ID | 115597 |
タイトル別表記 | Enhancement of Catalytic Activity Associated with Carbon Deposits Formed on NiO/γ-Al2O3 Catalysts during Direct Dehydrogenation of Isobutane
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著者 |
Oribe, Kenta
Tokushima University
Endo, Shino
Tokushima University
Yoshida, Tashu
Tokushima University
Kato, Yuki
Mitsubishi Chemical Corporation
Ninomiya, Wataru
Mitsubishi Chemical Corporation
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キーワード | Dehydrogenation
Isobutane
Nickel oxide
Catalyst deactivation
Carbon deposition
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資料タイプ |
学術雑誌論文
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抄録 | The dehydrogenation of isobutane in the presence of CO2 over NiO supported on γ-Al2O3 was examined. For comparison, Cr2O3 supported on γ-Al2O3 was also used. It is generally accepted that a catalyst used for the dehydrogenation of various alkanes will suffer catalyst deactivation due to the formation of carbon deposits. In the present study, the yield of isobutene was significantly decreased with time-on-stream due to carbon deposition when using Cr2O3(x)/γ-Al2O3, in which x indicates the loading of a corresponding oxide by weight %. However, carbon deposits also were evident on NiO(x)/γ-Al2O3, but the yield of isobutene was enhanced with time-on-stream depending on the loading (x). This indicates that the contribution of the carbon deposition in the dehydrogenation on NiO(x)/γ-Al2O3 definitely differed from that on an ordinary catalyst system such as Cr2O3(x)/γ-Al2O3. In order to confirm the advantageous effect that carbon deposition exerted on the yield of isobutene, NiO(x)/γ-Al2O3 was first treated with isobutane and then the catalytic activity was examined. As expected, it became clear that the carbon deposits formed during the pretreatment contributed to the enhancement of the yield of isobutene. The presence of a Ni-carbide species together with the metallic Ni that was converted from NiO during dehydrogenation definitely enhanced of the yield of isobutene. Although carbon deposition is generally recognized as the main cause of catalyst deactivation, the results of the present study reveal that carbon deposition is not necessarily the cause of this phenomenon.
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掲載誌名 |
Journal of Chemical Engineering of Japan
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ISSN | 00219592
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cat書誌ID | AA00709658
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出版者 | The Society of Chemical Engineers, Japan
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巻 | 54
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号 | 1
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開始ページ | 35
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終了ページ | 43
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発行日 | 2021-01-20
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権利情報 | Copyright © 2021 The Society of Chemical Engineers, Japan
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EDB ID | |
出版社版DOI | |
出版社版URL | |
フルテキストファイル | |
言語 |
eng
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著者版フラグ |
著者版
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部局 |
理工学系
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