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タイトル: | A gap-designed photo-reactor for high-performance photothermal methane reforming |
著者: | El-Naggar, A., Hamada Yoshida, Hisao ![]() ![]() ![]() Yamamoto, Akira |
著者名の別形: | 吉田, 寿雄 山本, 旭 |
発行日: | 21-Mar-2025 |
出版者: | Royal Society of Chemistry (RSC) |
誌名: | Sustainable Energy & Fuels |
巻: | 9 |
号: | 6 |
開始ページ: | 1596 |
終了ページ: | 1604 |
抄録: | Photothermal catalysis has garnered significant attention as a potential solution to address energy scarcity. In photothermal catalysis, light irradiation directly heats the catalyst bed, inducing a localized temperature gradient. However, in methane reforming reactions such as dry reforming, the undesired reverse reaction typically proceeds in the lower temperature zone of the catalyst bed, which reduces the overall efficiency. To address this issue, we developed a novel flow-type photo-reactor composed of a quartz tube and a quartz filler welded within the tube. The narrow catalyst-filled gap was used for catalytic reaction that minimizes the temperature gradient under light irradiation. The developed reactor, termed the gap reactor, demonstrated excellent catalytic performance in photothermal dry reforming of methane (PT-DRM), achieving ∼70–80% conversion of CH₄ and CO₂ over 100 hours using a SiO₂-encapsulated Co–Ni alloy catalyst previously developed by our group. Compared to the conventional quartz tube reactor with the same cross-sectional area for light absorption, the gap reactor significantly enhanced both conversion and stability. Furthermore, integrating the gap reactor with steam addition to the reaction feed successfully suppressed coke formation to only 0.6 wt% after approximately 50 hours of reaction. This study highlights the benefits of the gap reactor design in high-temperature catalytic applications up to 1000 °C. |
著作権等: | This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence. You can use material from this article in other publications, without requesting further permission from the RSC, provided that the correct acknowledgement is given and it is not used for commercial purposes. To request permission to reproduce material from this article in a commercial publication, please go to the Copyright Clearance Center request page. If you are an author contributing to an RSC publication, you do not need to request permission provided correct acknowledgement is given. If you are the author of this article, you do not need to request permission to reproduce figures and diagrams provided correct acknowledgement is given. If you want to reproduce the whole article in a third-party commercial publication (excluding your thesis/dissertation for which permission is not required) please go to the Copyright Clearance Center request page. Read more about how to correctly acknowledge RSC content. |
URI: | http://hdl.handle.net/2433/294536 |
DOI(出版社版): | 10.1039/d4se01830c |
関連リンク: | http://pubs.rsc.org/en/content/articlepdf/2025/SE/D4SE01830C |
出現コレクション: | 学術雑誌掲載論文等 |

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