从废弃物中挖掘价值:使用氯化胆碱型天然深层共晶溶剂的橙皮萃取方法比较研究

IF 2.6 Q2 FOOD SCIENCE & TECHNOLOGY ACS food science & technology Pub Date : 2024-09-03 DOI:10.1021/acsfoodscitech.4c00476
Clara Gomez-Urios, Pablo Puchades-Colera, Ana Frigola, Daniel Lopez-Malo, Maria J. Esteve, Jesus Blesa
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摘要

在从植物副产品中提取生物活性化合物的过程中,绿色化学是食品工业的一个基本方面,它通过利用可持续的方法(如超声辅助提取(UAE))来提高食品安全。传统溶剂正在被绿色替代品取代,其中包括无毒且可生物降解的天然深共晶溶剂(NADES)。本研究的目的是比较使用 NADES 从橙皮中提取生物活性化合物的 UAE 和加热搅拌(HS)方法。将通过三种方法(氧自由基吸收能力(ORAC)、DPPH 和铁离子还原抗氧化能力(FRAP))对提取物的抗氧化能力(AC)进行比较,还将研究酚类概况,并评估提取化合物的稳定性。AC 结果表明,UAE 与 ChChl/Fruc 和 ChChl/LA 的产量高于 HS。FRAP 显示了 NADES 之间的差异,其中 ChChl/LP/MA 的含量最高。ORAC 法确定 ChChl/LP/MA 和 ChChl/LA 的效率最高。与 HS 相比,UAE 的提取率更高,尤其是咖啡酸和橙皮甙,ChChl/Fruc 和 ChChl/LA 是最佳的 NADES。在稳定性方面,除 ChChl/Fruc 外,HS 产生的 AC 比 UAE 更稳定。在 ChChl/LP/MA 和 ChChl/Gly 中,UAE 对酚类化合物的稳定性更好,而 HS 对 ChChl/LA 的有效性更高。总之,萃取方法和溶剂的选择对生物活性化合物的产量、稳定性和交流性都有影响。显然,应根据具体情况选择 NADES 和提取方法,以便在生物活性化合物的产量、AC 和长期稳定性之间取得最佳平衡。
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Unlocking Value from Waste: a Comparative Study of Orange Peel Extraction Methods Using Choline Chloride-Based Natural Deep Eutectic Solvents
Green chemistry is a fundamental aspect of the food industry in the extraction of bioactive compounds from plant byproducts, through the utilization of sustainable methodologies, such as ultrasound-assisted extraction (UAE), enhancing food safety. Conventional solvents are being replaced by green alternatives, including natural deep eutectic solvents (NADES), which are nontoxic and biodegradable. The objective of this study is to compare UAE with heating-stirring (HS) methods for the extraction of bioactive compounds from orange peels using NADES. The antioxidant capacity (AC) of the extracts will be compared by three methods [oxygen radical absorbance capacity (ORAC), DPPH, and ferric ion reducing antioxidant power (FRAP)], also the phenolic profile will be studied, and the stability of the extracted compounds will also be assessed. The AC results demonstrated that UAE yielded higher than HS with ChChl/Fruc and ChChl/LA. The FRAP revealed differences among NADES, with ChChl/LP/MA exhibiting the highest. ORAC method identified ChChl/LP/MA and ChChl/LA as the most efficient. The UAE showed higher extraction yield compared to HS, particularly for caffeic acid and hesperidin, where ChChl/Fruc and ChChl/LA where the best NADES. Concerning stability, HS yielded a more stable AC than UAE, except ChChl/Fruc. UAE demonstrated superior stability for phenolic compounds in ChChl/LP/MA and ChChl/Gly, whereas HS showed greater efficacy for ChChl/LA. In conclusion, the selection of extraction methods and solvents has a impact on the yield, stability, and AC of bioactive compounds. It is evident that the selection of NADES and extraction methods should be tailored to achieve an optimal balance between yield, AC, and long-term stability of the bioactive compounds.
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