Zhou Wentao, Song Jia, Lin Lve, Zhang Xinyu, Guo Shaoqiang, Wang Yafei
School of Nuclear Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Shaanxi Key Laboratory of Advanced Nuclear Energy and Technology, School of Nuclear Science and Technology, Xi'an Jiao Tong University, Xi'an 710049, China.
Phys Chem Chem Phys. 2024 Oct 2;26(38):24931-24940. doi: 10.1039/d4cp02144d.
The structure and dynamic properties of Cs in the mixed system of LiCl-KCl molten salt and a liquid metal (Bi and Pb) electrode are investigated through first-principles molecular dynamics simulation. It is found that the dynamic properties of different ions in molten salt could be significantly affected when the liquid metal electrode is coupled and this influence varies with the type of liquid metal applied. The microstructures of the mixed systems of molten salt and liquid metal electrode: MS-Cs-Bi, MS-CsCl-Bi, MS-Cs-Pb, and MS-CsCl-Pb, are also investigated by the bond angle distribution function, Voronoi tessellation analysis, five-fold symmetry parameter, and bond-orientational order parameter. The comparison study of the microstructures of the mixed systems when different liquid metal electrodes are applied provides information on the liquid metal electrode selection when conducting electrolysis. The present study represents the first demonstration of the study of a mixed system of salt and liquid electrode for practical applications and would be greatly beneficial to the development of pyroprocessing of spent nuclear fuel.
通过第一性原理分子动力学模拟研究了LiCl-KCl熔盐与液态金属(Bi和Pb)电极混合体系中Cs的结构和动力学性质。研究发现,耦合液态金属电极时,熔盐中不同离子的动力学性质会受到显著影响,且这种影响随所应用液态金属的类型而变化。还通过键角分布函数、Voronoi镶嵌分析、五重对称参数和键取向序参数研究了熔盐与液态金属电极混合体系:MS-Cs-Bi、MS-CsCl-Bi、MS-Cs-Pb和MS-CsCl-Pb的微观结构。对应用不同液态金属电极时混合体系微观结构的比较研究为电解时液态金属电极的选择提供了信息。本研究首次展示了针对实际应用的盐与液态电极混合体系的研究,将对乏核燃料热法后处理的发展大有裨益。