与氢经济发展相关的氢混合物的热物理特性:现有实验数据和热力学模型回顾

Daniel Lozano-Martín, Alejandro Moreau, César R. Chamorro
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引用次数: 0

摘要

准确了解纯氢和氢混合物的热物理和热力学特性,对于氢的生产、运输、储存和使用过程的设计和操作具有重要作用。在不久的将来,氢将成为一种前景广阔的能源载体,而理论模型的开发需要这些数据。本研究对现有的实验数据和与氢气混合物热力学特性相关的理论模型进行了文献调查,这些数据和模型都是在工业上关注的组成、温度和压力的操作范围内。考虑到现有的实验数据以及氢气系统的设计和运行要求,确定了温度、压力和成分方面最相关的差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermophysical properties of hydrogen mixtures relevant for the development of the hydrogen economy: Review of available experimental data and thermodynamic models
The accurate knowledge of the thermophysical and thermodynamic properties of pure hydrogen and hydrogen mixtures plays an important role in the design and operation of many processes involved in hydrogen production, transport, storage, and use. These data are needed for the development of theoretical models necessary for the introduction of hydrogen as a promising energy carrier in the near future. A literature survey on both the available experimental data and the theoretical models associated with the thermodynamic properties of hydrogen mixtures, within the operational ranges of industrial interest for composition, temperature, and pressure, is presented in this work. Considering the available experimental data and the requirements for the design and operation of hydrogen systems, the most relevant gaps in temperature, pressure and composition are identified.
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