Li Jilong, Jin Jiance, Zou Yanmin, Sun Haiyan, Zeng Xi, Huang Xiaoying, Feng Meiling, Kanatzidis Mercouri G
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian 350002, P.R. China.
College of Chemistry and Materials Science, Fujian Normal University, Fuzhou, Fujian 350007, P.R. China.
ACS Appl Mater Interfaces. 2021 Mar 24;13(11):13434-13442. doi: 10.1021/acsami.1c01983. Epub 2021 Mar 11.
The need to effectively and selectively remove radioactive Cs and Sr from nuclear waste solutions persists to mitigate their environmental mobility and high radiotoxicity. Because it is difficult to effectively remove them from acidic environments that degrade most sorbents, new sorbent materials are highly desirable. Here, efficient removal of Cs and Sr is achieved by the composite of layered tin sulfide (MeNH)(MeNH)SnS·1.25HO (FJSM-SnS) and polyacrylonitrile (PAN) (FJSM-SnS/PAN). The granulous composite possesses regular particle morphology and good mechanical strength as an engineered form. It shows excellent acid-base and γ-irradiation resistance, high maximum adsorption capacities () of 296.12 and 62.88 mg/g for Cs and Sr ions, respectively, and high selectivity even in the presence of excess Na ions or using lake water. Impressively, of FJSM-SnS/PAN reaches 89.29 mg/g under even acidic conditions (pH = 2.5). The column loaded with FJSM-SnS/PAN granules exhibits high removal rates () toward low-concentration Cs and Sr ions under both neutral and acidic conditions. Moreover, the composite can be recycled and reused with high and . This work highlights the great potential of metal sulfide ion-exchangers in engineered form for the efficient removal of Cs or Sr ions, especially under acidic conditions, for radionuclide remediation.
为了减轻放射性铯(Cs)和锶(Sr)在环境中的迁移性及其高放射性毒性,持续存在着从核废料溶液中有效且选择性地去除它们的需求。由于难以从会使大多数吸附剂降解的酸性环境中有效去除它们,因此非常需要新型吸附剂材料。在此,通过层状硫化锡(MeNH)(MeNH)SnS·1.25H₂O(FJSM-SnS)与聚丙烯腈(PAN)的复合材料(FJSM-SnS/PAN)实现了对Cs和Sr的高效去除。这种颗粒状复合材料具有规则的颗粒形态,作为一种工程形式具有良好的机械强度。它表现出优异的耐酸碱和耐γ辐射性能,对Cs和Sr离子的最大吸附容量(qmax)分别高达296.12和62.88 mg/g,即使在存在过量Na离子或使用湖水的情况下也具有高选择性。令人印象深刻的是,即使在酸性条件(pH = 2.5)下,FJSM-SnS/PAN的qmax也达到89.29 mg/g。装有FJSM-SnS/PAN颗粒的柱子在中性和酸性条件下对低浓度Cs和Sr离子均表现出高去除率(η)。此外,该复合材料可以以高qmax和η进行回收再利用。这项工作突出了工程形式的金属硫化物离子交换剂在高效去除Cs或Sr离子方面的巨大潜力,特别是在酸性条件下用于放射性核素修复。