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Characterization of U-Zr fuel with alloying additive Sb for immobilizing fission product lanthanides

  • Yi Xie
  • , Michael T. Benson
  • , James King
  • , Robert D. Mariani
  • , Jinsuo Zhang

Research output: Contribution to journalArticlepeer-review

40 Scopus citations

Abstract

Fission product lanthanides can migrate to the fuel periphery and enhance fuel-cladding chemical interaction (FCCI). Adding Sb into the fuel alloy to bind lanthanides and thus to prevent lanthanides from migration has been proposed. The U-Zr fuel alloys were fabricated with compositions of U-10Zr-4.1Sb, U-10Zr-4.1Sb-4Ce, U-10Zr-2.07Sb, and U-10Zr-2.07Sb-2Ce wt.% by arc melting, and analyzed under scanning electron microscope (SEM) for the microstructure and elemental compositions. In the Ce-free alloy, Sb was found in Sb-Zr precipitates; while in the Ce-contained alloy, Sb was found in the form of intermetallic compounds Ce4Sb3 and Ce2Sb without any Sb-Zr precipitates. Antimony has the preference to bind Ce over Zr, indicating Sb can effectively prevent Ce interaction with Fe to the extent. Cerium is bound to Sb and no ternary intermetallic Ce-Sb-Zr compound was found.

Original languageEnglish
Pages (from-to)332-340
Number of pages9
JournalJournal of Nuclear Materials
Volume498
DOIs
StatePublished - Jan 2018

Keywords

  • FCCI
  • Fuel additive
  • Lanthanides immobilization
  • Metallic fuel
  • SEM

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