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Non Monotonous Product Distribution Dependence on Pt/γ‐Al<sub>2</sub>O<sub>3</sub>−Cl Catalysts Formulation in <i>n</i>‐Heptane Reforming.

Olivier Said-Aizpuru, Ana T. F. Batista, Christophe Bouchy, Vittorio Petrazzuoli, Florent Allain, Fabrice Diehl, David Farrusseng, F. Morfin, J.P. Joly, Aurélie Dandeu

2020ChemCatChem13 citationsDOIOpen Access PDF

Abstract

Abstract The synthesis of 19 carefully selected Pt/γ‐Al 2 O 3 −Cl formulations was followed by high‐throughput catalytic testing in order to unravel the effect of an active phase formulation change on n ‐heptane reforming performances. Pt/γ‐Al 2 O 3 −Cl catalysts were prepared with different Pt (0.3–1 % wt ) and Cl (0.1–1.4 % wt ) contents and using two γ‐Al 2 O 3 supports so that both sites concentrations and sites locations at the crystallite surface vary among the catalyst pool. Catalytic tests were conducted in mild conditions for a comparison of catalysts in kinetic regime. Results show that Pt and Cl concentrations control the competition between hydroisomerisation, hydrogenolysis and hydrocracking pathways. Aromatisation, on the contrary, is poorly affected by formulation changes. Non‐monotonous trends linking Pt/Cl ratio to isomerisation selectivity are found for both γ‐Al 2 O 3 supports. This study provides new insights for the description of bi‐functional transformations in catalytic naphtha reforming.

Topics & Concepts

CatalysisHydrogenolysisNaphthaIsomerizationProduct distributionHeptaneSelectivityChemistryCatalytic reformingCrystalliteChemical engineeringOrganic chemistryCrystallographyEngineeringCatalysis and Hydrodesulfurization StudiesZeolite Catalysis and SynthesisCatalysis for Biomass Conversion
Non Monotonous Product Distribution Dependence on Pt/γ‐Al<sub>2</sub>O<sub>3</sub>−Cl Catalysts Formulation in <i>n</i>‐Heptane Reforming. | Litcius