ChemCatChem · 2014 · 18 citations · 39 references
EngineeringOrganic ChemistryChemistryCatalyst ActivationChemical EngineeringFatty AcidsPalladium Active SitesAlcohol DehydrogenasesAldehyde DehydrogenaseBiochemistryBiocatalysisCatalysisCatalytic SynthesisBiomolecular EngineeringCatalyst InhibitionNatural SciencesHeterogeneous CatalysisMetabolismDouble BondsDeoxygenationCarbonyl Metabolism
Abstract Catalytic deoxygenation of unsaturated fatty acids in the absence of H 2 is known to suffer from significant catalyst inhibition. Thus far, no conclusive results have been reported on the cause of deactivation. Here we show that CC double bonds present in the feed or the products dramatically reduce the deoxygenation activity of supported palladium catalysts. In the case of stearic acid deoxygenation the addition of 0.1 equivalents of a mono‐unsaturated fatty acid or olefin already reduces the catalytic deoxygenation activity by 60 %. This effect becomes more pronounced with an increasing number of double bonds. The inhibition is shown to be reversible in H 2 atmosphere, indicating no significant contribution from irreversibly deposited hard coke. Furthermore, the type of support material has no apparent effect on catalyst inhibition. Hence we propose that initial catalyst inhibition proceeds through reversible adsorption of CC double bonds on the palladium active sites.
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Adsorption of hydrogen on palladium single crystal surfaces
H. Conrad, G. Ertl, E.E. Latta · Surface Science · 1974 · 690 citations
Hydrocarbons for diesel fuel via decarboxylation of vegetable oils
Iva Kubičková, Mathias Snåre, Kari Eränen et al. · Catalysis Today · 2005 · 397 citations
Catalytic Deoxygenation of Fatty Acids and Their Derivatives
Päivi Mäki‐Arvela, Iva Kubičková, Mathias Snåre et al. · Energy & Fuels · 2006 · 354 citations
Chemical Engineering, Catalytic Deoxygenation, Engineering +14