Insights into carbon-based materials for catalytic dehydrogenation of low-carbon alkanes and ethylbenzene

IF 4.3 3区 工程技术 Q2 ENGINEERING, CHEMICAL Frontiers of Chemical Science and Engineering Pub Date : 2023-06-19 DOI:10.1007/s11705-023-2328-6
Sijia Xing, Sixiang Zhai, Lei Chen, Huabin Yang, Zhong-Yong Yuan
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Abstract

Direct dehydrogenation with high selectivity and oxidative dehydrogenation with low thermal limit has been regarded as promising methods to solve the increasing demands of light olefins and styrene. Metal-based catalysts have shown remarkable performance for these reactions, such as Pt, CrOx, Co, ZrOx, Zn and V. Compared with metal-based catalysts, carbon materials with stable structure, rich pore texture and large surface area, are ideal platforms as the catalysts and the supports for dehydrogenation reactions. In this review, carbon materials applied in direct dehydrogenation and oxidative dehydrogenation reactions including ordered mesoporous carbon, carbon nanodiamond, carbon nanotubes, graphene and activated carbon, are summarized. A general introduction to the dehydrogenation mechanism and active sites of carbon catalysts is briefly presented to provide a deep understanding of the carbon-based materials used in dehydrogenation reactions. The unique structure of each carbon material is presented, and the diversified synthesis methods of carbon catalysts are clarified. The approaches for promoting the catalytic activity of carbon catalysts are elaborated with respect to preparation method optimization, suitable structure design and heteroatom doping. The regeneration mechanism of carbon-based catalysts is discussed for providing guidance on catalytic performance enhancement. In addition, carbon materials as the support of metal-based catalysts contribute to exploiting the excellent catalytic performance of catalysts due to superior structural characteristics. In the end, the challenges in current research and strategies for future improvements are proposed.

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碳基材料用于低碳烷烃和乙苯催化脱氢的研究进展
高选择性的直接脱氢和低热限的氧化脱氢被认为是解决轻质烯烃和苯乙烯日益增长的需求的有前途的方法。金属基催化剂在这些反应中表现出显著的性能,如Pt、CrOx、Co、ZrOx、Zn和V。与金属基催化剂相比,结构稳定、孔结构丰富、表面积大的碳材料是脱氢反应的理想催化剂和载体。综述了碳材料在直接脱氢和氧化脱氢反应中的应用,包括有序介孔碳、碳纳米金刚石、碳纳米管、石墨烯和活性炭。简要介绍了碳催化剂的脱氢机理和活性位点,以深入了解脱氢反应中使用的碳基材料。介绍了每种碳材料的独特结构,阐明了碳催化剂的多种合成方法。从制备方法的优化、合适的结构设计和杂原子掺杂等方面阐述了提高碳催化剂催化活性的途径。讨论了碳基催化剂的再生机理,为提高催化剂性能提供指导。此外,碳材料作为金属基催化剂的载体,由于其优异的结构特性,有助于开发催化剂优异的催化性能。最后,提出了当前研究中的挑战和未来改进策略。
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来源期刊
CiteScore
7.60
自引率
6.70%
发文量
868
审稿时长
1 months
期刊介绍: Frontiers of Chemical Science and Engineering presents the latest developments in chemical science and engineering, emphasizing emerging and multidisciplinary fields and international trends in research and development. The journal promotes communication and exchange between scientists all over the world. The contents include original reviews, research papers and short communications. Coverage includes catalysis and reaction engineering, clean energy, functional material, nanotechnology and nanoscience, biomaterials and biotechnology, particle technology and multiphase processing, separation science and technology, sustainable technologies and green processing.
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