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Thioreduction of cyclopentanone and hydrodesulfurization of dibenzothiophene over sulfided nickel or cobalt-promoted molybdenum on alumina catalysts
Authors:J. Mijoin   V. Th  venin   N. Garcia Aguirre   H. Yuze   J. Wang   W. Z. Li   G. P  rot  J. L. Lemberton
Affiliation:

a Laboratoire de Catalyse en Chimie Organique, UMR 6503, UFR Sciences, 40 avenue du Recteur Pineau 86022 Poitiers Cedex France

b Research Institute of Petroleum Processing 100083 Beijing China

c Dalian Institute of Chemical Physics, Chinese Academy of Sciences 116023 Dalian China

Abstract:Two series of sulfided Ni or Co promoted Mo/alumina catalysts, having different Ni or Co loadings, were characterized by their activities for the transformation of cyclopentanone into cyclopentanethiol (flow reactor, 220°C, atmospheric pressure) and for the hydrodesulfurization of dibenzothiophene (flow reactor, 340°C, 3 MPa hydrogen pressure). The addition of the promoter increased significantly the activity of the Mo/alumina catalyst for both reactions, up to a maximum obtained with the catalysts having a (promoter)/(promoter+Mo) molar ratio equal to 0.3–0.4. This increase in activity was due in part to an increase in the hydrogenating properties of the Mo/alumina catalyst. However, an additional modification of the catalyst (basic and nucleophilic properties) must be considered to account for the spectacular effect of the promoter on the rate of the dibenzothiophene direct desulfurization reaction.
Keywords:Nickel–molybdenum sulfides   Cobalt–molybdenum sulfides   Cyclopentanone   Cyclopentanethiol   Dibenzothiophene   Hydrodesulfurization
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