Modified Simulation of Methane Steam Reforming in Pd-Membrane/Packed-Bed Type Reactor
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概要
- 論文の詳細を見る
Methane Steam Reforming (MSR) is a catalytic process in which methane is reacted with steam to produce hydrogen and carbon dioxide gases. Many experimental and simulation studies have been assumed to be under isothermal conditions using a packed-bed inert membrane reactor (PBIMR). However, the flow fields inside the reactor are complex and a temperature gradient also occurs because of the catalyst particles packed in the reactor. This study suggests a new model considering heat transfer at the reactor wall and pressure drop inside the reactor. The model applies to the MSR reaction using PBIMR with a stainless steel reactor supported by a palladium membrane and packed-bed type reactor. Results are compared with the published experimental and simulation results. The simulation results suggested in the study shows better agreement than the simple model with constant temperature assumption, for both cases of palladium membrane and packed-bed type reactor. In addition, the effects of H2O/CH4, flow rate of sweep gas and particle diameter of catalyst on the methane conversion are investigated. In all cases, the proposed heat transfer model reveals better agreement with the published experimental data than that of the isothermal model.
- 社団法人 化学工学会の論文
- 1999-12-01
著者
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CHOI Byung
School of Engineering, Information and Communications University (ICU)
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Choi Byung
School Of Engineering Information And Communications University (icu)
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Kim J‐h
School Of Chemical Engineering Seoul National University
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KIM Jun-hun
School of Chemical Engineering, Seoul National University
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YI Jonegheop
School of Chemical Engineering, Seoul National University
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Yi Jonegheop
School Of Chemical Engineering Seoul National University
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Kim Jun-hun
School Of Chemical Engineering Seoul National University
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Yi Jongheop
School Of Biological And Chemical Engineering Seoul National University
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Choi Byung
School Of Chemical Engineering Seoul National University
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Choi Byung-Seok
School of Chemical Engineering, Seoul National University
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