Journal
FOOD AND BIOPRODUCTS PROCESSING
Volume 102, Issue -, Pages 340-349Publisher
INST CHEMICAL ENGINEERS
DOI: 10.1016/j.fbp.2017.02.002
Keywords
Industrial tomato peels; Supercritical CO2 extraction; Lycopene; beta-carotene; DPPH antiradical activity; Statistical models
Funding
- European Union within the PASRI program
- Ministry of Higher Education and Scientific Research, Tunisia
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Lycopene and (beta-carotene were extracted as oleoresin from a Tunisian industrial tomato peels by-product using supercritical CO2. Experiments were conducted at temperatures of 50-80 degrees C, pressures of 300-500 bar and flow rates of 3-6 g CO2/min for 105 min extraction time. The relative extraction yields varied from 32.02% to 60.85% for lycopene and from 28.38% to 58.8% for (beta-carotene and only the extraction temperature had a statistically significant effect on the process. The supercritical fluid extraction of lycopene from tomato peels by-product was compared to conventional maceration extraction using hexane, ethyl acetate and ethanol. Besides, the influence of the supercritical CO2 extraction conditions on the extract antioxidant capacity was evaluated using the quenching activity of the free chromogenic radical, 2,2-dipheny1-1-picrylhydrazyl (DPPH). Important correlation coefficients and models were determined to predict the oleoresin, lycopene and beta-carotene extraction yields and the relevant DPPH quenching activity as function of the SFE operation parameters. Interestingly, the supercritical CO2 extracted oleoresin exhibited competitive antiradical activity with the synthetic antioxidant, butylated hydroxytoluene (BHT). Results showed that the Tunisian industrial tomato peels by-product is a potential source of high antioxidative, solvent free and lycopene and (beta-carotene-enriched oleoresin with promising applications in food and pharmaceutical industries. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
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