Vanadium oxide supported on mesoporous SBA-15 modified with AI and Ga as a highly active catalyst in the ODS of DBT.
Date
2017
Journal Title
Journal ISSN
Volume Title
Publisher
Universidad Tecnológica Nacional.
Abstract
Vanadium pentoxide supported on mesoporous SBA-15 catalysts with different
vanadium loadings were studied in the oxidative desulfurization (ODS) of
dibenzothiophene as a model sulfur compound. The catalytic activity was improved when
SBA-15 framework was modified with Al and Ga as heteroatom substituting Si.
Structural and textural characterization of the catalysts were performed by means of XRD,
N2 adsorption, UV–Vis–DRS, XPS, NMR, TEM, Raman, TPR and Py-FTIR. UV–Vis–
DRS and Raman demonstrated that highly dispersed vanadium pentoxide crystallites are
responsible for the high activity in the sulfur removal. The high dispersion depends on
the vanadium loading and on the nature of the support. The more acidic support allowed
better dispersion of the vanadium species. The Ga modified support with an intermediate
V/Si ratio of 1/30 was the most active catalyst for ODS of DBT, using hydrogen peroxide
(H2O2) as oxidant and acetonitrile as solvent. 100% of DBT elimination was attained at a
short time in mild conditions. Gallium and aluminum incorporation into the support
modified successfully the nature of the SBA-15 surface by generating Bronsted and Lewis
acidity. The interaction between the acid sites with the active vanadium sites improved
the activity of the catalysts. The reusability of the catalysts indicates that vanadium oxide
supported on mesoporous SBA-15 modified with Ga and Al are potential catalysts for the
ODS of dibenzothiophene.
Description
Keywords
VOx supported SBA-15, Dibenzothiophene, Ultra-low-sulfur diesel, Deactivation, Gallium, Aluminum
Citation
Elsevier- Microporous and Mesoporous Materials Volume 254, 2017.
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