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Methane decomposition to CO_x-free hydrogen and nano-carbon material on group 8-10 base metal catalysts: A review

机译:甲烷在8-10组贱金属催化剂上分解为无CO_x的氢和纳米碳材料的研究进展

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摘要

Methane catalytic decomposition is a promising process that simultaneously produces CO_x-free hydrogen and carbon nanomaterial. The hydrogen produced can be consumed directly by proton exchange membrane fuel cell (PEMFC), while the carbon can be used as the fuel of direct carbon fuel cell (DCFC) and as the components of advanced materials. The recent advances in the reaction mechanism and kinetics on group 8-10 base metal catalysts are reviewed. Special attention is paid to the roles of metal particles and the deactivation mechanism of the catalyst during the reaction. The performances of the often used catalysts are summarized and the effects of the promoters, supports and preparation techniques are outlined. The kinetic models derived from different mechanism and the empirical correlations are compared. The process characteristics, such as the origin of the trace amount of CO in the product, the process factors influencing CO formation and the overall catalyst productivity are discussed. Processes based on the topic reaction and their applications are introduced.
机译:甲烷催化分解是一个有前途的过程,可同时生产不含CO_x的氢和碳纳米材料。质子交换膜燃料电池(PEMFC)可以直接消耗产生的氢气,而碳可以用作直接碳燃料电池(DCFC)的燃料和先进材料的成分。综述了8-10族贱金属催化剂在反应机理和动力学上的最新进展。特别注意金属颗粒的作用和反应过程中催化剂的失活机理。总结了常用催化剂的性能,概述了助催化剂,载体和制备技术的作用。比较了由不同机理得出的动力学模型和经验相关性。讨论了过程特征,例如产物中痕量CO的来源,影响CO形成的过程因素以及催化剂的整体生产率。介绍了基于主题反应的过程及其应用。

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