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Advanced Concepts for the Kinetic Modeling of Fatty Acid Methyl Esters Hydrogenation

Cabrera, Maria Ines et al · De gruyter · 2008

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Kinetic studies of the catalytic hydrogenation of vegetable oils and fatty acid methyl esters in liquid-phase are commonly performed in the framework of the Langmuir-Hinshelwood-Hougen-Watson (LHHW) formalism using the competitive and non-competitive adsorption models, which are certainly extreme. Based on the advanced concepts of multicentered adsorption and semi-competitive adsorption, mechanistic kinetic models including a distinction between occupiedsites and covered-sites by the large molecules of FAMEs were formulated without expressing an opinion a priori on whether the adsorption regime is competitive or non- competitive. The theoretical basis of the advanced kinetic modeling is described and successfully applied to three application examples of increasing complexity, including: (a) the hydrogenation of methyl oleate without cis-trans isomerization distinction, (b) the cis-trans isomerization and hydrogenation of the methyl oleate, and (c) the methyl linoleate hydrogenation including the cis-trans isomerization of the methyl oleate. The kinetic studies were carried out using a Ni/-Al2O3, at 398, 413, 428 and 443 K, under isobaric conditions at hydrogen pressures of 370, 510, and 650 kPa, in the absence of mass-transport limitation. After model discrimination based on statistical analysis and taking into account the physical meaning of the estimated parameters, semi-competitive adsorption models were found to be more realistic than the classical LHHW competitive and non-competitive ones, mainly because they give additional information indicating that the adsorbed molecules of methyl linoleate and methyl oleate could cover up to 12 and 7 surface sites, respectively. These values are in adequate agreement with those expected from a rough computational simulation and seem to be the most interesting result, since they are factual and unattainable from the classical LHHW approaches.-Al2O3, at 398, 413, 428 and 443 K, under isobaric conditions at hydrogen pressures of 370, 510, and 650 kPa, in the absence of mass-transport limitation. After model discrimination based on statistical analysis and taking into account the physical meaning of the estimated parameters, semi-competitive adsorption models were found to be more realistic than the classical LHHW competitive and non-competitive ones, mainly because they give additional information indicating that the adsorbed molecules of methyl linoleate and methyl oleate could cover up to 12 and 7 surface sites, respectively. These values are in adequate agreement with those expected from a rough computational simulation and seem to be the most interesting result, since they are factual and unattainable from the classical LHHW approaches. Fil: Cabrera, Maria Ines. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Santa Fe. Instituto de Desarrollo Tecnológico para la Industria Química. Universidad Nacional del Litoral. Instituto de Desarrollo Tecnológico para la Industria Química; Argentina Fil: Grau, Ricardo José Antonio. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Santa Fe. Instituto de Desarrollo Tecnológico para la Industria Química. Universidad Nacional del Litoral. Instituto de Desarrollo Tecnológico para la Industria Química; Argentina

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APA 7

Cabrera, M. I. E. A. (2008). Advanced Concepts for the Kinetic Modeling of Fatty Acid Methyl Esters Hydrogenation. http://hdl.handle.net/11336/25347

MLA

Cabrera, Maria Ines et al. "Advanced Concepts for the Kinetic Modeling of Fatty Acid Methyl Esters Hydrogenation." 2008. http://hdl.handle.net/11336/25347.

Chicago

Cabrera, Maria Ines et al. 2008. "Advanced Concepts for the Kinetic Modeling of Fatty Acid Methyl Esters Hydrogenation.". http://hdl.handle.net/11336/25347.

Harvard

Cabrera, M. I. E. A. 2008, Advanced Concepts for the Kinetic Modeling of Fatty Acid Methyl Esters Hydrogenation, De gruyter, available at: http://hdl.handle.net/11336/25347 [Accessed 7 Aug. 2026].

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Titel
Advanced Concepts for the Kinetic Modeling of Fatty Acid Methyl Esters Hydrogenation
Autor / Mitwirkende
Cabrera, Maria Ines et al
Verlag
De gruyter
Erscheinungsjahr
2008
ISSN
1542-6580
ISSN
1542-6580
Sprache
Inglés

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