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Electronic effects and effects of particle morphology in n-hexane conversion over zeolite-supported platinum catalysts

机译:沸石负载铂催化剂在正己烷转化中的电子效应和颗粒形态的影响

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n-Hexane conversion over zeolite-supported platinum catalysts has been studied at 360 degrees C in a packed bed reactor. In the absence of sulfur impurities, the deactivation appears to be due to two types of coke formation. The propensity for terminal hydrogenolysis is primarily determined by the particle morphology, i.e., the type of surface sites exposed. The increase in benzene selectivity correlates with a shift to lower stretching frequencies of the CO absorption bands, indicating that an increase in the electron density at the surface metal atoms results in higher benzene selectivity. The effect of the support in the high activity and aromatization selectivity of a monofunctional platinum catalyst for n-hexane conversion is observed to be twofold, i.e., the stabilization of extremely small metal particles of specific morphology under reaction conditions and metal-support interaction, resulting in an increased electron density over the metal particles. (C) 1998 Academic Press. [References: 48]
机译:已经在填充床反应器中在360摄氏度下研究了沸石负载的铂催化剂上正己烷的转化率。在没有硫杂质的情况下,失活似乎是由于两种类型的焦炭形成。最终氢解的倾向主要由颗粒形态,即暴露的表面部位的类型决定。苯选择性的增加与向CO吸收带的较低拉伸频率的偏移相关,表明表面金属原子处电子密度的增加导致苯选择性更高。观察到载体对单官能铂催化剂对正己烷转化的高活性和芳构化选择性的影响是双重的,即,在反应条件和金属-载体相互作用下,稳定了特定形态的极小金属颗粒的稳定性。在金属颗粒上电子密度增加。 (C)1998年学术出版社。 [参考:48]

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