Acknowledgement
본 연구는 산업통상자원부 및 한국에너지기술평가원(KETEP)의 연구비지원(연구개발 과제번호. 20227310100090)을 받아 수행한 연구 과제입니다.
References
- Arutyunov, V. S., "Hydrogen Energy: Significance, Sources, Problems, and Prospects (A Review)," Petroleum Chemistry, 62(6), 583-593(2022). https://doi.org/10.1134/S0965544122040065
- Subramani, V., Basile, A. and Veziroglu, T. N., Compendium of Hydrogen Energy: Hydrogen Production and Purification., Woodhead Publishing(2015).
- Morales-Ospino, R., Celzard, A. and Fierro, V., "Strategies to Recover and Minimize Boil-off Losses During Liquid Hydrogen Storage," Renewable and Sustainable Energy Reviews, 182, 113360(2023).
- Abdalla, A. M., Hossain, S., Nisfindy, O. B., Azad, A. T., Dawood, M. and Azad, A. K., "Hydrogen Production, Storage, Transportation and Key Challenges with Applications: A Review," Energy Conversion and Management, 165, 602-627(2018). https://doi.org/10.1016/j.enconman.2018.03.088
- Abdin, Z., Zafaranloo, A. Rafiee, A., Merida, W., Lipinski, W. and Khalilpour, K. R., "Hydrogen as an Energy Vector," Renewable and Sustainable Energy Reviews, 120, 109620(2020).
- Ustolin, F., Paltrinieri, N. and Berto, F., "Loss of Integrity of Hydrogen Technologies: A Critical Review," International Journal of Hydrogen Energy, 45(43), 23809-23840(2020). https://doi.org/10.1016/j.ijhydene.2020.06.021
- Khurana, T. K., Prasad, B. V. S. S. S., Ramamurthi, K. and Murthy, S., "Thermal Stratification in Ribbed Liquid Hydrogen Storage Tanks," International Journal of Hydrogen Energy, 31(15), 2299-2309(2006). https://doi.org/10.1016/j.ijhydene.2006.02.032
- Smith, J. R., Gkantonas, S. and Mastorakos, E., "Modelling of Boil-off and Sloshing Relevant to Future Liquid Hydrogen Carriers," Energies, 15(6), 2046(2022).
- Park, B. H., "Calculation and Comparison of Thermodynamic Properties of Hydrogen Using Equations of State for Compressed Hydrogen Storage," Transactions of the Korean Hydrogen and New Energy Society, 31(2), 184-193(2020). https://doi.org/10.7316/KHNES.2020.31.2.184
- Redlich, O. and Kwong, J. N. S., "On the Thermodynamics of Solutions. V. An Equation of State. Fugacities of Gaseous Solutions," Chemical Reviews, 44(1), 233-244(1949). https://doi.org/10.1021/cr60137a013
- Soave, G., "Equilibrium Constants from a Modified Redlich-Kwong Equation of State," Chemical Engineering Science, 27(6), 1197-1203(1972). https://doi.org/10.1016/0009-2509(72)80096-4
- Peng, D.-Y. and Robinson, D. B., "A New Two-Constant Equation of State," Industrial & Engineering Chemistry Fundamentals, 15(1), 59-64(1976). https://doi.org/10.1021/i160057a011
- Nasrifar, K., "Comparative Study of Eleven Equations of State in Predicting the Thermodynamic Properties of Hydrogen," International Journal of Hydrogen Energy, 35(8), 3802-3811(2010). https://doi.org/10.1016/j.ijhydene.2010.01.032
- Mathias, P. M. and Copeman, T. W., "Extension of the Peng-Robinson Equation of State to Complex Mixtures: Evaluation of the Various Forms of the Local Composition Concept," Fluid Phase Equilibria, 13, 91-108(1983). https://doi.org/10.1016/0378-3812(83)80084-3
- Kontogeorgis, G. M., Voutsas, E. C., Yakoumis, I. V. and Tassios, D. P., "An Equation of State for Associating Fluids," Industrial & Engineering Chemistry Research, 35(11), 4310-4318(1996). https://doi.org/10.1021/ie9600203
- Chapman, W. G., Gubbins, K. E., Jackson, G. and Radosz, M., "SAFT: Equation-of-state Solution Model for Associating Fluids," Fluid Phase Equilibria, 52, 31-38(1989). https://doi.org/10.1016/0378-3812(89)80308-5
- Smith, J. M., Van Ness, H. C., Abbott, M. M. and Swihart, M. T., Introduction to Chemical Engineering Thermodynamics. 9th ed., McGraw-Hill Singapore(2022).
- Leachman, J. W., Jacobsen, R. T., Penoncello, S. G. and Lemmon, E. W., "Fundamental Equations of State for Parahydrogen, Normal Hydrogen, and Orthohydrogen," J. Phys. Chem. Ref. Data, 38(3), 721-748(2009). https://doi.org/10.1063/1.3160306