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Dynamic dissolution of Cm ions incorporated at the calcite-water interface: an molecular dynamics simulation study.

作者信息

Chu Zhao-Qin, Zhu Ru-Yu, Su Jing

机构信息

College of Chemistry, Sichuan University, Chengdu 610064, P. R. China.

出版信息

Phys Chem Chem Phys. 2024 Feb 28;26(9):7545-7553. doi: 10.1039/d3cp05611b.

Abstract

The stability of actinide-mineral solid solution in a water environment is critical for assessing the safety of nuclear-waste geological repositories and studying actinide migration in natural systems. However, the dissolution behavior of actinide ions incorporated at the mineral-water interface is still unclear at the atomic level. Herein, we present metadynamics simulations of the reaction pathways, thermodynamics and kinetics of trivalent curium ions (Cm) dissolving from calcite surfaces. Cm ions incorporated in different calcite surfaces (, terrace and stepped surfaces) with distinct coordination environments have different reaction pathways, free energy barriers and free energy changes. We found that Cm dissolution from a stepped surface is more favorable than that from a terrace surface, both thermodynamically and kinetically. In addition, water molecules seem to promote the detachment of curium ions from the surface by exerting a pulling force water coordination with Cm and a pushing force proton migration to the surface layer and water diffusion in the vacant Cm site. Thus, the findings from this work prove to be a milestone in revealing the dynamic dissolution mechanism of trivalent actinides from minerals and would also help predict the dissolution behaviors of other metal ions at the solid-water interface in chemical and environmental sciences.

摘要

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