GO-SA组分扩大了纳米通道,GO膜的透水率高达72.29 L m−2 h−1 bar−1。与传统GO膜相比,透水性提高了3.5倍。同时,复合纳滤膜表现出良好的染料筛选性能,亚甲基蓝(MB)和罗丹明B(RB)的截留率超过99%。同时,参与膜构建的多价阳离子影响膜的性能,这使得膜对染料的筛选能力明显更好。这些研究为纳滤膜的设计提供了新的思路和方法,可用于设计和开发用于水处理的新型纳滤膜。图形摘要

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