氩气氛下NiO-NaCl-KCl-Na2CO3-K2CO3熔体中放射性石墨氧化的热力学分析

N. Barbin, A. Kobelev, D. Terent’ev, S. Alekseev
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引用次数: 1

摘要

采用热力学模拟方法研究了放射性石墨在含NiO添加剂的NaCl - KCl - Na2CO3 - K2CO3熔体中加热U、Pu放射性核素的行为。计算由TERRA软件进行,该软件用于确定相组成,热力学和输运性质,考虑到温度范围为373 - 3273 K的化学和相变化。利用各物质(INVATERMO、HSC等)性质的参考信息,计算平衡相组成和平衡参数。本研究表明,在1273 K的温度下,冷凝碳燃烧,形成CO和CO2。把温度提高到1673 K,铀的浓缩化合物就会蒸发。本研究确定铀在1673 ~ 3273 K的温度范围内以UO−3的电离形式存在。在2373 - 3273 K的温度范围内,钚以气态PuO2的形式存在。关键词:热力学建模,放射性核素,放射性石墨
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Thermodynamic Analysis of Radioactive Graphite Oxidation in NiO-NaCl-KCl-Na2CO3-K2CO3 Melt in the Atmosphere of Argon
Behavior of U, Pu radionuclides was investigated when heating radioactive graphite in NaCl – KCl – Na2CO3 – K2CO3 melt with NiO additives using the thermodynamic modeling method. Calculations were made by the TERRA software that is used for the determination of phase composition, thermodynamic and transport properties, taking into account chemical and phase changes in temperature range 373 – 3273 K. Calculation of equilibrium phase composition and parameters of equilibrium was carried out using reference information about properties of the individual substances (INVATERMO, HSC, etc.). This study demonstrates that at a temperature of 1273 K the condensed carbon burns down with the formation of CO and CO2. Increasing temperature to 1673 K causes the condensed compounds of uranium to evaporate. This study determined that uranium exists in the form of ionized UO−3 in temperature range from 1673 to 3273 K. Plutonium exists in the form of gaseous PuO2, PuO in temperature range 2373 – 3273 K. Keywords: thermodynamic modeling, radionuclides, radioactive graphite
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