A first-principles simulation study on solubility of La, Nd, Zr and Mo in UO2 and U3O8

Zhiyuan Huang, Lidong Ma, Jianbao Zhang, Qing Zhou, Lei Yang, Haifeng Wang

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Abstract

Solubility of fission products (FPs) in spent nuclear fuels is a key issue in understanding their performance. In this study, a detailed density functional theory study on solubility of La, Nd, Zr and Mo in uranium dioxide (UO2) and triuranium octoxide (U3O8) was carried out. The most favorable sites of La, Nd, Zr and Mo were calculated by analyzing the solution energies of these four FP elements in UO2 and U3O8. Thermodynamic properties of FPs doping in UO2 as well as in U3O8 were determined from 0 K to 2000 K. The results reveal that the effect of FPs on thermodynamic properties of U3O8 is slightly larger than that of UO2 due to the presence of an oxygen vacancy in FP-doped U3O8. On this basis, the solubility of La, Nd, Zr and Mo in UO2 and U3O8 was predicted, showing a good agreement with available experiments. Subsequently, the difference in solubility behaviors was studied through electronic properties. The simulation results indicate that the solubility of La, Nd, Zr and Mo in U3O8 is much lower than that in UO2. Therefore, an idea to separate FPs from spent nuclear fuel is using mutual transformations between FP-doped UO2 and FP-doped U3O8 under different temperatures, which is a promising way to promote the development of nuclear fuel cycles.

Original languageEnglish
Article number155414
JournalJournal of Nuclear Materials
Volume603
DOIs
StatePublished - Jan 2025

Keywords

  • First-principles calculations
  • Fission products
  • Solubility behaviors
  • Solution energy
  • Uranium oxides

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