JOURNAL ARTICLE

High-Temperature X-ray Diffraction Study of Uranium–Neptunium Mixed Oxides

M. CholletRenaud C. BelinJean‐Christophe RichaudMuriel ReynaudF. Adenot

Year: 2013 Journal:   Inorganic Chemistry Vol: 52 (5)Pages: 2519-2525   Publisher: American Chemical Society

Abstract

Incorporating minor actinides (MAs = Am, Np, Cm) in UO2 fertile blankets is a viable option to recycle them. Despite this applied interest, phase equilibria between uranium and MAs still need to be thoroughly investigated, especially at elevated temperatures. In particular, few reports on the U-Np-O system are available. In the present work, we provide for the first time in situ high-temperature X-ray diffraction results obtained during the oxidation of (U1-yNpy)O2 uranium-neptunium mixed oxides up to 1373 K and discuss subsequent phase transformations. We show that (i) neptunium stabilizes the UO2-type fluorite structure at high temperature and that (ii) the U3O8-type orthorhombic structure is observed in a wide range of compositions. We clearly demonstrate the incorporation of neptunium in this phase, which was a controversial question in previous studies up to now. We believe it is the particular stability of the tetravalent state of neptunium that is responsible for the observed phase relationships.

Keywords:
Neptunium Actinide Chemistry Fluorite Uranium Orthorhombic crystal system Phase (matter) Atmospheric temperature range X-ray crystallography Oxidation state Diffraction Nuclear chemistry Crystallography Crystal structure Metallurgy Thermodynamics Materials science Metal Physics

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Citation History

Topics

Nuclear Materials and Properties
Physical Sciences →  Materials Science →  Materials Chemistry
Radioactive element chemistry and processing
Physical Sciences →  Chemistry →  Inorganic Chemistry
Nuclear reactor physics and engineering
Physical Sciences →  Engineering →  Aerospace Engineering
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