Enrichment of uranium in seawater by glycine cross-linked graphene oxide membrane

海水 石墨烯 甘氨酸 氧化物 化学 化学工程 核化学 无机化学 材料科学 纳米技术 冶金 有机化学 氨基酸 地质学 生物化学 海洋学 工程类
作者
Jian Chu,Qinggang Huang,Yuhua Dong,Ze Yao,Jieru Wang,Z. Qin,Ning Zhi-gang,Jianjun Xie,Wei Tian,Huijun Yao,Jing Bai
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:444: 136602-136602 被引量:31
标识
DOI:10.1016/j.cej.2022.136602
摘要

• Membrane separation technology was rarely used for seawater uranium enrichment. • A new typed GO-Gly composited membrane is fabricated. • GO-Gly membrane is stable with d suitable for uranium enrichment. • The membrane shows distinct rejection and enrichment properties toward uranium. • GO-Gly membrane has the potential for uranium enrichment in seawater. Extraction of uranium from seawater can satisfy the request for uranium in the field of sustainable nuclear power generation. However, direct extraction of uranium from seawater with traditional methods encounters many difficulties with reduced efficiency because of the extremely low uranium concentration. Based on the hydration diameter difference between uranium and the main coexisting ions (K + , Na + , Ca 2+ and Mg 2+ ), membrane separation technology is thought as an effective way to enrich uranium in seawater. Here, a new type of glycine (Gly) cross-linked graphene oxide (GO-Gly) membrane was fabricated, whose interlayer spacing ( d ) is very stable with uniform channel size satisfied the requirement for uranium enrichment. The respectively single ion rejection properties of uranium and the main coexisting ions in seawater revealed that ∼ 100% of uranium was rejected by the GO-Gly membrane. In addition, the excellent uranium rejection property of this membrane can be maintained in continuously filtrating the simulated seawater, only uranium ion was obviously enriched but the concentrations of the main coexisting ions kept nearly constant. The distinct rejection and enrichment properties of uranium ions by GO-Gly membrane made it an ideal candidate for uranium enrichment in seawater.
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