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Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane

CO(2) reforming of methane (CRM) can effectively convert two greenhouse gases (CO(2) and CH(4)) into syngas (CO + H(2)). This process can achieve the efficient resource utilization of CO(2) and CH(4) and reduce greenhouse gases. Therefore, CRM has been considered as a significantly promising route t...

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Autores principales: Wu, Xianyun, Xu, Leilei, Chen, Mindong, Lv, Chufei, Wen, Xueying, Cui, Yan, Wu, Cai-e, Yang, Bo, Miao, Zhichao, Hu, Xun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7543533/
https://www.ncbi.nlm.nih.gov/pubmed/33195071
http://dx.doi.org/10.3389/fchem.2020.581923
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author Wu, Xianyun
Xu, Leilei
Chen, Mindong
Lv, Chufei
Wen, Xueying
Cui, Yan
Wu, Cai-e
Yang, Bo
Miao, Zhichao
Hu, Xun
author_facet Wu, Xianyun
Xu, Leilei
Chen, Mindong
Lv, Chufei
Wen, Xueying
Cui, Yan
Wu, Cai-e
Yang, Bo
Miao, Zhichao
Hu, Xun
author_sort Wu, Xianyun
collection PubMed
description CO(2) reforming of methane (CRM) can effectively convert two greenhouse gases (CO(2) and CH(4)) into syngas (CO + H(2)). This process can achieve the efficient resource utilization of CO(2) and CH(4) and reduce greenhouse gases. Therefore, CRM has been considered as a significantly promising route to solve environmental problems caused by greenhouse effect. Ni-based catalysts have been widely investigated in CRM reactions due to their various advantages, such as high catalytic activity, low price, and abundant reserves. However, Ni-based catalysts usually suffer from rapid deactivation because of thermal sintering of metallic Ni active sites and surface coke deposition, which restricted the industrialization of Ni-based catalysts toward the CRM process. In order to address these challenges, scientists all around the world have devoted great efforts to investigating various influencing factors, such as the option of appropriate supports and promoters and the construction of strong metal-support interaction. Therefore, we carefully summarized recent development in the design and preparation of Ni-based catalysts with advanced catalytic activity and enhanced anti-coke performance toward CRM reactions in this review. Specifically, recent progresses of Ni-based catalysts with different supports, additives, preparation methods, and so on, have been summarized in detail. Furthermore, recent development of reaction mechanism studies over Ni-based catalysts was also covered by this review. Finally, it is prospected that the Ni-based catalyst supported by an ordered mesoporous framework and the combined reforming of methane will become the future development trend.
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spelling pubmed-75435332020-11-13 Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane Wu, Xianyun Xu, Leilei Chen, Mindong Lv, Chufei Wen, Xueying Cui, Yan Wu, Cai-e Yang, Bo Miao, Zhichao Hu, Xun Front Chem Chemistry CO(2) reforming of methane (CRM) can effectively convert two greenhouse gases (CO(2) and CH(4)) into syngas (CO + H(2)). This process can achieve the efficient resource utilization of CO(2) and CH(4) and reduce greenhouse gases. Therefore, CRM has been considered as a significantly promising route to solve environmental problems caused by greenhouse effect. Ni-based catalysts have been widely investigated in CRM reactions due to their various advantages, such as high catalytic activity, low price, and abundant reserves. However, Ni-based catalysts usually suffer from rapid deactivation because of thermal sintering of metallic Ni active sites and surface coke deposition, which restricted the industrialization of Ni-based catalysts toward the CRM process. In order to address these challenges, scientists all around the world have devoted great efforts to investigating various influencing factors, such as the option of appropriate supports and promoters and the construction of strong metal-support interaction. Therefore, we carefully summarized recent development in the design and preparation of Ni-based catalysts with advanced catalytic activity and enhanced anti-coke performance toward CRM reactions in this review. Specifically, recent progresses of Ni-based catalysts with different supports, additives, preparation methods, and so on, have been summarized in detail. Furthermore, recent development of reaction mechanism studies over Ni-based catalysts was also covered by this review. Finally, it is prospected that the Ni-based catalyst supported by an ordered mesoporous framework and the combined reforming of methane will become the future development trend. Frontiers Media S.A. 2020-09-24 /pmc/articles/PMC7543533/ /pubmed/33195071 http://dx.doi.org/10.3389/fchem.2020.581923 Text en Copyright © 2020 Wu, Xu, Chen, Lv, Wen, Cui, Wu, Yang, Miao and Hu. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Wu, Xianyun
Xu, Leilei
Chen, Mindong
Lv, Chufei
Wen, Xueying
Cui, Yan
Wu, Cai-e
Yang, Bo
Miao, Zhichao
Hu, Xun
Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane
title Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane
title_full Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane
title_fullStr Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane
title_full_unstemmed Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane
title_short Recent Progresses in the Design and Fabrication of Highly Efficient Ni-Based Catalysts With Advanced Catalytic Activity and Enhanced Anti-coke Performance Toward CO(2) Reforming of Methane
title_sort recent progresses in the design and fabrication of highly efficient ni-based catalysts with advanced catalytic activity and enhanced anti-coke performance toward co(2) reforming of methane
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7543533/
https://www.ncbi.nlm.nih.gov/pubmed/33195071
http://dx.doi.org/10.3389/fchem.2020.581923
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