Influence of Bifunctional PtZn/SiO2 and H-ZSM-5 Catalyst on the Rates and Selectivity of Propene Aromatization

Christopher K. Russell, A. Saxena, Jeffrey T. T. Miller
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Abstract

Previous studies on the conversion of olefins to aromatics with bifunctional Ga- or Zn-ZSM-5 catalysts have concluded that benzene, toluene, and xylenes (BTX) yields are significantly higher than for ZSM-5 alone. These results were attributed to the higher aromatic dehydrogenation rate of Ga or Zn. In this study, a highly active, bifunctional PtZn/SiO2 (1.3 wt% Pt, 2.6 wt% Zn) with H-ZSM-5 (Si/Al = 40) catalyst is investigated for propene aromatization at 723 K and 823 K. At low to moderate propene conversions, in addition to BTX, small alkanes and olefins are produced. Many of these may also be converted to aromatics at higher propene conversion while others are not, for example, methane, ethane and propane. When compared at equivalent space velocity or propene conversion, the bifunctional catalyst has a much higher selectivity to aromatics than ZSM-5; however, when compared at equivalent conversion of all reactive intermediates, the bifunctional catalyst exhibits very similar BTX selectivity. At 723 K, for ZSM-5 the primary non-reactive by-products are propane and butane; while, for the bifunctional catalyst the major non-reactive product is propane. At 823 K, both ZSM-5 and the bifunctional catalyst convert propane and butane to aromatics increasing the aromatic yields, and the by-products are methane and ethane.
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双功能PtZn/SiO2和H-ZSM-5催化剂对丙烯芳构化速率和选择性的影响
先前对双功能Ga-或Zn-ZSM-5催化剂将烯烃转化为芳烃的研究表明,苯、甲苯和二甲苯(BTX)的产率明显高于单独使用ZSM-5催化剂。这些结果归因于Ga或Zn较高的芳族脱氢速率。在本研究中,研究了一种高活性双功能PtZn/SiO2 (1.3 wt% Pt, 2.6 wt% Zn)与H-ZSM-5 (Si/Al = 40)催化剂在723 K和823 K下的丙烯芳构化反应。在低至中等的丙烯转化,除了BTX,小的烷烃和烯烃生产。其中许多也可以在较高的丙烯转化率下转化为芳烃,而另一些则不能,例如甲烷、乙烷和丙烷。在同等空速或丙烯转化率下,双功能催化剂对芳烃的选择性明显高于ZSM-5;然而,当比较所有反应中间体的等效转化时,双功能催化剂表现出非常相似的BTX选择性。在723 K时,ZSM-5的主要非反应副产物是丙烷和丁烷;而双功能催化剂的主要非反应产物是丙烷。在823 K时,ZSM-5和双功能催化剂均能将丙烷和丁烷转化为芳烃,提高了芳烃产率,副产物为甲烷和乙烷。
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