新型绿色溶剂:天然深共晶溶剂 (NADES) 的合成与表征:应用于提取花青素的水-两相体系 (ATPS)

Adityanindran Mahaindran, Xiaon Qin Meng, L. H. Tee, B. L. Chua, Kai Siang Oh
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引用次数: 0

摘要

据说花青素具有抗糖尿病、抗癌、抗炎、抗菌和抗肥胖的作用。花青素提取方法的改进备受重视,其中之一就是通过水基两相系统(ATPS)提取。水液两相萃取系统是一种液-液萃取方法,它有许多优点,如易于规模化、回收率高。不过,水液两相萃取法也有缺点,因为它使用有机溶剂和生物降解性低的离子液体。在这种情况下,天然深共晶溶剂(NADES)价格低廉、环保,可用于水性两相体系。因此,本研究旨在探索 NADES-ATPS 在提取和纯化花青素中的可行性。本研究将对花青素的溶解性进行调查,并从密度、粘度和极性方面对 NADES 进行表征,以筛选出适合用于提取花青素的 NADES。为此,制备并筛选了 6 种不同摩尔比的 NADES,如氢键受体(HBA)与氢键供体(HBD)之比为 1:1、1:2 和 1:3。以氯化胆碱为 HBA,丙二酸、乳酸、甘油、抗坏血酸、尿素和柠檬酸为 HBD,制备了 NADES。10% 花青素的溶解度范围为 0.60×10-2 g/g 至 1.81×10-2g/g。花青素在 NADES 中的溶解度与 NADES 的粘度和极性相关,溶解度与极性呈正相关。溶解度的变化趋势与粘度的变化趋势相似,但溶解度达到临界点时,溶剂粘度过高,无法在室温下使用。研究得出结论,丙二酸基 NADES 最适合用于使用 ATPS 提取花青素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Green Solvent: Synthesis and Characterization of Natural-Deep-Eutectic-Solvent (NADES) for Application on Aqueous-Two-Phase System (ATPS) for Extraction of Anthocyanin
Anthocyanins are said to possess antidiabetic, anticancer, anti-inflammatory, antimicrobial, and anti-obesity effects. There is lot of emphasis placed on the improvement of the methods for extracting anthocyanins; one of which being extraction via aqueous two-phase systems (ATPS). Aqueous two-phase system is a liquid-liquid extraction method that has many benefits like easy to scale up with high recovery yield. However, ATPS also has drawbacks as it utilizes organic solvents and low biodegradability ionic liquid. In this context, Natural Deep Eutectic Solvents (NADESs) which are inexpensive, eco-friendly can be employed in aqueous two-phase system. Thus, the purpose of this research is to explore the feasibility of NADES-ATPS in the extraction and purification of anthocyanins. This research will investigate the solubility of anthocyanins and characterize the NADESs in terms of density, viscosity, and polarity to screen out NADESs that are suitable to be used for the extraction of anthocyanins. To do this, 6 different types of NADES with different molar ration, such as 1:1,1:2 and 1:3 of hydrogen bond acceptor (HBA) to hydrogen bond donor (HBD) ratio, were prepared and screened. The NADES was prepared using choline chloride as HBA, and malonic acid, lactic acid, glycerol, ascorbic acid, urea, and citric acid as HBD. The solubility of 10% anthocyanin was found in a range of 0.60×10−2 g/g to 1.81×10−2g/g. The solubility of the anthocyanins in NADES was correlated to the viscosity and polarity of the NADES where it was seen that the solubility has a positive relationship with polarity. The solubility also showed a similar trend to the viscosity however up to critical point, upon which the solvent was too viscous and was unable to be utilized in room temperature. The research concludes that malonic acid-based NADES to be the most suitable to be utilized for the extraction of anthocyanin using ATPS.
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