4.2 Article

Liquid-phase hydrogenation of methyl oleate on a Ni/α-Al2O3 catalyst:: A study based on kinetic models describing extreme and intermediate adsorption regimes

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JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL
卷 260, 期 1-2, 页码 269-279

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ELSEVIER SCIENCE BV
DOI: 10.1016/j.molcata.2006.07.042

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hydrogenation; methyl oleate; kinetic models; competitive adsorption; semi-competitive adsorption; non-competitive adsorption

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The kinetics of the hydrogenation of methyl oleate on a Ni/alpha-Al2O3 catalyst was studied in the absence of mass-transport limitation, at 398 <= T <= 443 K and 3.7 <= P-H2 <= 6.5 bar. The kinetic modeling was performed on the basis of elementary step mechanisms involving different regimes of competition between hydrogen and methyl oleate. Admitting a distinction between occupied-sites and covered-sites by the large molecule of methyl oleate, a rigorous proposal was made to link the seemingly separate kinetic models corresponding to the extreme modes of competitive and non-competitive adsorption, without having to draw the common distinction between two types of surface sites. General rate equations were formulated without expressing opinion a priori on whether the adsorption regime is competitive or non-competitive. Then, typical LHHW rate equations for both extreme adsorption regimes were straightforwardly derived as special cases. Statistical results demonstrated the inadequacy of the models approaching non-competitive adsorption to describe the experimental data but results did not allow a definite discrimination between rival models with competitive and semi-competitive adsorption. A mechanistic model featuring dissociative adsorption of hydrogen, molecule of methyl oleate interacting with a single atom of Ni, and second insertion of hydrogen as RDS, proved to be the best candidate to describe the experimental data satisfactorily with physically reasonable parameters. As a distinctive feature, the model considering semi-competitive adsorption gave additional indication that the adsorbed molecule of methyl oleate could cover up to seven surface sites. From this finding, the semi-competitive model seems to be more realistic than the competitive one. (c) 2006 Elsevier B.V. All rights reserved.

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