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Towards the Extraction of Radioactive Cesium-137 from Water via Graphene/CNT and Nanostructured Prussian Blue Hybrid Nanocomposites: A Review

机译:石墨烯/ CNT和纳米结构的普鲁士蓝杂化纳米复合材料从水中提取放射性铯137的研究进展

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摘要

Cesium is a radioactive fission product generated in nuclear power plants and is disposed of as liquid waste. The recent catastrophe at the Fukushima Daiichi nuclear plant in Japan has increased the 137Cs and 134Cs concentrations in air, soil and water to lethal levels. 137Cs has a half-life of 30.4 years, while the half-life of 134Cs is around two years, therefore the formers’ detrimental effects linger for a longer period. In addition, cesium is easily transported through water bodies making water contamination an urgent issue to address. Presently, efficient water remediation methods towards the extraction of 137Cs are being studied. Prussian blue (PB) and its analogs have shown very high efficiencies in the capture of 137Cs+ ions. In addition, combining them with magnetic nanoparticles such as Fe3O4 allows their recovery via magnetic extraction once exhausted. Graphene and carbon nanotubes (CNT) are the new generation carbon allotropes that possess high specific surface areas. Moreover, the possibility to functionalize them with organic or inorganic materials opens new avenues in water treatment. The combination of PB-CNT/Graphene has shown enhanced 137Cs+ extraction and their possible applications as membranes can be envisaged. This review will survey these nanocomposites, their efficiency in 137Cs+ extraction, their possible toxicity, and prospects in large-scale water remediation and succinctly survey other new developments in 137Cs+ extraction.
机译:铯是在核电站中产生的放射性裂变产物,并作为液体废物处置。日本福岛第一核电站最近发生的灾难使空气,土壤和水中的 137 Cs和 134 Cs浓度增加到致死水平。 137 Cs的半衰期为30.4年,而 134 Cs的半衰期为两年左右,因此前者的有害影响持续较长时间。另外,铯易于通过水体运输,这使得水污染成为亟待解决的问题。目前,正在研究有效的水修复方法来提取 137 Cs。普鲁士蓝(PB)及其类似物在捕获 137 Cs + 离子方面显示出很高的效率。此外,将它们与磁性纳米颗粒(例如Fe3O4)结合使用后,一旦耗尽,便可以通过磁性萃取回收。石墨烯和碳纳米管(CNT)是具有高比表面积的新一代碳同素异形体。此外,用有机或无机材料对它们进行功能化的可能性为水处理开辟了新途径。 PB-CNT /石墨烯的组合显示出增强的 137 Cs + 提取,并且可以设想其作为膜的可能应用。这篇综述将调查这些纳米复合材料,它们在 137 Cs + 提取中的效率,其可能的毒性以及大规模水修复的前景,并简要地调查 137中的其他新进展。 > 137 Cs + 提取。

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