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Title Sustainable Green Extraction of Carotenoid Pigments: Innovative Technologies and Bio-Based Solvents
ID_Doc 9415
Authors Morón-Ortiz, A; Mapelli-Brahm, P; Meléndez-Martínez, AJ
Title Sustainable Green Extraction of Carotenoid Pigments: Innovative Technologies and Bio-Based Solvents
Year 2024
Published Antioxidants, 13.0, 2
DOI 10.3390/antiox13020239
Abstract Carotenoids are ubiquitous and versatile isoprenoid compounds. The intake of foods rich in these pigments is often associated with health benefits, attributable to the provitamin A activity of some of them and different mechanisms. The importance of carotenoids and their derivatives for the production of foods and health-promotion through the diet is beyond doubt. In the new circular economy paradigm, the recovery of carotenoids in the biorefinery process is highly desirable, for which greener processes and solvents are being advocated for, considering the many studies being conducted at the laboratory scale. This review summarizes information on different extraction technologies (ultrasound, microwaves, pulsed electric fields, pressurized liquid extraction, sub- and supercritical fluid extraction, and enzyme-assisted extraction) and green solvents (ethyl lactate, 2-methyltetrahydrofuran, natural deep eutectic solvents, and ionic liquids), which are potential substitutes for more toxic and less environmentally friendly solvents. Additionally, it discusses the results of the latest studies on the sustainable green extraction of carotenoids. The conclusions drawn from the review indicate that while laboratory results are often promising, the scalability to real industrial scenarios poses a significant challenge. Furthermore, incorporating life cycle assessment analyses is crucial for a comprehensive evaluation of the sustainability of innovative extraction processes compared to industry-standard methods.
Author Keywords 2-methyltetrahydrofuran; ethyl lactate; ionic liquids; microwaves; natural deep eutectic solvents; pressurized liquid extraction; pulsed electric fields; subcritical fluid extraction; supercritical fluid extraction; ultrasounds
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:001169865500001
WoS Category Biochemistry & Molecular Biology; Chemistry, Medicinal; Food Science & Technology
Research Area Biochemistry & Molecular Biology; Pharmacology & Pharmacy; Food Science & Technology
PDF https://www.mdpi.com/2076-3921/13/2/239/pdf?version=1708010759
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