A shrinking core model and empirical kinetic approaches in supercritical CO2 extraction of safflower seed oil

被引:18
作者
Ayas, Nezihe [1 ]
Yilmaz, Ozlem [1 ]
机构
[1] Anadolu Univ, Fac Engn, Dept Chem Engn, TR-26470 Eskisehir, Turkey
关键词
Carthamus tinctorius L; Supercritical fluid extraction; Experimental design; Optimization; Modeling; Shrinking core model; CARBON-DIOXIDE EXTRACTION; FLUID EXTRACTION; MASS-TRANSFER; FATTY-ACIDS; OPTIMIZATION; PARAMETERS; STABILITY;
D O I
10.1016/j.supflu.2014.06.019
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Utilization of supercritical CO2 in safflower seed extraction was performed using a semi-batch extractor. Different extraction parameters, such as 40-60 MPa pressure, 323-347 K temperature, 20-76 min time, and 1-3 mL/min CO2 flow rate were applied. A two-stage experimental design application was performed in order to maximize the oil yield. First of all, a 3(2) factorial design was applied to estimate the effect of the main factors and their interactions. The second part of the experimental design was improved and accelerated using the steepest ascent method. Optimum extraction parameters were determined to be 50 MPa pressure, 347 K temperature and 76 min time at a constant CO2 flow rate (3 mL/min) according to the 2(2) design. Under these conditions, the oil yield obtained was 39.42%, comparable with Soxhlet extraction (40%) for 8 h. Shrinking core and empirical kinetic models were applied in order to generalize the extraction process. The predicted data was compatible with the experimental data. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:81 / 90
页数:10
相关论文
共 57 条
[1]   Extraction and modeling of lavender flower essential oil using supercritical carbon dioxide [J].
Akgün, M ;
Akgün, NA ;
Dinçer, S .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2000, 39 (02) :473-477
[2]  
Akinerdem F., 2008, Safflower: unexploited potential and world adaptability. 7th International Safflower Conference, Wagga Wagga, New South Wales, Australia, 3-6 November, 2008., P1
[3]  
Al-Asheh S., 2012, Natural Science, V4, P544, DOI 10.4236/ns.2012.48072
[4]   Determination of sulfonylurea herbicides in soil samples via supercritical fluid extraction followed by nanostructured supramolecular solvent microextraction [J].
Asiabi, Hamid ;
Yamini, Yadollah ;
Moradi, Morteza .
JOURNAL OF SUPERCRITICAL FLUIDS, 2013, 84 :20-28
[5]  
Azcan N, 2012, ASIAN J CHEM, V24, P1499
[6]   The effects of both preparation method and season on the supercritical extraction of ginger [J].
Balachandran, S ;
Kentish, SE ;
Mawson, R .
SEPARATION AND PURIFICATION TECHNOLOGY, 2006, 48 (02) :94-105
[7]   Moisture dependent physical and compression properties of safflower seed [J].
Baümler, E ;
Cuniberti, A ;
Nolasco, SM ;
Riccobene, IC .
JOURNAL OF FOOD ENGINEERING, 2006, 72 (02) :134-140
[8]   Modeling the supercritical fluid extraction of hazelnut and walnut oils [J].
Bernardo-Gil, M. Gabriela ;
Casquilho, Miguel .
AICHE JOURNAL, 2007, 53 (11) :2980-2985
[9]   Mathematical model of supercritical extraction applied to oil seed extraction by CO2 plus saturated alcohol -: I.: Desorption model [J].
Cocero, MJ ;
García, J .
JOURNAL OF SUPERCRITICAL FLUIDS, 2001, 20 (03) :229-243
[10]  
Coșge B., 2007, International Journal of Natural and Engineering Sciences, V1, P11