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UFN, 2024 Volume 194, Number 10, Pages 1082–1094 (Mi ufn15772)

REVIEWS OF TOPICAL PROBLEMS

Thermodynamic properties of zirconium nitride in the condensed state

N. M. Aristovaa, S. V. Onufrieva, A. I. Savvatimskiyab

a Joint Institute for High Temperatures, Russian Academy of Sciences, Moscow
b Lebedev Physical Institute, Russian Academy of Sciences, Moscow

Abstract: The thermodynamic properties of zirconium nitride are presented, including the phase diagram of the Zr–N system, homogeneity region, temperature and composition corresponding to congruent melting of $\rm ZrN_{x}$, enthalpy of formation, as well as electronic structure and chemical bond in zirconium nitride. An equation is given approximating the temperature dependence of the heat capacity of crystalline ZrN in the temperature range of 298.15–3970 K. Temperature dependences of specific heat and electrical resistance of liquid zirconium nitride of the composition 0.9ZrN+0.1$\rm ZrO_{2}$ (up to 4500 K) measured by heating with a microsecond current pulse are presented. The main practical significance of these results is that ZrN serves as an inert matrix for mixed nitride fuel (U, Zr)N and (Pu, Zr)N for fast neutron reactors.

Keywords: nuclear fuel matrices, zirconium nitride, phase diagrams, solid phases, melting, liquid state, enthalpy of formation, enthalpy, specific heat, electrical resistance, temperature measurement, pulsed current heating method.

PACS: 05.70.-a, 64.70.D-, 65.40.-b

Received: October 4, 2023
Revised: January 28, 2024
Accepted: February 27, 2024

DOI: 10.3367/UFNr.2024.02.039654


 English version:
Physics–Uspekhi, 2024, 67:10, 1022–1033

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© Steklov Math. Inst. of RAS, 2025