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Effect of Rh loading on the performance of Rh/Al2O3 for methane partial oxidation to synthesis gas

机译:Rh含量对Rh / Al2O3甲烷部分氧化制合成气性能的影响

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Catalytic performance for partial oxidation of methane (POM) to synthesis gas was studied over the Rh/Al2O3 catalysts with Rh loadings between 0.1 and 3 wt%. It was found that the ignition temperature of POM reaction increased with the decreasing of the Rh loadings in the catalysts. For the POM reaction over the catalysts with high (≥1 wt%) Rh loadings, steady-state reactivity was observed. For the reaction over the catalysts with low (≤0.25 wt%) Rh loadings, however, oscillations in CH4 and reaction products (CO, H2, and CO2) were observed. Comparative studies using H2-TPR, O2-TPD and high temperature in situ Raman spectroscopy techniques were carried out in order to elucidate the relation between the redox property of the Rh species in the Rh/Al2O3 with different Rh loadings and the performance of the catalysts for the reaction. Three kinds of oxidized rhodium species, i.e. the rhodium oxide species insignificantly affected by the support (RhO_x), that intimately interacting with the Al2O3 surface (Rh~ity a nd the Rh(AlO2)_y, species formed by diffusion of rhodium oxides in to sublayers of Al2O3 [C.P. Hwang, C.T. Yeh, Q.M. Zhu, Catal. Today, 51 (1999) 93.], were identified by H2-TPR and O2-TPD experiments. Among them, the first two species can be easily reduced by H2 at temperature below 350 °C, while the last one can only be reduced by H2 at temperature above 500 °C. The ignition temperatures of POM reaction over the catalysts are closely related to the temperature at which most of the RhO_x and Rh~iO_x species can be reduced by CH4 in the reaction mixture. Compared to.the Rh/Al2O3 with high Rh loadings, the catalysts with low Rh loadings contain more Rh~iO_x species which possess stronger Rh-O bond strength and are more difficult to be reduced than RhO_x by the reaction mixture. Higher temperature is therefore required to ignite the POM reaction over the catalysts with lower Rh loadings. The oscillation during the POM reaction over the Rh/Al2O3 with low Rh loadings can be related to the behaviour of Rh(AlO2)_y, species in the catalyst switching cyclically from the oxidized state to the reduced state during the reaction.
机译:研究了在Rh / Al2O3催化剂上Rh的负载量为0.1到3 wt%时甲烷(POM)部分氧化为合成气的催化性能。发现POM反应的着火温度随着催化剂中Rh含量的降低而升高。对于具有高(≥1重量%)Rh负载量的催化剂上的POM反应,观察到稳态反应性。然而,对于在低(≤0.25wt%)Rh负载量的催化剂上进行的反应,观察到CH4和反应产物(CO,H2和CO2)的振荡。为了阐明在不同Rh负载下Rh / Al2O3中Rh物种的氧化还原特性与催化剂性能之间的关系,使用H2-TPR,O2-TPD和高温原位拉曼光谱技术进行了比较研究。反应。三种氧化铑物种,即受载体(RhO_x)影响很小的氧化铑物种,它们与Al2O3表面紧密相互作用(Rh和Rh(AlO2)_y,它们是由铑氧化物向通过H2-TPR和O2-TPD实验确定了Al2O3的亚层[黄CP雄,叶振棠,朱庆明,今天,Catal。,今天,51(1999)93.],其中前两个物种可以通过H2轻松还原在低于350°C的温度下,最后一个只能在高于500°C的温度下被H2还原.POM在催化剂上的反应着火温度与大多数RhO_x和Rh〜iO_x物种的温度密切相关与高Rh负载量的Rh / Al2O3相比,低Rh负载量的催化剂含有更多的Rh〜iO_x物种,它们具有更强的Rh-O键强度,并且比Rh / Al2O3难于还原。反应混合物中的RhO_x较高的温度需要以较低的Rh含量在催化剂上点燃POM反应。在具有低Rh负载的Rh / Al2O3上进行POM反应期间的振荡可能与Rh(AlO2)_y的行为有关,催化剂中的物质在反应过程中从氧化态循环转换为还原态。

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