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Enhanced covalent p-phenylenediamine crosslinked graphene oxide membranes: Towards superior contaminant removal from wastewaters and improved membrane reusability

机译:增强的共价对苯二胺交联氧化石墨烯膜:旨在从废水中出色地去除污染物并提高膜的可重复使用性

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摘要

The increasing depletion of freshwater necessitates the re-use and purification of wastewaters. Among the existing separation membrane materials, graphene oxide (GO) is a promising candidate, owing to its tunable physicochemical properties. However, the widening of GO membranes pore gap in aqueous environments is a major limitation. Crosslinking agents can be incorporated to alleviate this problem. This study describes a comparative analysis of uncrosslinked and p-Phenylenediamine (PPD) crosslinked GO membranes' water purification performance. Dip-coating and dip-assisted layer-by-layer methods were used to fabricate the uncrosslinked and crosslinked membranes respectively. The covalent interaction between GO and PPD was confirmed by Fourier Transform Infra-Red and X-ray Photoelectron Spectroscopy. The excellent membrane topographical continuity and intactness was assessed by means of Scanning Electron Microscopy, while water contact angle measurements were undertaken to evaluate and confirm membrane hydrophilicity. The improvement impact of the crosslinker was manifested on the enhancement of the stability and performance of the membranes during nanofiltration tests of aqueous solutions of methylene blue in a homemade nanofiltration cell operated at 1 bar.
机译:淡水的日益增加,使废水必须重新利用和净化。在现有的分离膜材料中,氧化石墨烯(GO)由于其可调节的理化性质而成为很有前途的候选者。然而,在水性环境中GO膜孔间隙的扩大是主要的限制。可以加入交联剂以减轻该问题。这项研究描述了未交联和对苯二胺(PPD)交联的GO膜水净化性能的比较分析。浸涂法和浸涂辅助层法分别用于制造未交联的膜和交联的膜。 GO和PPD之间的共价相互作用通过傅里叶变换红外和X射线光电子能谱确认。通过扫描电子显微镜评估了优异的膜形貌连续性和完整性,同时进行了水接触角测量以评估和确认膜的亲水性。交联剂的改善效果体现在在1 bar操作的自制纳滤池中亚甲基蓝水溶液的纳滤测试中膜的稳定性和性能的提高。

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