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Effects of Re addition upon aqueous phase reforming of ethanol over TiO2 supported Rh and Ir catalysts

机译:Re添加对TiO2负载Rh和Ir催化剂上乙醇水相重整的影响

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Effect of addition of rhenium was investigated during catalysis of TiO2-supported Rh and Ir metals for aqueous phase reforming of ethanol. By adding Re to Rh/TiO2 and Ir/TiO2 catalysts, the initial rates of H-2, CH4, and CO2 formation increased 3-4 times, together with the extraordinary increase of acetic acid formation. Detailed mechanisms of the reforming reaction were investigated using various physicochemical techniques. The role of added Re was the acceleration of the hydration of acetaldehyde to form acetic acid rather than the decomposition of acetaldehyde to form CH4 and CO on both Rh/TiO2 and Ir/TiO2 catalysts. Well dispersed bimetallic nano-composites would work as the active sites for ethanol dehydrogenation and acetaldehyde decomposition, whereas partially oxidized ReOx sites may work for the hydration of acetaldehyde to form acetic acid. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在TiO2负载的Rh和Ir金属催化乙醇水相重整过程中,研究了of的添加效果。通过向Rh / TiO2和Ir / TiO2催化剂中添加Re,H-2,CH4和CO2的初始形成速率增加了3-4倍,同时乙酸的形成也异常增加。使用各种物理化学技术研究了重整反应的详细机理。添加Re的作用是在Rh / TiO2和Ir / TiO2催化剂上加速乙醛水合形成乙酸,而不是乙醛分解形成CH4和CO。分散良好的双金属纳米复合材料将用作乙醇脱氢和乙醛分解的活性位点,而部分氧化的ReOx位点可能会用于乙醛的水合以形成乙酸。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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