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首页> 外文期刊>Frontiers in Chemistry >Recent Advances in Supported Metal Catalysts and Oxide Catalysts for the Reverse Water-Gas Shift Reaction
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Recent Advances in Supported Metal Catalysts and Oxide Catalysts for the Reverse Water-Gas Shift Reaction

机译:支持金属催化剂和氧化物催化剂的最新进展,用于反向水气移反应

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摘要

The reverse water-gas shift reaction (RWGSR), a crucial stage in the conversion of abundant CO2 into chemicals or hydrocarbon fuels, has attracted extensive attention as a renewable system to synthesize fuels by non-traditional routes. There have been persistent efforts to synthesize catalysts for industrial applications, with attention given to the catalytic activity, CO selectivity, and thermal stability. In this review, we describe the thermodynamics, kinetics and atomic-level mechanisms of the RWGSR in relation to efficient RWGSR catalysts consisting of supported catalysts and oxide catalysts. In addition, we rationally classify, summarize and analyse the effects of physicochemical properties, such as the morphologies, compositions, promoting abilities, and presence of strong metal-support interactions (SMSI), on the catalytic performance and CO selectivity in the RWGSR over supported catalysts. Regarding oxide catalysts (i.e., pure oxides, spinel, solid solution, and perovskite-type oxides), we emphasize the relationships among their surface structure, oxygen storage capacity (OSC) and catalytic performance in the RWGSR. Furthermore, the ability of perovskite-type oxides to enhance the RWGSR with chemical looping cycles (RWGSR-CL) is systematically illustrated. These systematic introductions shed light on development of catalysts with high performance in RWGSR.
机译:反向水 - 气体移位反应(RWGSR),将丰富的二氧化碳转化为化学品或烃燃料的关键阶段,作为可再生系统的广泛关注,通过非传统途径合成燃料。持续努力合成工业应用的催化剂,注意到催化活性,CO选择性和热稳定性。在本文中,我们描述了RWGSR的热力学,动力学和原子水平机制,其与支持的催化剂和氧化物催化剂组成的有效RWGSR催化剂。此外,我们合理地分类,总结和分析了物理化学性质的影响,例如形态,组合物,促进能力和强均金属支持相互作用(SMSI)的形态,对RWGSR的催化性能和CO选择性的影响催化剂。关于氧化物催化剂(即纯氧化物,尖晶石,固溶体和钙钛矿型氧化物),我们强调其表面结构,氧气储存能力(OSC)和RWGSR催化性能之间的关系。此外,系统地示出了钙钛矿型氧化物以增强具有化学环路循环(RWGSR-CL)的RWGSR的能力。这些系统介绍揭示了RWGSR高性能高性能的催化剂的开发。

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