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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >New PtSn structured catalysts with ZnAl2O4 thin film for n-butane dehydrogenation reaction
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New PtSn structured catalysts with ZnAl2O4 thin film for n-butane dehydrogenation reaction

机译:具有Znal2O4薄膜的新的PTSN结构催化剂,用于正丁烷脱氢反应

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Starting from structured supports based on compact spheres coated with a thin and porous layer of ZnAl2O4, mono and bimetallic catalysts were prepared. These catalysts were applied for the n-butane dehydrogenation reaction to produce light olefins. The structured supports were synthesized by coating with: bohemite-nitrate purified method (BP) and citrate-nitrate method (C). From the characterization results, the existence of strong Pt-Sn interaction in both bimetallic catalysts with probable alloys formation was found. In the PtSn/Sp-Zn-C catalyst, where higher metallic Pt-Sn interactions were observed, most of its metallic particles have sizes between 1 and 1.5 nm, which indicates a good metallic dispersion. These properties led to a catalyst with the best catalytic behavior, thus showing high yields to butenes, and a very good stability. Moreover, the presence of a structured support improves the mass and heat transference in this reaction carried out at high temperature.
机译:从基于涂有薄型和多孔层的Znal2O4,单体和双金属催化剂的紧凑型支撑件从结构化支撑件开始。 将这些催化剂施用于正丁烷脱氢反应以产生轻烯烃。 通过涂层合成结构化载体:波希米钛矿 - 硝酸纯化方法(BP)和柠檬酸盐 - 硝酸法(C)。 从表征结果中,发现,发现了具有可能合金形成的双金属催化剂中强的Pt-Sn相互作用。 在PTSN / SP-Zn-C催化剂中,观察到更高的金属Pt-Sn相互作用的情况下,其大多数金属颗粒在1到1.5nm之间的尺寸尺寸,表示良好的金属分散体。 这些性质导致具有最佳催化性能的催化剂,从而显示出高产率为丁烯,以及非常好的稳定性。 此外,结构化支持的存在改善了在高温下进行的该反应中的质量和热转移。

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