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首页> 外文期刊>Journal of Catalysis >Oxidative dehydrogenation of ethane over a Pt-coated monolith versus Pt-loaded pellets: Surface area and thermal effects
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Oxidative dehydrogenation of ethane over a Pt-coated monolith versus Pt-loaded pellets: Surface area and thermal effects

机译:与负载铂的颗粒相比,涂覆铂的整料上乙烷的氧化脱氢:表面积和热效应

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The catalytic performance of Pt-coated gamma-Al2O3 pellets is compared to the performance of a Pt-coated alpha-Al2O3 monolith in the oxidative dehydrogenation of ethane to ethylene at short contact times. The use of the high surface area gamma-Al2O3 support has a detrimental impact upon the production of the desired reactive intermediate, C2H4. The porous nature of the high surface area pellet support reduces the selectivity to intermediate products (C2H4) in favor of complete combustion. The axial and radial temperature profiles of the monolith and packed bed were examined to better understand the difference in catalytic performance of the two catalyst configurations. The radial temperature profile for the Pt-coated gamma-Al2O3 pellets shows hot spot formation along the center-line of the catalyst bed which leads to lower C2H4 selectivity and can lead to thermal runaway. However, the radial temperature profile of the Pt-coated alpha-Al2O3 monolith is fairly flat across the monolith with a slight temperature drop between the edge of the catalyst and the reactor wall. This more uniform catalyst temperature leads to a higher production of C2H4. (C) 1998 Academic Press. [References: 31]
机译:将Pt涂层的γ-Al2O3颗粒的催化性能与Pt涂层的α-Al2O3整体材料在乙烷短时间内将乙烷氧化脱氢为乙烯的性能进行了比较。高表面积的γ-Al2 O 3载体的使用对所需的反应性中间体C 2 H 4的产生具有不利影响。高表面积颗粒载体的多孔性降低了对中间产物(C2H4)的选择性,有利于完全燃烧。检查了整体和填充床的轴向和径向温度曲线,以更好地理解两种催化剂构型在催化性能上的差异。 Pt包覆的γ-Al2O3颗粒的径向温度曲线显示沿催化剂床中心线形成热点,这导致较低的C2H4选择性并可能导致热失控。但是,Pt包覆的α-Al2O3整料的径向温度分布在整料上相当平坦,并且在催化剂边缘和反应器壁之间有轻微的温度下降。这种更均匀的催化剂温度导致更高的C2H4产量。 (C)1998年学术出版社。 [参考:31]

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