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Effect of Reduction on the State of the Surface Layer and Catalytic Properties of Pt/WO42-/ZrO2 in the Hydroisomerization of an n-Heptane-Benzene Mixture

机译:降低对N-庚烷苯混合物的加氢异构化的Pt / WO42- / ZrO2的表面层状态和催化性能的影响

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摘要

Results of a study of the catalytic properties of platinum-containing tungstated zirconia in the hydroisomerization of an n-heptane-benzene mixture as a function of the reduction temperature of the catalyst in a hydrogen medium have been described. The main products of n-heptane conversion are di- and monomethyl-branched heptane isomers, and benzene is hydrogenated to cyclohexane, which undergoes isomerization to methylcyclopentane. It has been shown that an increase in temperature above 300 degrees C leads to a significant decrease in the catalyst activity, while the parameters of the crystalline and pore structure of the catalyst remain stable. Using X-ray photoelectron spectroscopy, it has been found that an increase in the reduction temperature leads to an increase in the concentration of tungsten and platinum reduced to the metallic state on the catalyst surface.
机译:已经描述了在N-庚烷 - 苯混合物的催化剂中催化性能研究的研究结果,作为氢介质中催化剂的还原温度的函数。 正庚烷转化的主要产物是二 - 和单甲基支链庚烷异构体,苯氢化至环己烷,该环己烷经历异构化对甲基环戊烷。 已经表明,高于300℃的温度的增加导致催化剂活性的显着降低,而催化剂的结晶和孔结构的参数保持稳定。 已经发现,已经发现,还原温度的增加导致钨和铂的浓度增加到催化剂表面上的金属状态。

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