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Thermodynamic and Transport Properties of Fluids

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M. A. Anisimov, B. A. Koval’chk, V. A. Rabinovich, and V. A. Smirnov, in Thermophysical Properties of Substances and Materials (GSSSD, Moscow, 1975), Vol. 8, p. 237 [in Russian]. Yorizane, M., Yoshimura, S., Masuoka, H. & Toyama, A. Low Temperature Vapor-Liquid Equilibria of Hydrogen-Containing Binaries. In Proc. 1st Int. Cryog. Eng. Conf. 57–62 (1968). Bennett, C. O. & Dodge, B. F. Compressibilities of mixtures of hydrogen and nitrogen above 1000 atmospheres. Ind. Eng. Chem. 44, 180–185 (1952). I. K. Kamilov, G. V. Stepanov, I.M. Abdulagatov, A.R. Rasulov, and E. M. Milikhina, J. Chem. Eng. Data 46, 1556 (2001).

Budt, M., Wolf, D., Span, R. & Yan, J. A review on compressed air energy storage: Basic principles, past milestones and recent developments. Appl. Energy 170, 250–268 (2016). M. Fisher, in Critical Phenomena, Proceedings of the International School of Physics 'Enrico Fermi’, Course 51, Varenna, 27 July–8 August, 1970 (Academic, New York, London, 1971), p. 1. Michels, A. & Goudeket, M. Compressibilities of hydrogen between 0 C and 150 C up to 3000 atmospheres. Physica 8, 347–352 (1941). Bell, I. H., Lemmon, Eric W., "Automatic fitting of binary interaction parameters for multi-fluid Helmholtz-energy-explicit mixture models", J. Chem. Eng. Data, 61 (11):3752-3760, 2016. http://dx.doi.org/10.1021/acs.jced.6b00257 J. M. H. Levelt Sengers, in Supercritical Fluids. Fundamentals and Applications, Ed. by E. Kiran and J. M. H. Levelt Sengers (Kluwer, Dordrecht, 1994).Lemmon, E. W., Span, R., "Thermodynamic Properties of R-227ea, R-365mfc, R-115, and R-13I1", J. Chem. Eng. Data 60(12): 3745-3758, 2015. http://dx.doi.org/10.1021/acs.jced.5b00684 Molar (universal) gas constant: a = 8.3 145 kJ/kmol K t = 1.986 Btu/lb-mol R = 1545 ft Ibf/lb-mol R F. M. Gumerov, Supercritical Fluid Technologies. Economic Expediency (AN RT, Kazan’, 2019) [in Russian].

A. Z. Patashinskii and V. L. Pokrovskii, Fluctuation Theory of Phase Transitions (Nauka, Moscow, 1982) [in Russian]. Avsec J, Oblak M. Thermal vibrational analysis for simply supported beam and clamped beam. J Sound Vib. 2007;308:514–25. A. M. Kerimov, Doctoral (Tech. Sci.) Dissertation (Azizbekov Azerb. Oil Gaz Inst., Baku, Azerbaidzhan, 1964). Sage, B. H., Olds, R. H. & Lacey, W. N. Two gaseous mixtures containing hydrogen and nitrogen. Ind. Eng. Chem. 40, 1453–1459 (1948).

Mathias PM. Modeling of the copper chloride thermochemical cycle: thermodynamic properties of CuCl. Technical report, Argonne National Laboratory, USA, 6 Dec 2006. WNA (World Nuclear Association). Generation IV nuclear reactors. Available from http://www.world-nuclear.org/info/Nuclear-Fuel-Cycle/Power-Reactors/Generation-IV-Nuclear-Reactors. Accessed 7 June 2015. Knapp, H., Schmölling, K. & Neumann, A. Measurement of the molal heat capacity of H2) N2 mixtures. Cryogenics (Guildf). 16, 231–237 (1976). Bezanehtak, K., Combes, G. B., Dehghani, F., Foster, N. R. & Tomasko, D. L. Vapor− Liquid equilibrium for binary systems of carbon dioxide+ methanol, hydrogen+ methanol, and hydrogen+ carbon dioxide at high pressures. J. Chem. Eng. Data 47, 161–168 (2002).

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