1 |
Development and Continuous Operation of a Bench-Scale System for the Production of O-3 + O-2 + CO(2)Hydrates Hatsugai T, Nakayama R, Tomura S, Akiyoshi R, Nishitsuka S, Nakamura R, Takeya S, Ohmura R Chemical Engineering & Technology, 43(11), 2307, 2020 |
2 |
Thermophysical properties of trimethylolethane (TME) hydrate as phase change material for cooling lithium-ion battery in electric vehicle Koyama R, Arai Y, Yamauchi Y, Takeya S, Endo F, Hotta A, Ohmura R Journal of Power Sources, 427, 70, 2019 |
3 |
Methane storage in water frameworks: Self-preservation of methane hydrate pellets formed from NaCl solutions Takeya S, Mimachi H, Murayama T Applied Energy, 230, 86, 2018 |
4 |
Design of Thermophysical Properties of Semiclathrate Hydrates Formed by Tetra-n-butylammonium Hydroxybutyrate Murornachi S, Takeya S Industrial & Engineering Chemistry Research, 57(8), 3059, 2018 |
5 |
Phase Equilibrium of Isotopologue Methane Hydrates Enclathrated CH3D and CD4 Ozeki T, Kikuchi Y, Takeya S, Hachikubo A Journal of Chemical and Engineering Data, 63(6), 2266, 2018 |
6 |
Phase equilibria for Kr hydrate formed with 2,2-dimethylbutane, methylcyclohexane and 1-methylpiperidine Ohfuka Y, Fukushima N, Chen ZG, Fukuda M, Takeya S, Ohmura R Journal of Chemical Thermodynamics, 117, 21, 2018 |
7 |
Gas-containing semiclathrate hydrate formation by tetra-n-butylammonium carboxylates: Acrylate and butyrate Muromachi S, Takeya S Fluid Phase Equilibria, 441, 59, 2017 |
8 |
Formation of Methane Clathrate Hydrates in Coal Moisture: Implications for Coalbed Methane Resources and Reservoir Pressures Bustin AMM, Bustin RM, Moudrakovskim IL, Takeya S, Ripmeester JA Energy & Fuels, 30(1), 88, 2016 |
9 |
Dissociation behaviors of methane hydrate formed from NaCl solutions Mimachi H, Takeya S, Gotoh Y, Yoneyama A, Hyodo K, Takeda T, Murayama T Fluid Phase Equilibria, 413, 22, 2016 |
10 |
Preservation of CO2 hydrate under different atmospheric conditions Takeya S, Muromachi S, Yamamoto Y, Umeda H, Matsuo S Fluid Phase Equilibria, 413, 137, 2016 |