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Hydroisomerization of n-Butane over Platinum-Promoted Cesium Hydrogen Salt of 12-Tungstophosphoric Acid

机译:铂促进的12钨磷酸铯氢盐上正丁烷的加氢异构化

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摘要

The hydroisomerization of n-butane was carried out in a fixed-bed gas-flow reactor over Pt-promoted Cs2.5H0.5PW12O40 (denoted as Cs2.5). Two kinds of catalysts, a direct impregnation of Pt on Cs2.5 (denoted as Pt/Cs2.5), as well as a mechanical mixture of Pt/Al2O3 and Cs2.5 (denoted as Pt/Al2O3+Cs2.5), were used for the hydroisomerization. Pt/Al2O3+Cs2.5 showed a higher stationary activity than Pt/Cs2.5 because the Pt particles supported on Al2O3 were much smaller than those supported on Cs2.5. The initial activity decreased with increasing H2 pressure over Pt/Al2O3+Cs2.5. This indicates that the hydroisomerization of n-butane over Pt/Al2O3+Cs2.5 proceeded through a bifunctional mechanism, in which n-butane was hydrogenated/dehydrogenated on Pt sites and was isomerized on acid sites of Cs2.5. For the hydroisomerization of n-butane over Pt/Al2O3+Cs2.5 the hydrogenation/dehydrogenation on Pt sites is a limiting step at a low Pt loading and the isomerization on solid acid sites is a limiting step at a high Pt loading. During the reaction, hydrogen molecules were dissociated to active hydrogen atoms on Pt sites, and then the formed active hydrogen atoms moved to the solid acid sites of Cs2.5 (spillover effect) to eliminate the carbonaceous deposits and suppress the catalyst deactivation. Because Cs2.5 has suitably strong and uniformly-distributed solid acid sites, Pt/Al2O3+Cs2.5 showed a higher stationary activity than Pt/Al2O3+H-ZSM-5 and Pt/Al2O3+SO4/ZrO2 for the hydroisomerization of n-butane at a low H2 pressure.
机译:正丁烷的加氢异构化是在固定床气流反应器上,在Pt促进的Cs2.5H0.5PW12O40(表示为Cs2.5)上进行的。两种催化剂,Pt直接浸渍在Cs2.5上(表示为Pt / Cs2.5),以及Pt / Al2O3和Cs2.5的机械混合物(表示为Pt / Al2O3 + Cs2.5),用于加氢异构化。 Pt / Al2O3 + Cs2.5表现出比Pt / Cs2.5更高的固定活性,因为负载在Al2O3上的Pt颗粒比负载在Cs2.5上的Pt小得多。随着H2压力超过Pt / Al2O3 + Cs2.5,初始活性降低。这表明正丁烷在Pt / Al2O 3 + Cs2.5上的加氢异构化反应是通过双功能机理进行的,其中正丁烷在Pt位上氢化/脱氢,然后在Pt / Al2O 3 + Cs2.5的酸位上异构化。 Cs2.5。对于正丁烷在Pt / Al 2 O 3 + Cs2.5上的加氢异构化反应,在低Pt负载下,Pt位上的加氢/脱氢是一个限制步骤。固体酸位点上的异构化是高Pt负载的限制步骤。在反应过程中,氢分子在Pt位点解离为活性氢原子,然后形成的活性氢原子移至Cs2.5的固体酸位(溢出效应)以消除碳质沉积物并抑制催化剂失活。由于Cs2.5具有适当强且均匀分布的固体酸位,因此Pt / Al 2 O 3 + Cs2.5的固定活性高于Pt / Al 2 O 3 + H-ZSM-5和Pt / Al 2 O 3 + SO 4 / ZrO 2 在低H 2 压力下进行正丁烷的加氢异构化。

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