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Procedural analysis of a new method for determining the Gibbs energy and experimental data on thermodynamic properties of liquid-metal coolants based on alkali metal alloys

机译:一种确定吉布斯能量的新方法的过程分析和基于碱金属合金的液态金属冷却剂热力学性质的实验数据

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摘要

A detailed procedural analysis is given and results of implementation of the new version of the effusion method for determining the Gibbs energy (thermodynamic activity) of binary and ternary systems of alkali metals Cs-Na, K-Na, Cs-K, and Cs-K-Na are presented. The activity is determined using partial pressures of the components measured according the effusion method by the intensity of their atomic beams. The pressure range used in the experiment is intermediate between the Knudsen and hydrodynamic effusion modes. A generalized version of the effusion method involves the pressure range beyond the limits of the applicability of the Hertz-Knudsen equation. Employment of this method provides the differential equation of chemical thermodynamics; solution of this equation makes it possible to construct the Gibbs energy in the range of temperatures 400 ≤ T ≤ 1200 K and concentrations 0 ≤ x_i ≤ 1.
机译:给出了详细的程序分析,并确定了用于确定碱金属Cs-Na,K-Na,Cs-K和Cs-的二元和三元体系的吉布斯能量(热力学活性)的新版渗出方法的实施结果。介绍了K-Na。活性是通过根据扩散法通过原子束强度测量的组分分压来确定的。实验中使用的压力范围介于Knudsen模式和流体动力喷射模式之间。渗漏方法的广义形式涉及超出Hertz-Knudsen方程适用范围的压力范围。这种方法的使用提供了化学热力学的微分方程。此方程式的解可以在温度400≤T≤1200 K和浓度0≤x_i≤1的范围内构造吉布斯能量。

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