TRIANTO Azis | Department of Chemical Engineering, Faculty of Engineering, Tokyo University of Agriculture and Tech
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概要
- 同名の論文著者
- Department of Chemical Engineering, Faculty of Engineering, Tokyo University of Agriculture and Techの論文著者
関連著者
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KOKUGAN Takao
Department of Chemical Engineering, Tokyo University of Agriculture and Technology
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Kokugan Takao
Department Of Chemical Engineering Faculty Of Engineering Tokyo University Of Agriculture And Techno
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TRIANTO Azis
Department of Chemical Engineering, Faculty of Engineering, Tokyo University of Agriculture and Tech
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Trianto Azis
Department Of Chemical Engineering Faculty Of Engineering Tokyo University Of Agriculture And Techno
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Kokugan T
Tokyo Univ. Agriculture And Technol. Koganei Jpn
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Kokugan Takao
Department Of Chemical Engineering Faculty Of Technology Tokyo University Of Agriculture And Technol
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Kokugan Takao
Tokyo University Of Agriculture And Technology Department Of Chemical Engineering
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Qiao Wang
Department Of Chemical Engineering Faculty Of Engineering Tokyo University Of Agriculture And Techno
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TAKEDA Hiromichi
Department of Chemical Engineering, Faculty of Engineering, Tokyo University of Agriculture and tech
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Trianto A
Tokyo Univ. Agriculture And Technol. Koganei Jpn
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Trianto Azis
Department Of Chemical Engineering Faculty Of Industrial Technology Bandung Institute Of Technology
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Trianto Azis
Department Of Chemical Engineering Faculty Of Industrial Technology
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Takeda Hiromichi
Department Of Chemical Engineering Faculty Of Engineering Tokyo University Of Agriculture And Techno
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Kokugan Takao
Department Of Chemical Engineering Faculty Of Engineering Tokyo University Of Agriculture And Techno
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Kokugan Takao
Department Of Chemical Engineering Faculty Of Engineering Tokyo University Of Agriculture And Techno
著作論文
- Method for Improving the Performance of Porous Membrane Reactor
- Dehydrogenation of Pure Cyclohexane in the Membrane Reactor and Prediction of Conversion by Pseudo Equilibrium Model
- Isopropyl Alcohol Dehydrogenation on Modified Porous Membrane Reactor
- Effects of Catalyst Amount, Membrane Tube Diameter and Permeation Rate on the Performance of Porous Membrane Reactors