Extraction of corn germ oil with supercritical CO2 and cosolvents

被引:0
作者
Carolina Messias Marinho
Caroline Ortega Terra Lemos
Sarah Arvelos
Marcos Antonio de Souza Barrozo
Carla Eponina Hori
Érika Ohta Watanabe
机构
[1] Universidade Federal de Uberlândia,Faculdade de Engenharia Química
来源
Journal of Food Science and Technology | 2019年 / 56卷
关键词
Corn germ oil; Extraction; Supercritical fluids; Cosolvents; Separation processes;
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学科分类号
摘要
The aim of this work was to investigate corn germ oil extraction using supercritical CO2 and cosolvents addition (hexane, acetone and ethanol). The effects of temperature (45–85 °C) and pressure (15–25 MPa) on the extract yield were evaluated for the tests conducted only with supercritical CO2. The addition of cosolvents to supercritical CO2 was also examined at 25 MPa and 60 °C. The conventional Soxhlet extraction with different organic solvents was also performed for comparison purposes. The results of extraction with supercritical fluid showed that the yields increased with pressure at each temperature, but decreased with temperature increase. Mathematical modeling was applied to describe extraction curves, with very good fits. The addition of cosolvents led to higher yield, with a maximum yield of 13.81% using ethanol. The analysis of fatty acids profile did not present significant differences among the evaluated methods. On the other hand, the antioxidant activity of the extracts obtained by supercritical CO2 extraction was higher than the ones verified for the extracts collected after conventional Soxhlet extraction. Therefore, the use of supercritical CO2 extraction could be an interesting way to preserve antioxidant properties of this oil in order to use it for pharmaceutical purposes.
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页码:4448 / 4456
页数:8
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  • [21] Czaplicki S(2012)) extracts obtained by organic solvents and supercritical fluids J Supercrit Fluids 72 270-277
  • [22] Dal Prá V(1998)Soxhlet extraction: past and present panacea J Supercrit Fluids 14 75-81
  • [23] Soares JF(2014)Multicomponent model to describe extraction of ginger oleoresin with supercritical carbon dioxide J Food Sci Technol 51 2197-2203
  • [24] Monego DL(2006)Extraction of sunflower ( J Supercrit Fluids 38 326-331
  • [25] Dalmolin I(2017) L.) oil with supercritical CO Food Bioprod Process 107 25-35
  • [26] Mazutti MA(2008) and subcritical propane: experimental and modeling J Supercrit Fluids 47 182-187
  • [27] Batista EAC(1994)Supercritical carbon dioxide extraction of hazelnut oil Chem Eng Sci 49 409-414
  • [28] Garmus TT(2017)Extraction of canola seed ( J Food Sci Technol 54 1286-1292
  • [29] Paviani LC(2014)) oil using compressed propane and supercritical carbon dioxide Sep Purif Technol 133 443-451
  • [30] Queiroga CL(undefined)Extraction of pequi ( undefined undefined undefined-undefined