4.5 Article

Evaluation of published kinetic models for tert-amyl ethyl ether synthesis

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.cep.2007.12.002

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Amberlyst-35; Gasoline additive; Kinetic model; Mass transfers; Mathematical modeling

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The published kinetic models for liquid phase synthesis of tert-anlyl ethyl ether (TAEE) by addition of ethanol to isoamylenes oil acidic ion exchange resins were evaluated by comparison with own experimental data. Fixed bed and batch reactor experiments were carried out in liquid phase oil Amberlyst-35 ion exchange resin as catalyst. Among the published kinetic models, our experimental data fits the best with the model published by [J.A. Linnekoski, A.O. Krause, L.K. Rihko, Kinetics of the heterogeneously catalyzed formation of tert-anlyl ethyl ether, Ind. Eng. Chem. Res. 36 (1997) 310-316.]. In the simulation study for the fixed bed reactor experiments, the influences of axial mixing, liquid-solid mass transfer and internal diffusion steps on the overall process kinetics were theoretically evaluated. The results evidenced that oil the working temperature domain, significant kinetic limitations by internal diffusion can appear for catalyst pellets size over 1 min. The external mass transfer step has a weak influence on the process kinetics and can be important only at lower limit of the flow rates domain. Our computations evidenced also a negligible influence of the axial mixing oil the reactants conversion in the experimental fixed bed reactor, oil the working domain investigated. (C) 2007 Elsevier B.V. All rights reserved.

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