Title of article
Activation of n-octane using vanadium oxide supported on alkaline earth hydroxyapatites Original Research Article
Author/Authors
Venkata D.B.C. Dasireddy، نويسنده , , Sooboo Singh، نويسنده , , Holger B. Friedrich، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
13
From page
105
To page
117
Abstract
Vanadium pentoxide was supported on calcium, strontium, magnesium and barium hydroxyapatite with loadings of 2.5 and 10 wt% by the wet impregnation technique. The materials were characterized by XRD, ICP-OES, BET, FTIR, SEM, TEM, TPR and TPD. From XRD and IR analyses, vanadium is found in the vanadium pentoxide phase for the 2.5 wt% loadings, whereas an additional pyrovanadate phase exists for the 10 wt% loadings. Electron microscopy provides evidence of a homogenous distribution of the vanadium species on the hydroxyapatite. Oxidative dehydrogenation reactions carried out in a continuous flow fixed bed reactor showed that selectivity towards desired products was dependent on the phase composition of the catalyst and the n-octane to oxygen molar ratios. For the n-octane to oxygen molar ratio of 1:0.5, selectivity towards aromatics and octenes was obtained, whereas the n-octane to oxygen molar ratio of 1:2 showed selectivity towards aromatics and oxygenates. Good selectivity towards octenes was achieved using the 2.5 wt% V2O5 loaded hydroxyapatite catalysts. There was a marked decrease in octene selectivity and a significant increase in the formation of C8 aromatics when the 10 wt% loaded catalyst was used. In general, for the activation of n-octane, 3-octene in the octenes, o-xylene in the aromatics and 2-octanone in the oxygenates were the major products. At iso-conversion of 27% at 450 °C, V2O5 supported Ca-HAp showed highest selectivity towards octenes, V2O5 supported Sr-HAp showed highest selectivity towards aromatics, V2O5 supported Mg-HAp showed highest selectivity towards oxygenates and V2O5 supported Ba-HAp showed selectivity towards aromatics and oxygenates.
Keywords
Hydroxyapatite , Octenes , Oxidative dehydrogenation , o-xylene , V2O5 , n-Octane
Journal title
Applied Catalysis A:General
Serial Year
2013
Journal title
Applied Catalysis A:General
Record number
1157372
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