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Steam and CO2 reforming of ethanol over Rh/CeO2 catalyst

机译:Rh / CeO2催化剂对乙醇进行蒸汽和CO2重整

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摘要

The performance of ceria supported Rh catalysts prepared with high and low surface areas for steam reforming and dry reforming of ethanol was investigated. According to results, of diffuse reflectance infrared Fourier transform spectroscopy of both reactions, dissociative adsorption of ethanol over ceria gives rise to ethoxy species and bridging OH groups. Oxidation of ethoxy species proceeds by addition of 0 provided by the support from species such as Type II bridging OH groups (i.e., steam reforming) or 0 adatoms (e.g., CO2 reforming). Rh promotes demethanation of acetate to carbonate and the steam/dry reforming of CH_x species.Catalyst deactivation occurs from the deposition of carbon on the catalysts during both reactions. However, no carbon formation is observed on the Rh/CeO2 high surface area catalyst during steam reforming due to a higher surface fugacity of 0 from species adsorbed on the support that react to remove carbon.
机译:研究了高表面积和低表面积二氧化铈负载的Rh催化剂对乙醇进行蒸汽重整和干重整的性能。根据结果​​,在两个反应的漫反射红外傅里叶变换光谱中,乙醇在二氧化铈上的解离吸附产生了乙氧基和桥接的OH基团。乙氧基物质的氧化过程是通过添加由物种(例如II型桥接OH基团(即蒸汽重整))或0个原子原子(例如CO2重整)等物种的载体提供的0进行的。 Rh促进了乙酸的脱甲烷反应生成碳酸盐,并促进了CH_x物质的蒸汽/干重整。催化剂失活是由于两个反应过程中碳在催化剂上的沉积所致。然而,由于在载体上吸附的反应除去碳的物质的表面逸度较高,因此在蒸汽重整过程中在Rh / CeO2高表面积催化剂上未观察到碳的形成。

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