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通过超声辅助技术从柑橘皮工业废料中简便提取浸提物、果胶和纤维素纳米晶体:深入研究。

Valorization of citrus peel industrial wastes for facile extraction of extractives, pectin, and cellulose nanocrystals through ultrasonication: An in-depth investigation.

机构信息

Department of Food Environmental and Nutritional Sciences (DeFENS), University of Milan (UNIMI), Milan, Italy.

Centre for Food Technology, Anna University, Chennai, India.

出版信息

Carbohydr Polym. 2024 Nov 15;344:122539. doi: 10.1016/j.carbpol.2024.122539. Epub 2024 Jul 23.

Abstract

In this work we developed an eco-friendly valorisation of Citrus wastes (CWs), through a solvent-assisted ultrasonication extraction technique, thus having access to a wide range of bio-active compounds and polysaccharides, extremely useful in different industrial sectors (food, cosmetics, nutraceutical). Water-based low-amplitude ultrasonication was examined as a potential method for pectin extraction as well as polar and non-polar citrus extractives (CEs), among which hesperidin and triglycerides of 18 carbon fatty acids were found to be the most representative ones. In addition, citric acid:glycerol (1:4)-based deep eutectic solvent (DES) in combination with ultrasonic extraction was utilized to extract microcellulose (CMC), from which stable cellulose nanocrystals (CNCs) with glycerol-assisted high amplitude ultrasonication were obtained. The physical and chemical properties of the extracted polysaccharides (pectin, micro and nanocellulose) were analysed through DLS, ζ-potential, XRD, HP-SEC, SEM, AFM, TGA-DSC, FTIR, NMR, and PMP-HPLC analyses. The putative structure of the extracted citrus pectin (CP) was analysed and elucidated through enzyme-assisted hydrolysis in correlation with ESI-MS and monosaccharide composition. The developed extraction methods are expected to influence the industrial process for the valorisation of CWs and implement the circular bio-economy.

摘要

在这项工作中,我们通过溶剂辅助超声提取技术对柑橘废物 (CWs) 进行了环保增值利用,从而获得了广泛的生物活性化合物和多糖,这些化合物和多糖在食品、化妆品、营养保健品等不同工业领域极具应用价值。我们研究了基于水的低振幅超声提取技术,作为提取果胶以及极性和非极性柑橘提取物 (CEs) 的潜在方法,其中橙皮苷和 18 碳脂肪酸的三酸甘油酯被发现是最具代表性的物质。此外,我们还利用柠檬酸:甘油 (1:4)-基深共晶溶剂 (DES) 与超声提取相结合,从其中提取出微纤维素 (CMC),然后通过甘油辅助的高振幅超声处理,从其中获得了稳定的纤维素纳米晶体 (CNC)。通过 DLS、ζ-电位、XRD、HP-SEC、SEM、AFM、TGA-DSC、FTIR、NMR 和 PMP-HPLC 分析,对提取的多糖(果胶、微纤维素和纳米纤维素)的物理和化学性质进行了分析。通过酶辅助水解并结合 ESI-MS 和单糖组成对提取的柑橘果胶 (CP) 的结构进行了分析和阐明。所开发的提取方法有望影响 CWs 的增值利用的工业过程,并实现循环生物经济。

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