화학공학소재연구정보센터
검색결과 : 67건
No. Article
1 A model of a solar cavity receiver with coiled tubes
Kanatani K, Yamamoto T, Tamaura Y, Kikura H
Solar Energy, 153, 249, 2017
2 Thermodynamic performance of a hybrid power generation system using biomass gasification and concentrated solar thermal processes
Tanaka Y, Mesfun S, Umeki K, Toffolo A, Tamaura Y, Yoshikawa K
Applied Energy, 160, 664, 2015
3 O-2-releasing reactivity of ceria-based reactive ceramics on irradiation of artificial concentrated solar beam for solar hydrogen production
Kaneko H, Ishihara T, Lee CI, Meng QL, Tamaura Y
International Journal of Hydrogen Energy, 39(23), 11880, 2014
4 Dopant effect on hydrogen generation in two-step water splitting with CeO2-ZrO2-MOx reactive ceramics
Lee CI, Meng QL, Kaneko H, Tamaura Y
International Journal of Hydrogen Energy, 38(36), 15934, 2013
5 Solar thermochemical process for hydrogen production via two-step water splitting cycle based on Ce1-xPrxO2-delta redox reaction
Meng QL, Lee CI, Kaneko H, Tamaura Y
Thermochimica Acta, 532, 134, 2012
6 Reactivity of CeO(2)-based ceramics for solar hydrogen production via a two-step water-splitting cycle with concentrated solar energy
Meng QL, Lee CI, Ishihara T, Kaneko H, Tamaura Y
International Journal of Hydrogen Energy, 36(21), 13435, 2011
7 Reduction reactivity of CeO2-ZrO2 oxide under high O-2 partial pressure in two-step water splitting process
Kaneko H, Taku S, Tamaura Y
Solar Energy, 85(9), 2321, 2011
8 Two-step water-splitting at 1273-1623 K using yttria-stabilized zirconia-iron oxide solid solution via co-precipitation and solid-state reaction
Ishihara H, Kaneko H, Hasegawa N, Tamaura Y
Energy, 33(12), 1788, 2008
9 Cerium ion redox system in CeO2-xFe(2)O(3) solid solution at high temperatures (1,273-1,673 K) in the two-step water-splitting reaction for solar H-2 generation
Kaneko H, Ishihara H, Taku S, Naganuma Y, Hasegawa N, Tamaura Y
Journal of Materials Science, 43(9), 3153, 2008
10 Reactive ceramics of CeO2-MOx (M = Mn, Fe, Ni, Cu) for H-2 generation by two-step water splitting using concentrated solar thermal energy
Kaneko H, Miura T, Ishihara H, Taku S, Yokoyama T, Nakajima H, Tamaura Y
Energy, 32(5), 656, 2007