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   Supercritical Fluid Extraction of Carotenoid From Microalgae With Projected Thermodynamic Models  
   
نویسنده Davarnejad R. ,Kassim K.M. ,Zainal A. ,Sata S.A.
منبع International Journal Of Engineering - 2008 - دوره : 21 - شماره : 2 - صفحه:117 -126
فایل تمام متن
چکیده    In this study, two thermodynamic models (regular solution theory and equation of state)were applied to obtain carotenoid solubility in the supercritical carbon dioxide solvent. theoreticaldata obtained from the models were compared with the experimental data extracted from a publishedpaper. the use of equation of state as an empirical correlation for collating and predicting liquidliquidand liquid-dense tluid equilibrium is discussed. it is concluded that the estimation of someparameters required for these calculations would be difficult if the solute (carotenoid) was a complexsubstance in which little information was known, apart from its structural formula. an alternativeprocedure is to apply activity coefficient expression of the regular solution equations for each phase.calculations along these lines are described and the physical basis for applying these methods underthe relevant conditions was also presented. the regular solution theory approach in particular hasbeen found to be encouraging for the mutual miscibility calculations for heavy components (such ascarotenoid) particularly substances that are sensitive to temperature, though the interaction parametersfor the prediction activity coefficients must be regarded as pressure dependent.
کلیدواژه Activity Coefficient ,Carotenoid ,Equation Of State ,Prediction ,Regular SolutionTheory ,Solubility
آدرس University Science Malaysia, School Ofchemical Engineering, Engineering Campus, Malaysia, University Science Malaysia, School Ofchemical Engineering, Engineering Campus, Malaysia, University Science Malaysia, School Ofchemical Engineering, Engineering Campus, Malaysia, University Science Malaysia, School Ofchemical Engineering, Engineering Campus, Malaysia
پست الکترونیکی chzahmad@eng.usm.my
 
     
   
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