Asami Kenji | 北九州市立大
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概要
関連著者
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Asami Kenji
北九州市立大
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Fujimoto K
北九州市立大
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Fujimoto K
Univ. Kitakyushu Kitakyushu Jpn
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Fujimoto K
University Of Kitakyushu
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Li Xiaohong
北九州市立大
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ASAMI Kenji
Department of Applied Chemistry, Faculty of Engineering, The Municipal University of Osaka
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FUJIMOTO Kaoru
Department of Applied Chemistry, Faculty of Engineering, The Municipal University of Tokyo
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Asami Kenji
Department Of Applied Chemistry Faculty Of Engineering Osaka City University
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Li Xiaohong
Department of Chemical Processes and Environments, The University of Kitakyushu
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Li Xiaohong
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Zhang Qianwen
北九州市立大
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Asaoka Sachio
北九州市立大
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Fujimoto Kaoru
Department Of Applied Chemistry
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Fujimoto Kaoru
Faculty Of Environmental Engineering The University Of Kitakyushu
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李 白涛
中国科学院西安光机所
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Asami Kenji
Faculty of Environmental Engineering, the University of Kitakyushu
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Li Xiaohong
Faculty of Environmental Engineering, the University of Kitakyushu
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LI Baitao
Department of Applied Chemistry, School of Engineering, The University of Tokyo
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Li Xiaohong
Faculty Of Environmental Engineering The University Of Kitakyushu
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Li Baitao
Department Of Applied Chemistry School Of Engineering The University Of Tokyo
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Liu Z‐w
北九州市立大
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Liu Zhong-wen
北九州市立大
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FUJIMOTO KAORU
School of Environmental Engineering, The University of Kitakyushu
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LI Xiaohong
北九州市立大学国際環境工学部
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Fujimoto Kaoru
北九州市立大
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Jin Yingjie
Department Of Chemical Processes And Environments The University Of Kitakyushu
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Zhang Qianwen
Faculty of Environmental Engineering, the University of Kitakyushu
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Asaoka Sachio
Faculty of Environmental Engineering, the University of Kitakyushu
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Linghu Wensheng
Department of Chemical Processes and Environments Faculty of Environmental Engineering, The Universi
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LI Xiaohong
School of Environmental Engineering, The University of Kitakyushu
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ASAMI Kenji
School of Environmental Engineering, The University of Kitakyushu
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Fujimoto Kaoru
School Of Engineering The University Of Kitakyushu
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Linghu Wensheng
Department Of Chemical Processes And Environments Faculty Of Environmental Engineering The Universit
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Liu Zhong-Wen
Department of Chemical Processes and Environments, The University of Kitakyushu
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Yang Jiani
Department of Chemical Processes and Environments, The University of Kitakyushu
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JIN Yingjie
The University of Kitakyushu, Environmental Engineering
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ASAOKA Sachio
The University of Kitakyushu, Environmental Engineering
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LI Xiaohong
The University of Kitakyushu, Environmental Engineering
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ASAMI Kenji
The University of Kitakyushu, Environmental Engineering
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FUJIMOTO Kaoru
The University of Kitakyushu, Environmental Engineering
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Hirashima Shunsuke
Faculty of Environmental Engineering, the University of Kitakyushu
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Zhang Qijian
Department of Chemical Processes and Environments, Faculty of Environmental Engineering, The Univers
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Zhang Qianwen
Department of Chemical Processes and Environments, Faculty of Environmental Engineering, The Univers
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Asaoka Sachio
Department of Chemical Processes and Environments, Faculty of Environmental Engineering, The Univers
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Hirashima Shunsuke
Faculty Of Environmental Engineering The University Of Kitakyushu
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ASAMI Kenji
The University of Kitakyushu
著作論文
- 2-11. Multifunctional catalysis for the production of iso-paraffins from syngas
- 2-36. Selective hydroconversion of n-heptane over bifunctional catalysts
- 2-34. LPG SYNTHESIS VIA METHANOL : DME FROM NATURAL GAS
- 2-10. Direct Synthesis of LPG from Syngas Catalyzed by Hybrid Catalyst with High Activity and Stability
- 2-38. Synthesis of LPG from DME with VIIIB Metal Supported on ZSM-5
- 2-37. Direct Synthesis of LPG from Syngas by Hybrid Catalyst with High Activity and Stability
- 2-33 Reaction Behavior of Fischer-Tropsch Synthesis in Supercritical n-Hexane Media
- 2-23. Hydrogen Production by DME Partial Oxidation and Reforming
- Active Carbon Supported Rhodium Catalyst in the Hydroformylation of 1-Hexene
- Hydroformylation of 1-Hexene over Cobalt-based Solid Catalysts at Low Pressure
- 2-37. Effects of Reaction Conditions on Products Distribution in Supercritical Phase Fischer-Tropsch Synthesis
- 2-35. Selective Production of LPG from Synthesis Gas
- Hydroformylation of 1-Hexene over Rhodium Supported on Active Carbon Catalyst
- Low Pressure Hydroformylation in the Presence of Alcohol Promoters