Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7158824 | Energy Conversion and Management | 2018 | 12 Pages |
Abstract
Kinetic modeling and optimization of sunflower oil methanolysis catalyzed by spherically-shaped CaO/γ-Al2O3 particles were conducted in batch stirred and packed-bed tubular reactors at 60â¯Â°C. The proposed three-parameter kinetic model describing the overall reaction with a variable mechanism was successfully applied to both batch and continuous reactions. The process optimization was done using the response surface methodology combined with a central composite design. The obtained optimal catalyst concentration, methanol-to-oil molar ratio and reaction time for the batch reaction were 0.55% (CaO to the oil), 9:1 and 5.22â¯h, respectively. In the continuous process, the catalyst was highly active stable and slightly leachable during 30â¯h. The deactivation of the catalyst was due to massive deposition of the organic molecules from the reaction mixture, which sheltered the catalytically active sites on the catalyst surface.
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Authors
Dalibor M. MarinkoviÄ, Marija R. MiladinoviÄ, Jelena M. AvramoviÄ, Ivan B. KrstiÄ, Miroslav V. StankoviÄ, Olivera S. StamenkoviÄ, DuÅ¡an M. JovanoviÄ, Vlada B. VeljkoviÄ,