NASA NTRS · 20260003289
Thermodynamic Properties of Uranium-Zirconium Carbide Solid Solutions with Oxygen
Abstract
Uranium-zirconium carbide solid solutions are potential candidates for fuel in space nuclear reactors. To support development of advanced robust fuels for space applications, (U y Zr 1-y )C x O z solid solutions were synthesized via carbothermic reduction with uranium, carbon, and oxygen contents raging from y=0.05 – 0.3, x=0.95 – 0.98, and z = 0.02 – 0.07. These solid solutions were subsequently characterized by X-ray diffraction and elemental combustion analysis. High-temperature oxidative drop solution calorimetry in molten sodium molybdate solvent at 1073 K was employed to determine the formation, oxidation, and mixing enthalpies of (U y Zr 1-y )C x O z solid solutions, and thereby for evaluating their thermodynamic stability. The solid solutions are enthalpically less stable than the UC and ZrC end members. They also become less stable and more reactive towards oxidation with increasing uranium content. Incorporation of oxygen into solid solutions increases their solid solution-stability and improves their oxidation resistance.
Explore related subjects
Keep this discovery
Gustavo Costa, Malina K Slizik, Jason C Reynolds, Scarlett Widgeon Paisner, Joseph C Schaeperkoetter, Erofili Kardoulaki, Shinhyo Bang, Xiaofeng Guo, Theodore M Besmann. 2026-04-19. Thermodynamic Properties of Uranium-Zirconium Carbide Solid Solutions with Oxygen. https://ntrs.nasa.gov/citations/20260003289
Cite the original work for its findings. Save a collection to share your selection of sources.
Discover connections
Connections use source metadata and explicit phrase matches, not verified experimental comparisons.