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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Molecular structures and thermodynamic properties of monohydrated gaseous iodine compounds: Modelling for severe accident simulation
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Molecular structures and thermodynamic properties of monohydrated gaseous iodine compounds: Modelling for severe accident simulation

机译:一水合气态碘化合物的分子结构和热力学性质:严重事故模拟的模型

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摘要

Monohydrated complexes of iodine species (I, I_2, HI, and HOI) have been studied by correlated ab initio calculations. The standard enthalpies of formation, Gibbs free energy and the temperature dependence of the heat capacities at constant pressure were calculated. The values obtained have been implemented in ASTEC nuclear accident simulation software to check the thermodynamic stability of hydrated iodine compounds in the reactor coolant system and in the nuclear containment building of a pressurised water reactor during a severe accident. It can be concluded that iodine complexes are thermodynamically unstable by means of positive Gibbs free energies and would be represented by trace level concentrations in severe accident conditions; thus it is well justified to only consider pure iodine species and not hydrated forms.
机译:通过相关的从头算计算研究了碘类(I,I_2,HI和HOI)的一水合物。计算了标准的形成焓,吉布斯自由能和在恒定压力下热容的温度依赖性。所获得的值已在ASTEC核事故模拟软件中实现,以在严重事故期间检查反应堆冷却剂系统和压水堆核安全壳中水合碘化合物的热力学稳定性。可以得出结论,碘配合物通过正的吉布斯自由能在热力学上是不稳定的,并且在严重事故条件下会以痕量水平的浓度表示。因此,仅考虑纯碘而不是水合形式是合理的。

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