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Thermodynamic and Transport Properties of Fluids

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Oldenburg, C. M. & Pan, L. Utilization of CO 2 as cushion gas for porous media compressed air energy storage. Greenh. Gases Sci. Technol. 3, 124–135 (2013).

Application of Supercritical Fluids in Industrial Analysis, Ed. by J. R. Dean (CRC, Boca Raton, FL, 1993). Sadhankar RR, Li J, Li H, Ryland D, Suppiah S (2005). Hydrogen generation using high-temperature nuclear reactors. In: 55th Canadian chemical engineering conference, Toronto, Canada. E. V. Matizen, Extended Abstract of Cand. Sci. (Phys. Math.) Dissertation (Kurchatov Inst., Makhachkala, 1958).R. A. Perkins, J. V. Sengers, I. M. Abdulagatov, and M. L. Huber, Int. J. Thermophys. 34, 191 (2013). The International System of Units (HMSO, 1986) may be consulted for the definitions of SI units, and British Standard 350 for comprehensive tables of conversion factors.

J. W. Magee, in Proceedings of the 20th Japan Symposium on Thermophysical Properties, Tokyo, 1999, p. 473. Complex mixtures such as aviation and transportation fuels, which are made up of hundreds or thousands of chemical species, may be approximated by a “surrogate mixture” where the properties of the complex fuel are represented by a relatively small (generally less than 10) number of constituent fluids whose properties are well known. The composition of the surrogate mixture is determined by fitting the real fuel data properties (such as density, cetane number, carbon type, viscosity, etc.). REFPROP has been used to model a variety of surrogates for fuels such as RP1/2, Jet-A, biodiesel, S8, and low-sulfur diesel. Xiao L, Wu SY, Li YR. Advances in solar hydrogen production via two-step water-splitting thermochemical cycles based on metal redox reactions. Renewable Energy. 2012;41:1–12.Mihara, S., Sagara, H., Arai, Y. & Saito, S. The Compressibility Factors of Hydrogen Methane, Hydrogen Ethane and Hydrogen Propane Gaseous Mixtures. J. Chem. Eng. Japan 10, 395–399 (1977).

Pfeiffer, W. T., Beyer, C. & Bauer, S. Hydrogen storage in a heterogeneous sandstone formation: dimensioning and induced hydraulic effects. Pet. Geosci. 23, 315–326 (2017).

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Sagara, H., Arai, Y. & Saito, S. Vapor-liquid equilibria of binary and ternary systems containing hydrogen and light hydrocarbons. J. Chem. Eng. Japan 5, 339–348 (1972). K. E. Starling, Fluid Thermodynamic Properties for Light Petroleum Systems (Gulf, Houston, TX, 1973).

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