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Featured researches published by J. Mijoin.


Catalysis Letters | 2001

Mechanistic considerations on the involvement of dihydrointermediates in the hydrodesulfurization of dibenzothiophene-type compounds over molybdenum sulfide catalysts

J. Mijoin; G. Perot; F. Bataille; J.L. Lemberton; Michele Breysse; Slavik Kasztelan

The mechanism of the hydrodesulfurization of dibenzothiophene-type compounds involving their dihydroderivatives as intermediates was examined in the light of previous experimental results dealing with the effect of cobalt and nickel promoters on the selectivity of the reaction. It is suggested that the orientation of the hydrodesulfurization reaction regarding the so-called “direct desulfurization” or “hydrogenation” pathways depends on various factors: the distribution of the dihydrointermediates (two of them only among nine possible isomers can lead directly from dibenzothiophene to biphenyl); the availability of dissociated hydrogen on the catalytic centers on which they adsorb and the basicity of the sulfur anions associated to the catalytic centers.


Catalysis Letters | 2018

Highly Efficient Dehydration of Glycerol to Acrolein Over Isomorphously Substituted Fe-MFI Zeolites

Modibo Mounguengui Diallo; Sébastien Laforge; Yannick Pouilloux; J. Mijoin

Gas phase dehydration of glycerol formerly in aqueous solution to acrolein was studied over iron MFI zeolites prepared by post-synthesis isomorphous substitution with different iron contents, Si/Al and substitution ratios. High Si/Al (60) ratios led to high conversion in presence of air and the insertion of iron in the zeolite framework greatly improved the catalytic performances by altering the amount and the nature of the coke components reducing dramatically the deactivation. Over the most efficient sample, acrolein yield reached a stabilized value of 68% with an excellent selectivity (80%), which ranked this catalyst among the best for the selective conversion of crude glycerol.Graphical Abstract


Catalysis Today | 2007

Catalytic oxidation of volatile organic compounds (VOCs) mixture (isopropanol/o-xylene) on zeolite catalysts

R. Beauchet; P. Magnoux; J. Mijoin


Journal of Catalysis | 2003

Oxidation of chlorinated hydrocarbons over Pt zeolite catalysts 1-mechanism of dichloromethane transformation over PtNaY catalysts

L. Pinard; J. Mijoin; P. Magnoux; M. Guisnet


Applied Catalysis B-environmental | 2007

Volatile organic compounds (VOCs) removal over dual functional adsorbent/catalyst system

Marianne Guillemot; J. Mijoin; Samuel Mignard; P. Magnoux


Applied Catalysis B-environmental | 2005

Catalytic destruction of chlorinated POPs—Catalytic oxidation of chlorobenzene over PtHFAU catalysts

M. Taralunga; J. Mijoin; P. Magnoux


Applied Catalysis B-environmental | 2004

On the mechanism of the catalytic destruction of dichloromethane over Pt zeolite catalysts

Ludovic Pinard; J. Mijoin; P. Ayrault; C. Canaff; P. Magnoux


Catalysis Communications | 2006

Catalytic destruction of 1,2-dichlorobenzene over zeolites

M. Taralunga; J. Mijoin; P. Magnoux


Journal of Catalysis | 2012

Bifunctional mechanism of dichloromethane oxidation over Pt/Al2O3: CH2Cl2 disproportionation over alumina and oxidation over platinum

Irène Maupin; L. Pinard; J. Mijoin; P. Magnoux


Applied Catalysis B-environmental | 2007

Catalytic combustion of benzofuran and of a benzofuran/1,2 -dichlorobenzene binary mixture over zeolite catalysts

M. Taralunga; B. Innocent; J. Mijoin; P. Magnoux

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P. Magnoux

University of Poitiers

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P. Magnoux

University of Poitiers

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R. Beauchet

University of Poitiers

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G. Perot

University of Poitiers

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L. Pinard

University of Poitiers

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