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以具有MS框架(M = Sb、In、Sn)的层状金属硫化物作为离子交换剂从放射性废水中去除Cs(Ⅰ)和Sr(Ⅱ)的研究综述

Layered metal sulfides with MS framework (M = Sb, In, Sn) as ion exchangers for the removal of Cs(Ⅰ) and Sr(Ⅱ) from radioactive effluents: a review.

作者信息

Zhao Qi, Wang Shuai, Wu Yichun, Wang Yixuan, Ma Shengshou, Shih Kaimin

机构信息

Department of Civil Engineering, The University of Hong Kong, Pokfulam, Hong Kong SAR,China.

School of Metallurgy, Northeastern University, Shenyang, Liaoning, China.

出版信息

Front Chem. 2023 Dec 6;11:1292979. doi: 10.3389/fchem.2023.1292979. eCollection 2023.

Abstract

Nuclear power has emerged as a pivotal contributor to the global electricity supply owing to its high efficiency and low-carbon characteristics. However, the rapid expansion of the nuclear industry has resulted in the production of a significant amount of hazardous effluents that contain various radionuclides, such as Cs and Sr. Effectively removing Cs and Sr from radioactive effluents prior to discharge is a critical challenge. Layered metal sulfides exhibit significant potential as ion exchangers for the efficient uptake of Cs and Sr from aqueous solutions owing to their open and exchangeable frameworks and the distinctive properties of their soft S ligands. This review provides a detailed account of layered metal sulfides with MS frameworks (M = Sb, In, Sn), including their synthesis methods, structural characteristics, and Cs and Sr removal efficiencies. Furthermore, we highlight the advantages of layered metal sulfides, such as their relatively high ion exchange capacities, broad active pH ranges, and structural stability against acid and radiation, through a comparative evaluation with other conventional ion exchangers. Finally, we discuss the challenges regarding the practical application of layered metal sulfides in radionuclide scavenging.

摘要

由于其高效率和低碳特性,核能已成为全球电力供应的关键贡献者。然而,核工业的迅速扩张导致产生了大量含有各种放射性核素(如铯和锶)的有害废水。在排放前有效地从放射性废水中去除铯和锶是一项严峻挑战。层状金属硫化物因其开放且可交换的框架以及其软硫配体的独特性质,作为从水溶液中高效摄取铯和锶的离子交换剂具有巨大潜力。本综述详细介绍了具有MS框架(M = Sb、In、Sn)的层状金属硫化物,包括它们的合成方法、结构特征以及铯和锶的去除效率。此外,通过与其他传统离子交换剂的比较评估,我们突出了层状金属硫化物的优势,如相对较高的离子交换容量、较宽的活性pH范围以及对酸和辐射的结构稳定性。最后,我们讨论了层状金属硫化物在放射性核素清除实际应用方面的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/086b/10730671/e54c62c6c6ac/fchem-11-1292979-g001.jpg

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