Maruoka Nobuhiro | Graduate School Of Engineering Hokkaido University
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概要
関連著者
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Maruoka Nobuhiro
Graduate School Of Engineering Hokkaido University
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Maruoka N
Graduate School Of Engineering Hokkaido University
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Akiyama Tomohiro
Center for Advanced Research of Energy Conversion Materials, Hokkaido University
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Purwanto Hadi
Graduate School Of Engineering Tohoku University.
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Akiyama T
Department Of Chemical Engineering Graduate School Of Engineering Osaka Prefecture University
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Purwanto Hadi
Center For Advanced Research Of Energy Conversion Materials Hokkaido University
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AKIYAMA Tomohiro
Department of Chemical Engineering, Osaka Prefecture University
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MARUOKA Nobuhiro
Department of Chemical Engineering, Graduate School of Engineering, Osaka Prefecture University
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Akiyama Tomohiro
Department Of Chemical Engineering Graduate School Of Engineering Osaka Prefecture University
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Akiyama Tomohiro
Center For Advanced Research Of Energy Conversion Materials Hokkaido University
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Maruoka Nobuhiro
Department Of Chemical Engineering Graduate School Of Osaka Prefecture University
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Akiyama Tomohiro
Center For Advanced Research Of Energy And Materials Faculty Of Engineering Hokkaido University
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YAGI Jun-ichiro
Institute for Advanced Materials Processing, Tohoku University
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Yagi Jun-ichiro
Institute For Advanced Materials Processing Tohoku University
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MARUOKA Nobuhiro
Graduate School of Engineering, Hokkaido University
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MIZUOCHI Toshio
JFE Steel Corporation
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MIZUOCHI Toshio
Osaka Prefecture University
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PURWANTO Hadi
Department of Chemical Engineering, Graduate School of Engineering, Osaka Prefecture University
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Mizuochi T
Department Of Chemical Engineering Graduate School Of Engineering Osaka Prefecture University
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Maruoka Nobuhiro
Institute Of Multidisciplinary Research For Advanced Materials Tohoku University
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SATO Kazushi
Miyagi National College of Technology
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Purwanto Hadi
Faculty Of Engineering International Islamic University Malaysia
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Akiyama Tomohiro
Department Of Chemical Engineering Graduate School Of Osaka Prefecture University
著作論文
- Exergy, CO_2 and Economical Analyses of the Hydrogen Production Using Waste Heat from Molten Slag in the Steel Industry
- Feasibility Study for Recovering Waste Heat in the Steelmaking Industry Using a Chemical Recuperator
- Development of PCM for Recovering High Temperature Waste Heat and Utilization for Producing Hydrogen by Reforming Reaction of Methane
- Exergy Analysis of Methane Steam Reformer Utilizing Steelmaking Waste Heat