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A Comparison of Ceria and Sm-Doped Ceria for Hydrocarbon Oxidation Reactions

机译:二氧化铈和Sm掺杂二氧化铈在烃类氧化反应中的比较

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摘要

The oxidation of methane, ethane, propane, and n-butane has been studied over CeO2 and Ce0.8Sm0.2Ox (SDC) catalysts. The rates for methane and ethane were found to be indistinguishable over the two catalysts, while the rates for propane and n-butane were much higher on ceria compared to SDC. The difference between n-butane oxidation over ceria and SDC is shown to result from a low-temperature rate process on ceria that is not present on SDC. Measurements using CD4 and C4D10 show that both low- and high-temperature rates exhibit a similar kinetic-isotope effect; however, the low-temperature process is half-order in O2, while the high-temperature process is zeroth-order. Pulse studies demonstrate that oxygen from the bulk becomes accessible for reaction at approximately the same temperature as that at which the high-temperature rate process becomes important. The implications of these results for understanding the effect of doping on reactions over ceria, and for characterization of oxides using standard test reactions, are discussed.
机译:已经在CeO2和Ce0.8Sm0.2Ox(SDC)催化剂上研究了甲烷,乙烷,丙烷和正丁烷的氧化。发现在两种催化剂上甲烷和乙烷的速率没有区别,而氧化铈上丙烷和正丁烷的速率比SDC高得多。氧化铈和SDC之间的正丁烷氧化差异表明是由于SDC上不存在的氧化铈低温速率过程造成的。使用CD4和C4D10进行的测量表明,低温和高温速率均表现出相似的动力学同位素效应;然而,低温过程是O2的半阶,而高温过程是零阶。脉冲研究表明,在与高温速率过程变得重要的温度大致相同的温度下,来自主体的氧气可用于反应。讨论了这些结果对于理解掺杂对二氧化铈反应的影响以及使用标准测试反应表征氧化物的意义。

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    Zhao, S.; Gorte, Raymond J;

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  • 年度 2004
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