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Catalytic conversion of methane: Carbon dioxide reforming and oxidative coupling

机译:甲烷的催化转化:二氧化碳重整和氧化偶联

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摘要

Natural gas conversion remains one of the essential technologies for current energy needs. This review focuses on the mechanistic aspects of the development of efficient and durable catalysts for two reactions, carbon dioxide reforming and the oxidative coupling of methane. These two reactions have tremendous technological significance for practical application in industry. An understanding of the fundamental aspects and reaction mechanisms of the catalytic reactions reviewed in this study would support the design of industrial catalysts. CO 2 reforming of methane utilizes CO 2, which is often stored in large quantities, to convert as a reactant. Strategies to eliminate carbon deposition, which is the major problem associated with this reaction, are discussed. The oxidative coupling of methane directly produces ethylene in one reactor through a slightly exothermic reaction, potentially minimizing the capital cost of the natural gas conversion process. The focus of discussion in this review will be on the attainable yield of C 2 products by rigorous kinetic analyses.
机译:天然气转化仍然是满足当前能源需求的重要技术之一。这篇综述的重点是针对两个反应,即二氧化碳重整和甲烷的氧化偶联,开发高效耐用的催化剂的机理。这两个反应对于工业上的实际应用具有巨大的技术意义。对本研究综述的催化反应的基本方面和反应机理的理解将支持工业催化剂的设计。甲烷的CO 2重整利用通常大量存储的CO 2转化为反应物。讨论了消除碳沉积的策略,这是与此反应相关的主要问题。甲烷的氧化偶合通过一个稍微放热的反应在一个反应​​器中直接生产乙烯,从而有可能将天然气转化过程的投资成本降至最低。本文的讨论重点将放在通过严格的动力学分析得出的C 2产品的可得产率上。

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    Takanabe, Kazuhiro;

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  • 年度 2012
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