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Equilibrium Molecular Interactions in Pure Gases

机译:纯气体中的平衡分子相互作用

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摘要

The equilibrium molecular interactions in pure real gases are investigated based on the chemical thermodynamics principles. The parallels between clusters in real gases and chemical compounds in equilibrium media have been used to improve understanding of the real gas structure. A new approach to the equilibrium constants for the cluster fractions and new methods to compute them and their significant parameters from the experimental thermophysical data are developed. These methods have been applied to some real gases, such as Argon and Water vapors and gaseous Alkanes. It is shown that the four-particle clusters make a noticeable contribution in the thermophysical properties of the equilibrium Water vapor. It is shown also that the effective bond energy for dimers in Alkanes linearly grows with the number of carbon atoms in the molecule.
机译:基于化学热力学原理,研究了纯真实气体中的平衡分子相互作用。真实气体中的簇与平衡介质中的化学物质之间的相似性已被用来增进对真实气体结构的理解。提出了一种新的方法来求解团簇馏分的平衡常数,并从实验热物理数据计算出它们的重要参数。这些方法已应用于某些实际气体,例如氩气和水蒸气以及气态烷烃。结果表明,四粒子簇对平衡水蒸气的热物理性质做出了显着贡献。还表明,烷烃中二聚体的有效键能随分子中碳原子数线性增长。

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