1. Bagherzadeh, S. A., Alavi, S., Ripmeester, J. A. and Englezos, P., Evolution of methane during gas hydrate dissociation, Fluid Phase Equilibria, Vol. 358 (2013), pp. 114-120.
2. Buchanan, P., Soper, A. K., Thompson, H., Westacott, R. E., Creek, J. L., Hobson, G., and Koh, C. A., Search for memory effects in methane hydrate: Structure of water before hydrate formation and after hydrate decomposition, The Journal of Chemical Physics, Vol. 123 (2005), 164507.
3. Hamada, Y., Osada, T., Sato, T., Makino, T., Kubota, H., Ono, T. and Hashimoto, Y., Development of self-sustained ice production method using cold outdoor air in winter and its characteristics, Journal of Snow Engineering of Japan, Vol. 27, No. 1 (2011), pp. 3-10 (in Japanese).
4. Haneda, H., Kawamura, T., Komai, T., Maekawa, T., Yamamoto, Y., Aoki, K., Ohga, K. and Higuchi, T., Fundamental study of artificial loof construction, using carbon dioxide gas in methane hydrate development -Growth behavior of CO2 hydrate in model sediment-, Shigen-to-Sozai, Vol. 120, No. 3(2004), pp. 159-163 (in Japanese).
5. Ida, H. and Kohda, K., Highly efficient natural gas hydrate production technology, JFE Technical report, No. 6 (2004), pp. 76-80 (in Japanese).