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このアイテムの引用には次の識別子を使用してください:
http://hdl.handle.net/10119/18870
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タイトル: | Catalytic Oxidation of Methane to Methanol over Cu-CHA with Molecular Oxygen |
著者: | Hirayama, Airi Tsuchimura, Yuka Yoshida, Hiroshi Machida, Masato Nishimura, Shun Kato, Kazuo Takahashi, Keisuke Ohyama, Junya |
発行日: | 2021-07-20 |
出版者: | Royal Society of Chemistry |
誌名: | Catalysis Science & Technology |
巻: | 11 |
号: | 18 |
開始ページ: | 6217 |
終了ページ: | 6224 |
DOI: | 10.1039/D1CY00676B |
抄録: | Direct oxidation of CH4 to CH3OH using O2 is challenging because of the high stability of CH4 and the relatively high reactivity of CH3OH. Here, Cu-CHA zeolites are tested for direct oxidation of CH4. Catalytic production of CH3OH in a CH4-O2-H2O flow reaction is improved using CHA type zeolites compared to other zeolites including MOR, BEA, MFI, and FAU zeolites reported previously. In situ X-ray absorption fine structure (XAFS) spectroscopy reveals that high catalytic activity of Cu-CHA is derived from its redox property, particularly, the high reducibility of Cu2+ involved in CH4 activation. The reaction gas concentrations are varied to find optimized reaction conditions on Cu-CHA. In addition, the reaction mechanism of the direct CH4 oxidation on a Cu-CHA is investigated based on not only the effects of gas concentrations but also the isotope gas effects using CD4, 18O2, and D2O. It is suggested that the rate-determining step is C-H activation of CH4, and the selectivity of CH3OH is determined by oxidation rate of CH3OH, which is affected by O2 and OH groups activation rate on Cu-CHA. |
Rights: | Copyright (C) 2021 Royal Society of Chemistry. Airi Hirayama, Yuka Tsuchimura, Hiroshi Yoshida, Masato Machida, Shun Nishimura, Kazuo Kato, Keisuke Takahashi and Junya Ohyama, Catalysis Science & Technology, 2021, 11(18), 6217-6224. https://doi.org/10.1039/D1CY00676B - Reproduced by permission of the Royal Society of Chemistry |
URI: | http://hdl.handle.net/10119/18870 |
資料タイプ: | author |
出現コレクション: | d10-1. 雑誌掲載論文 (Journal Articles)
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