4.6 Article

Hydrophobic Eutectic Solvent with Antioxidant Properties: Application for the Dispersive Liquid-Liquid Microextraction of Fat-Soluble Micronutrients from Fruit Juices

期刊

ACS SUSTAINABLE CHEMISTRY & ENGINEERING
卷 9, 期 24, 页码 8170-8178

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acssuschemeng.1c01473

关键词

deep eutectic solvents; dispersive liquid-liquid microextraction; vitamins; carotenoids; antioxidant activity; menthol; butylated hydroxytoluene; recycling

资金

  1. Sapienza University [AR118164361EF599]

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An ideal hydrophobic eutectic solvent based on L-menthol and butylated hydroxytoluene in a molar ratio of 3:1 was proposed and confirmed through physicochemical characterization. It showed intrinsic antioxidant activity and was efficient in extracting and preserving easily oxidizable lipophilic compounds. The solvent was successfully utilized for the dispersive liquid-liquid microextraction of carotenoids and fat-soluble vitamins from fruit juices.
Despite the great interest devoted to eutectic solvents with significant negative deviations from ideality (namely, deep eutectic solvents), many hydrophobic liquid mixtures are ideal or quasi-ideal systems. In this regard, we propose the introduction of a hydrophobic eutectic solvent based on L-menthol and butylated hydroxytoluene, blended in a molar ratio of 3:1. The physicochemical characterization by means of differential scanning calorimetry and infrared spectroscopy has identified that it is an ideal eutectic solvent. Compared to other hydrophobic mixtures, this one represents an advanced solvent system due to its intrinsic antioxidant activity, which makes it an ideal green choice for the extraction and preservation of easily oxidizable lipophilic compounds. In order to evaluate its efficiency, it was applied for the first time as an extractant for the dispersive liquid-liquid microextraction of carotenoids and fat-soluble vitamins from fruit juices, carried out at 298 K. All extracts were analyzed by high-performance liquid chromatography-tandem mass spectrometry. The developed method was then validated, providing precise (4-8%) and accurate (4-6%) results on a commercial fruit juice containing declared values of beta-carotene and a-tocopherol acetate. Recoveries were >= 70%, while the detection limits were 0.05 mu g L-1 for beta-carotene and 0.28 mu g L-1 for alpha-tocopherol acetate. Here, we also propose an original approach to properly determine the antioxidant activity of eutectic mixtures since the available commercial kits cannot be applied to such systems without altering their nature. Last but not least, a circular process of reuse of this ideal eutectic solvent has been developed using a low-cost activated carbon material obtained from coconut shells.

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