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Assistant Prof. KUMABE, Kazuhiro

 

  • Original Papers


  1. Afrinaldi A, Kakiuchi T, Nakagawa S, Moritomi H, Kumabe K, Nakai A, Ohtani A, Mizutani Y, Uematsu Y. Fabrication of recycled carbon fiber reinforced magnesium alloy composite by friction stir processing using 3-flat pin tool and its fatigue properties. Materails Transaction 2018; 59(3): 475-481.

    [External Link]

  2. Kumabe K, Kanamori Y, Han L, Moritomi H, Kambara S, Hasegawa T. Production of hydrocarbons in Fischer-Tropsch synthesis with cobalt-based catalyst: Investigations of primary kerosene yield and carbon mass balance. Journal of Japan Institute of Energy 2017;96(4):121-127 (in Japanese). [External Link]
  3. Kumabe K, Itoh N, Matsumoto K, Hasegawa T. Hydrothermal gasification of glucose and starch in a batch and continuous reactor. Energy Reports 2017; 3: 70-75.[External Link]
  4. Nakagawa S, Afrinaldi A, Kakiuchi T, Uematsu Y, Ohtani A, Kumabe K, Mizutani Y. Microstructural modification of AZ91 magnesium alloy using friction stir processing and carbon fibers. Materials Science Forum 2017; 886: 55-58. [External Link]
  5. Kumabe K, Nishimura Y, Kambara S, Moritomi H. Kinetic study of subcritical steam gasification of coal using calcium-based carbon dioxide sorbent. Ind. Eng. Chem. Res. 2014; 53(6): 2183-2188. [External Link]
  6. Kambara S, Koyano A, Takeyama A, Osakabe T, Kumabe K, Moritomi H. Characteristics of NOx formation in hydrogen oxidation by atmospheric non-equilibrium plasma. Journal of the Combustion Society of Japan 2013;55(173):278-284. [External Link]
  7. Kumabe K, Moritomi H, Ito W, Kambara S, Minowa T, Sakanishi K. Material balances of major and trace elements in hydrogen production process from coal with CO2 recovery. Fuel 2013;107:40-46.[External Link]
  8. Hartuti S, Kambara S, Takeyama A, Kumabe K, Moritomi H. Direct Quantitative Analysis of Arsenic for Coal Fly Ashes. J. Anal. Methods Chem. 2012;2012:1-6.[External Link]
  9. Kambara S, Hayakawa Y, Masui M, Miura T, Kumabe K, Moritomi H. Relation between Chemical Composition of Dissociated Ammonia by Atmospheric Plasma and DeNOx Characteristics. Transactions of the Japan Society of Mechanical Engineers Series B 2013; 78(789): 1038-1042.[External Link]
  10. Kambara S, Okuda T, Iwata T, Sasaki T, Kumabe K, Moritomi H. Characteristics of N2O Decomposition by Atmospheric Non-Equilibrium Plasma. Transactions of the Japan Society of Mechanical Engineers Series B 2013; 78(789): 1034-1037.[External Link]
  11. Tian Y, Kumabe K, Matsumoto K, Takeuchi H, Hasegawa T. Hydrolysis behavior of tofu waste in hot compressed water. Biomass and Bioenergy 2012;39:112-119.[External Link]
  12. Kambara S, Hayakawa Y, Masui M, Hishinuma N, Kumabe K, Moritomi H. Removal of nitric oxide by activated ammonia generated by vacuum ultraviolet radiation. Fuel 2012;94:274-279.[External Link]
  13. Koido K, Ishida Y, Kumabe K, Matsumoto K, Hasegawa T. Kinetics of ethanol oxidation in subcritical water. The Journal of Supercritical Fluids 2010; 55: 246-51.[External Link]
  14. Kumabe K, Kambara S, Yamaguchi T, Yoshiie R, Moritomi H. Behavior of Mercury in Solid Particles Collected from a Very Cold Electrostatic Precipitator. Journal of the Japan Institute of Energy 2010; 89(9): 903-908.[External Link]
  15. Kumabe K, Sato T, Matsumoto K, Ishida Y, Hasegawa T. Production of hydrocarbons in Fischer-Tropsch synthesis with Fe-based catalyst: Investigations of primary kerosene yield and carbon mass balance. Fuel 2010;89:2088-95.[External Link]
  16. Hayashi K, Tsuchida K, Kumabe K, Hasegawa T. Comparative study on CTL, GTL and BTL as alternative aviation fuels. Papers on Environmental Information Science 2009;23:227-232 (in Japanese).[External Link]
  17. Ishida Y, Kumabe K, Hata K, Tanifuji K, Hasegawa T, Kitagawa K, Isu N, Funahashi Y, Asai T. Selective hydrogen generation from real biomass through hydrothermal reaction at relatively low temperatures. Biomass Bioenerg 2009;33:8-13.[External Link]
  18. Hosokai S, Kumabe K, Ohshita M, Norinaga K, Li CZ, Hayashi J-i. Mechanism of decomposition of aromatics over charcoal and necessary condition for maintaining its activity. Fuel 2008;87:2914-2922.[External Link]
  19. Kumabe K, Fujimoto S, Yanagida T, Ogata M, Fukuda T, Yabe A, Minowa T. Environmental and economic analysis of methanol production process via biomass gasification. Fuel 2008;87:1422-1427.[External Link]
  20. Kumabe K, Hanaoka T, Fujimoto S, Minowa T, Sakanishi K. Co-gasification of woody biomass and coal with air and steam. Fuel 2007;86:684-689.[External Link]
  21. Kumabe K, Moritomi H, Yoshida K, Yoshiie R, Kambara S. Characteristics of Hydrogen Production from Coal Tar with Subcritical Steam. Ind Eng Chem Res. 2005;44(6):1950-3.[External Link]
  22. Kumabe K, Moritomi H, Yoshiie R, Kambara S, Kuramoto K, Suzuki Y, et al. Gasification of Organic Waste with Subcritical Steam under the Presence of a Calcium-Based Carbon Dioxide Sorbent. Ind Eng Chem Res. 2004;43(22):6943-7.[External Link]
  23. Kuramoto K, Furuya T, Suzuki Y, Hatano H, Kumabe K, Yoshiie R, Moritomi H, Lin SY. Coal Gasification with a Subcritical Steam in the Presence of a CO2 Sorbent: Products and Conversion under Transient Heating. Fuel Proces Technol 2003;82:61-73.[External Link]