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1
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0040342244
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Br-Ca-Fe water decomposition cycles for hydrogen production
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H. Kameyama and K. Yoshida, Br-Ca-Fe water decomposition cycles for hydrogen production, Proc. 2nd WHEC, Zurich, Switzerland, pp. 829-850 (1978).
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(1978)
Proc. 2nd WHEC, Zurich, Switzerland
, pp. 829-850
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Kameyama, H.1
Yoshida, K.2
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2
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0025601324
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Kinetic study of UT-3 thermochemical hydrogen production process
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M. Aihara, H. Umida. A. Tsutsumi and K. Yoshida, Kinetic study of UT-3 thermochemical hydrogen production process. Int. J. Hydrogen Energy 15(1), 7-11 (1990).
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(1990)
Int. J. Hydrogen Energy
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Aihara, M.1
Umida, H.2
Tsutsumi, A.3
Yoshida, K.4
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3
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0026901887
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Test of one-loop flow scheme for the UT-3 thermochemical hydrogen production process
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M. Sakurai, M. Aihara, N. Miyake, A. Tsutsumi and K. Yoshida, Test of one-loop flow scheme for the UT-3 thermochemical hydrogen production process. Int. J. Hydrogen Energy 17(8), 587-592 (1992).
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(1992)
Int. J. Hydrogen Energy
, vol.17
, Issue.8
, pp. 587-592
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Sakurai, M.1
Aihara, M.2
Miyake, N.3
Tsutsumi, A.4
Yoshida, K.5
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4
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0021165320
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Mascot - A bench scale plant for producing hydrogen by the UT-3 thermochemical decomposition cycle
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T. Nakayama, H. Yoshioda, H. Furutani, H. Kameyama and K. Yoshida, Mascot - A bench scale plant for producing hydrogen by the UT-3 thermochemical decomposition cycle. Int. J. Hydrogen Energy 9(3), 187-190 (1984).
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(1984)
Int. J. Hydrogen Energy
, vol.9
, Issue.3
, pp. 187-190
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Nakayama, T.1
Yoshioda, H.2
Furutani, H.3
Kameyama, H.4
Yoshida, K.5
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5
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0024884772
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Process simulation of Mascot plant using the UT-3 thermochemical cycle for hydrogen production
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H. Kameyama. Y. Tomino, T. Sato, R. Amir, A. Orihara, M. Aihara and K. Yoshida, Process simulation of Mascot plant using the UT-3 thermochemical cycle for hydrogen production. Int. J. Hydrogen Energy 14(5), 323-330 (1989).
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(1989)
Int. J. Hydrogen Energy
, vol.14
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, pp. 323-330
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Kameyama, H.1
Tomino, Y.2
Sato, T.3
Amir, R.4
Orihara, A.5
Aihara, M.6
Yoshida, K.7
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6
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38249008448
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Design of solid reactants and reaction kinetics concerning the iron compounds in the UT-3 thermochemical cycle
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R. Amir, T. Sato, K. Tamamoto, T. Kabe and H. Kameyama, Design of solid reactants and reaction kinetics concerning the iron compounds in the UT-3 thermochemical cycle. Int. J. Hydrogen Energy 17(10), 783-788 (1992).
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(1992)
Int. J. Hydrogen Energy
, vol.17
, Issue.10
, pp. 783-788
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Amir, R.1
Sato, T.2
Tamamoto, K.3
Kabe, T.4
Kameyama, H.5
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7
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0027573350
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Design development of iron solid reactants in the UT-3 water decomposition cycle based on ceramic support materials
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R. Amir, S. Shizaki, K. Tamamoto, T. Kabe and H. Kameyama, Design development of iron solid reactants in the UT-3 water decomposition cycle based on ceramic support materials. Int. J. Hydrogen Energy 18(4), 283-286 (1993).
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(1993)
Int. J. Hydrogen Energy
, vol.18
, Issue.4
, pp. 283-286
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Amir, R.1
Shizaki, S.2
Tamamoto, K.3
Kabe, T.4
Kameyama, H.5
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8
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0024878905
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Economic and technical evaluation of UT-3 thermochemical hydrogen production process for an industrial scale plant
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A. Aochi, Y. Tadokoro, K. Yoshida, H. Kameyama, M. Nobue and T. Yamaguchi, Economic and technical evaluation of UT-3 thermochemical hydrogen production process for an industrial scale plant. Int. J. Hydrogen Energy 14(7), 421-429 (1989).
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(1989)
Int. J. Hydrogen Energy
, vol.14
, Issue.7
, pp. 421-429
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Aochi, A.1
Tadokoro, Y.2
Yoshida, K.3
Kameyama, H.4
Nobue, M.5
Yamaguchi, T.6
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9
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0040719329
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Technical evaluation of UT-3 thermochemical hydrogen production process for an industrial scale plane
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Cocoa Beach, FL
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Y. Tadokoro, T. Kajiyama, T. Yamaguchi, N. Sakai, H. Kameyama and K. Yoshida, Technical evaluation of UT-3 thermochemical hydrogen production process for an industrial scale plane. Proc. 10th World Hydrogen Energy Conf., Cocoa Beach, FL (1994).
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(1994)
Proc. 10th World Hydrogen Energy Conf.
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Tadokoro, Y.1
Kajiyama, T.2
Yamaguchi, T.3
Sakai, N.4
Kameyama, H.5
Yoshida, K.6
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10
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0028445477
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Hydrogen purification of thermochemically decomposed gas using zirconia-silica composite membrane
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H. Ohya, S. Hisamatsu, S. Sato and Y. Negishi, Hydrogen purification of thermochemically decomposed gas using zirconia-silica composite membrane. Int. J. Hydrogen Energy 19(6), 517-521 (1994).
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(1994)
Int. J. Hydrogen Energy
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, pp. 517-521
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Ohya, H.1
Hisamatsu, S.2
Sato, S.3
Negishi, Y.4
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11
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0026904202
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Exergy and engineering analyses of hybrid thermochemical solar hydrogen production
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H. A. Hammache and E. Bilgen, Exergy and engineering analyses of hybrid thermochemical solar hydrogen production. Renewable Energy 2(4/5), 431-444 (1992).
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(1992)
Renewable Energy
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, pp. 431-444
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Hammache, A.1
Bilgen, E.2
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12
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0022440145
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The solar Cristina process for hydrogen production
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C. Bilgen, A. Broggi and E. Bilgen, The solar Cristina process for hydrogen production. Solar Energy 36(3), 267-280 (1986).
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(1986)
Solar Energy
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, Issue.3
, pp. 267-280
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Bilgen, C.1
Broggi, A.2
Bilgen, E.3
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13
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0010724865
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Development of new energy systems
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(eds J. Garside and S. Furusaki), Gordon and Breach Science Publishers, Amsterdam
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H. Kameyama, Development of new energy systems. In The Expanding World of Chemical Engineering, (eds J. Garside and S. Furusaki), pp. 111-124. Gordon and Breach Science Publishers, Amsterdam (1994).
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(1994)
The Expanding World of Chemical Engineering
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Kameyama, H.1
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