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使用离子液体中环冠醚从水溶液中高效去除铯离子:机制和辐射效应。

Efficient removal of caesium ions from aqueous solution using a calix crown ether in ionic liquids: mechanism and radiation effect.

机构信息

Beijing National Laboratory for Molecular Sciences (BNLMS), Department of Applied Chemistry, College of Chemistry and Molecular Engineering, Peking University, 100871, Beijing, P. R. China.

出版信息

Dalton Trans. 2010 Apr 28;39(16):3897-902. doi: 10.1039/b925594j. Epub 2010 Mar 17.

Abstract

The removal of radioactive (137)Cs from nuclear waste is of great importance for both the environment and energy saving. Herein, we report a study on the removal of Cs(+) using a calix crown ether bis(2-propyloxy)calix[4]crown-6 (BPC6) in ionic liquids [C(n)mim][NTf(2)], where C(n)mim is 1-alkyl-3-methylimidazolium and NTf(2) is bis(trifluoromethylsulfonyl)imide. The BPC6/[C(n)mim][NTf(2)] system is highly efficient in removing Cs(+) from aqueous solution, even at a low concentration of BPC6. HNO(3) and metal ions such as Na(+), Al(3+) in the aqueous phase interfered with the extraction of Cs(+) by competitive interaction with BPC6 and/or salting-out effect. UV analysis confirmed that the extraction of Cs(+) by the BPC6/[C(n)mim][NTf(2)] system involves a dual extraction mechanism, i.e., via exchange of BPC6.Cs(+) complex or Cs(+) by C(n)mim. Irradiation of [C(4)mim][NTf(2)] dramatically decreases Cs(+) partitioning in the ionic liquid phase by the competitive interaction of radiation-generated H(+) with BPC6, while irradiation of BPC6/[C(4)mim][NTf(2)] decreases Cs(+) partitioning more markedly due to the radiolysis of BPC6.

摘要

从核废料中去除放射性 (137)Cs 对于环境和节能都非常重要。在此,我们报告了使用杯冠醚二(2-丙氧基)杯[4]冠-6(BPC6)在离子液体 [C(n)mim][NTf(2)] 中去除 Cs(+) 的研究,其中 C(n)mim 为 1-烷基-3-甲基咪唑鎓,NTf(2) 为双(三氟甲基磺酰基)亚胺。BPC6/[C(n)mim][NTf(2)] 体系在去除水溶液中的 Cs(+) 方面非常有效,即使 BPC6 的浓度较低也是如此。HNO(3) 和金属离子如 Na(+)、Al(3+) 在水相中通过与 BPC6 的竞争相互作用和/或盐析效应干扰 Cs(+)的萃取。UV 分析证实,BPC6/[C(n)mim][NTf(2)] 体系通过 BPC6.Cs(+) 配合物或 C(n)mim 与 Cs(+) 的交换来萃取 Cs(+)。[C(4)mim][NTf(2)] 的辐照通过辐射产生的 H(+)与 BPC6 的竞争相互作用,显著降低了离子液体相中 Cs(+) 的分配,而 BPC6/[C(4)mim][NTf(2)] 的辐照由于 BPC6 的辐射分解,更明显地降低了 Cs(+)的分配。

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