Niiyama Hiroo | Department of Chemical Engineering and International Cooperation Center for Science and Technology, Tokyo Institute of Technology
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概要
- Niiyama Hirooの詳細を見る
- 同名の論文著者
- Department of Chemical Engineering and International Cooperation Center for Science and Technology, Tokyo Institute of Technologyの論文著者
関連著者
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Niiyama Hiroo
Department of Chemical Engineering and International Cooperation Center for Science and Technology, Tokyo Institute of Technology
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Echigoya Etsuro
Department of Chemical Engineering, Tokyo Institute of Technology
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Niiyama Hiroo
Department of Chemical Engineering, Tokyo Institute of Technology
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UEMURA Yoshimitsu
Department of Applied Chemistry and Chemical Engineering
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Iida Hiroshi
Department of Cardiology, Tokuyama Central Hospital
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Aida Takashi
Department Of Chemical Engineering Graduate School Of Science And Engineering Tokyo Institute Of Tec
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Imai Tadashi
Department Of General Thoracic Surgery Aomori Prefectural Central Hospital
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Akimoto Masamichi
Department Of Applied Chemistry And Biotechnology Faculty Of Engineering Niigata Institute Of Techno
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Kawakami Ryuji
Department of Chemical Engineering, Tokyo Institute of Technology
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NIIYAMA HIROO
Department of Chemical Engineering, Tokyo Institute of Technology,
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SASAMOTO KIMIAKI
Department of Chemical Engineering, Tokyo Institute of Technology
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YOSHIDA SHIZUO
Department of Chemical Engineering, Tokyo Institute of Technology
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Suto Hirotoshi
Department of Chemical Engineering, Tokyo Institute of Technology
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Tanaka Motoo
Department of Chemical Engineering, Tokyo Institute of Technology
著作論文
- Preparation of solid catalysts for vapor-phase decomposition of carbonyl sulfide.
- Infrared studies of the isocyanate species formed in the reaction of NO with CO over Pt and Rh.
- Periodic operation effects in selective catalytic reduction of nitrogen monoxide with propane over alumina.
- Reaction mechanism of NO-NH3-O2 system,elucidated by transient response technique.
- Hysteresis of catalytic activity in hydrogenation of ethylene on Ni/Al2O3.
- Estimation of bubble-to-liquid mass transfer rate coefficient by transient response technique and by steady state reaction studies.
- Dehydration and Dehydrogenation of Alcohols over Acid-Base Bifunctional Catalysts