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January 14, 2026Sustainability2 citationsOpen Access

Valorization of Carrot Processing Waste Through Lycopene Recovery and Development of Functional Oil-Enriching Agents

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MRMaría Celia RománMRMathías Riveros-GomezDZDaniela Zalazar-García

Key Points

  • The research aims to develop a sustainable method for recovering lycopene from carrot processing waste while generating functional food products.
  • Employed solvent-free lycopene extraction using optimized infrared dehydration and ultrasound-assisted extraction.
  • Utilized Box-Behnken design to optimize extraction conditions for maximum yield.
  • Analyzed drying kinetics and modeled moisture content removal using the Midilli model.
  • Achieved lycopene equivalent yields ranging from 3.07 to 5.00 mg/kg oil.
  • Sunflower and blended oils performed comparably under maximum sonication power.
  • Produced a functional lycopene-enriched oil and an exhausted carrot powder co-product with retained fiber.

Abstract

This study demonstrates a sustainable, integrated pathway for valorizing carrot processing by-products through solvent-free lycopene recovery. The approach combines optimized infrared dehydration with ultrasound-assisted extraction using edible oils. Drying kinetics were modeled at multiple temperatures, with the Midilli model providing the best fit (R2 > 0.99), enabling accurate prediction of moisture content removal while preserving bioactive compounds. Optimization via Box–Behnken design identified efficient extraction conditions (49.7–60 °C, 10 mL/g, 60 min), achieving lycopene equivalent (LE) yields of 3.07 to 5.00 mg/kg oil. Sunflower and blended oils showed comparable performance under maximum sonication power (240 W), with strong agreement between predicted and experimental yields. The process generated two valuable outputs: a functional lycopene-enriched oil and an exhausted carrot powder co-product, the latter retaining its crude fiber content despite other compositional changes. This research presents a scalable, green methodology that aligns with circular economy principles, transforming agro-industrial waste into functional food ingredients without organic solvents. Thus, the developed approach establishes a transferable model for the sustainable valorization of carotenoid-rich residues, contributing directly to greener food production systems. By providing a practical technological framework to convert waste into wealth, this work supports the fundamental transition toward a circular bioeconomy.

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Cite This Study

Román et al. (2026) studied this question.

synapsesocial.com/papers/6967193f87ba607552bb920ehttps://doi.org/10.3390/su18020789
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