Morita Masahiko | Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry
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概要
- Morita Masahikoの詳細を見る
- 同名の論文著者
- Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industryの論文著者
関連著者
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Ohmura Naoya
Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry
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Morita Masahiko
Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry
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Sasaki Daisuke
Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry
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Sasaki Kengo
Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry:(present Office)department Of Biotechnology Graduate School Of Agricultural And Life Sciences The University Of Tokyo
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Matsumoto Norio
Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry
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Hirano Shin-ichi
Biotechnology Sector Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry
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Ohmura Naoya
Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry (cri
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Sasaki Kengo
Environmental Sci. Res. Lab. Central Res. Inst. Of Electric Power Ind. (criepi) 1646 Abiko Abiko-shi
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Hirano Shin-ichi
Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry (cri
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Sasaki Daisuke
Department Of Biotechnology Graduate School Of Agricultural And Life Sciences The University Of Toky
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Sasaki Daisuke
Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry (cri
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Matsumoto Norio
Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry (cri
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Sasaki Kengo
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Elect
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Morita Masahiko
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Elect
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Sasaki Daisuke
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Elect
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Matsumoto Norio
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Elect
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Igarashi Yasuo
Department Of Agricultural Chemistry The University Of Tokyo
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Ohmura Naoya
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Electric Power Industry
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Igarashi Yasuo
Department Of Biotechnology Graduate School Of Agricultural And Life Science The University Of Tokyo
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Morita Masahiko
Environmental Science Research Laboratory Central Research Institute Of Electric Power Industry (cri
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Nagaoka Jun
Department of Green and Sustainable Chemistry, Graduate School of Engineering, Tokyo Denki Universit
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Ohmura Naoya
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Elect
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Shinozaki Hiraku
Department of Green and Sustainable Chemistry, Graduate School of Engineering, Tokyo Denki Universit
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Nagaoka Jun
Department Of Green And Sustainable Chemistry Graduate School Of Engineering Tokyo Denki University
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MORITA Masahiko
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Electric Power Industry
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Watanabe Atsushi
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Electric Power Industry
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Sasaki Daisuke
Biotechnology Sector, Environmental Science Research Laboratory, Central Research Institute of Electric Power Industry
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Shinozaki Hiraku
Department of Chemistry, School of Science and Engineering, Waseda Univerity
著作論文
- Syntrophic degradation of proteinaceous materials by the thermophilic strains Coprothermobacter proteolyticus and Methanothermobacter thermautotrophicus(ENVIRONMENTAL BIOTECHNOLOGY)
- Bioelectrochemical regulation accelerates facultatively syntrophic proteolysis(ENVIRONMENTAL BIOTECHNOLOGY)
- Construction of hydrogen fermentation from garbage slurry using the membrane free bioelectrochemical system(ENVIRONMENTAL BIOTECHNOLOGY)
- Acceleration of cellulose degradation and shift of product via methanogenic co-culture of a cellulolytic bacterium with a hydrogenotrophic methanogen(ENVIRONMENTAL BIOTECHNOLOGY)
- Construction of hydrogen fermentation from garbage slurry using the membrane free bioelectrochemical system
- Bioelectrochemical regulation accelerates facultatively syntrophic proteolysis