Published July 16, 2021 | Version v1

Interplay of metal-acid balance and methylcyclohexane admixture effect on n-octane hydroconversion over Pt/HUSY

  • 1. Laboratory for Chemical Technology, Ghent University, Technologiepark 125, B-9052 Ghent, Belgium
  • 2. Industrial Adsorption and Catalysis Technology, Ghent University, Valentin Vaerwyckweg 1, B-9000 Ghent, Belgium

Description

This repository includes characterization data (H2-O2 titration and N2 adsorption t-plot) associated with the publication: N.Korica, P.S.F.Mendes, J.De Clercq, J.W.Thybaut "Interplay of metal-acid balance and methylcyclohexane admixture effect on n-octane hydroconversion over Pt/HUSY", submitted to Industrial & Engineering Chemistry Research journal in May 2021.

The impact of methylcyclohexane admixture on n-octane hydroconversion (isomerization and cracking) has been studied by experiments performed on high-throughput setup over Pt/HUSY catalyst with four different Pt loadings. The dispersion of platinum over HUSY zeolite was determined by  H2-O2 titration, while the specific surface area was determined by t-plot N2 adsorption. These data are classified based on the platinum loading and the characterization method.

0.5wt.%Pt (H2-O2 titration) : The dispersion of 0.5wt.%Pt/HUSY

0.5wt.%Pt (N2 ads t-plot) : The specific surface area of 0.5wt.%Pt/HUSY

0.1wt.%Pt (H2-O2 titration) : The dispersion of 0.1wt.%Pt/HUSY

0.1wt.%Pt (N2 ads t-plot) : The specific surface area of 0.1wt.%Pt/HUSY

0.07wt.%Pt (H2-O2 titration) : The dispersion of 0.07wt.%Pt/HUSY

0.07wt.%Pt (N2 ads t-plot) : The specific surface area of 0.07wt.%Pt/HUSY

0.04wt.%Pt (H2-O2 titration) : The dispersion of 0.04wt.%Pt/HUSY

0.04wt.%Pt (N2 ads t-plot) : The specific surface area of 0.04wt.%Pt/HUSY

 

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Is supplement to
Journal article: 10.1021/acs.iecr.1c01775 (DOI)