참고문헌
-
Huh, C., Kang, S., and Cho, M., 2010,
$CO_2$ Transport for CCS Application in Republic of Korea, Journal of Korean Society for Marine Environmental Engineering, Vol. 13, pp. 18-29. -
Yang, D., Le., L. A., Martinez, R. J., Currier R. P., Spencer, D. F., and Deppe, G., 2008, Heat transfer during
$CO_2$ hydrate formation in a continuous flow reactor, Energy and Fuels, Vol. 22, pp. 2649-2659. https://doi.org/10.1021/ef700749f -
Yang, D., Le., L. A., Martinez, R. J., Currier R. P., and Spencer, D. F., 2011, Kinetics of
$CO_2$ hydrate formation in a continuous flow reactor, Chemical Engineering Journal, Vol. 172, pp. 144-157. https://doi.org/10.1016/j.cej.2011.05.082 - Poling, B. E., Prausnitz, J. M., and O'connell, J. P., 2000, The properties of Gases and Liquids, 5th edition, McGraw-Hill.
- Ji, S., 2004, A generalized mixture rule for estimating the viscosity of soilid-liquid suspensions and mechanical properties of polyphase rocks and composite materials, Journal of geophysical research, Vol. 109, B10207. https://doi.org/10.1029/2004JB003124
- Ballard, A. L. and Sloan, E. D., 2004, The next generation of hydrate prediction Part III. Gibbs energy minimization formalism, Fluid Phase Equilibria, Vol. 218, pp. 15-31. https://doi.org/10.1016/j.fluid.2003.08.005
- Gupta, A., 2007, Methane Hydrate Dissociation Measurements and Modeling:The Role of Heat Transfer and Reaction Kinectics, Ph.D. Thesis, Colorado School of Mines, Golden, CO, U. S. A.
- Sloan, E. D. and Fleyfel, F., 1992, Hydrate dissociation enthalpy and guest size, Fluid Phase Equilibria, Vol. 76, pp. 123-140. https://doi.org/10.1016/0378-3812(92)85082-J
- Yokozeki, A., Solid-liquid-vapor phases of water and water-carbon dioxide mixtures using a simple analytical equation of state, Fluid Phase Equilibria, Vol. 222/223, pp. 55-66.
-
Dalin, Z., Suizheng, Q., Guanghui, S. U., and Dounan, J., 2007, Estimation of thermodynamicproperties of the ternary molten salt system, LiF-NaF-
$BeF_2$ , by the modified Peng-Robinson equation, Front. Energy Power Eng. China, Vol. 1, pp. 174-180. https://doi.org/10.1007/s11708-007-0022-x - Klapp, S. A., Klein, H., and Kuhs, W. F., 2009, Gas hydrate crystallite size investigations with high-energy synchrotron radiation, Geological Society, Vol. 319, pp. 161-170. https://doi.org/10.1144/SP319.13
- Kumano, H., Hirata, T., and Kudoh, T., 2011, Experimental study on the flow and heat transfer characteristics of a tetra-n-butyl ammonium bromide hydrate slurry (first report:Flow characteristics), International Journal of Refrigeration, Vol. 341, pp. 1953-1962.
-
Sari, O., Hu, J., Eicher, S., Egolf, P., and Homsy, P., 2008, Thermo physical and flow properties of
$CO_2$ hydrate slurry, 8th IIR Gustav Lorentzen Conference on Natural Working Fluids, Copenhagen. - Martine, H., 1986, The effects of pressure and temperature on heat transfer to gas-fluidized beds of solid particles, Heat and Mass Transfer in Fixed and Fluidized Beds, Edited by:Swaaij and Afagan, Hemisphere publishing corporation, pp. 143-157.
- Breault, R. W. and Mathur, V. K., 1989, High-velocity fluidized bed hydrodynamics modeling, 1, Fundamental studies of pressure drop, Ind. Eng. Chem. Res., Vol. 28, pp. 684-688. https://doi.org/10.1021/ie00090a006
- Garic-Grulovic, R. and Grbavcic, Z., 2011, Fluidodynamics characteristics of a vertical gas-solid and liquid-solid flow, In:Fluid Transport:Theory, Dynamics and Applications, Nova Science Publishers, pp. 1-43.
- Kumano, H., Hirata, T., and Kudoh, T., 2011, Experimental study on the flow and heat transfer characteristics of a tetra-n-butyl ammonium bromide hydrate slurry (second report:Heat transfer characteristics), International Journal of Refrigeration, Vol. 34, pp. 1963-1971. https://doi.org/10.1016/j.ijrefrig.2011.06.003
-
Uchida, T., Ohmura, R., Nagao, J., Takeya, S., Ebinuma, T., and Narita, H., 2003, Viscosity of aqueous
$CO_2$ solutions measured by dynamic light scattering, J. Chem. Eng. Data, Vol. 48, pp. 1225-1229. https://doi.org/10.1021/je034041x - Carroll, J., 2009, Natural gas hydrates, 2nd ed. ELSEVIER.