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Mathematical modeling and mass transfer considerations in supercritical fluid extraction of Posidonia oceanica residues

   Pilavtepe, Muge; Yesil-Celiktas, Ozlem

Posidonia oceanica residues were extracted with supercritical CO2 in order to isolate phenolic compounds. The process was optimized by developing a mathematical model based on mass transfer mechanism consisting of adsorption of supercritical fluid on the solid particles, desorption of solute and convective transfer of solute phase along the column. Henry relation between solute concentrations on the surface of the solid (Cs) and in the solid (q) was approximated in order to describe the adsorption/desorption equilibrium. The model parameters such as solid-liquid film mass transfer coefficient (kf), molecular diffusivity coefficient (D-AB) and axial dispersion (D-ax) were estimated using empirical methods. The linear driving force model was applied to improve the yield of total phenolic acid recovery. The optimum parameters were elicited as 25 MPa, 323.15 K and a co-solvent mass ratio of 20% yielding 34.97 mu g per gram of dry feed and the model satisfactorily described the extraction yield which can be used for scale-up purposes. (C) 2013 Elsevier B.V. All rights reserved.

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