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Simultaneous Separation of Antioxidants and Carbohydrates From Food Wastes Using Aqueous Biphasic Systems Formed by Cholinium-Derived Ionic Liquids

机译:使用由lin衍生的离子液体形成的水相双相系统,从食品垃圾中同时分离抗氧化剂和碳水化合物

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The food industry produces significant amounts of waste, many of them rich in valuable compounds that could be recovered and reused in the framework of circular economy. The development of sustainable and cost-effective technologies to recover these value added compounds will contribute to a significant decrease of the environmental footprint and economic burden of this industry sector. Accordingly, in this work, aqueous biphasic systems (ABS) composed of cholinium-derived bistriflimide ionic liquids (ILs) and carbohydrates were investigated as an alternative process to simultaneously separate and recover antioxidants and carbohydrates from food waste. Aiming at improving the biocompatible character of the studied ILs and proposed process, cholinium-derived bistriflimide ILs were chosen, which were properly designed by playing with the cation alkyl side chain and the number of functional groups attached to the cation to be able to create ABS with carbohydrates. These ILs were characterized by cytotoxicity assays toward human intestinal epithelial cells (Caco-2 cell line), demonstrating to have a significantly lower toxicity than other well-known and commonly used fluorinated ILs. The capability of these ILs to form ABS with a series of carbohydrates, namely monosaccharides, disaccharides and polyols, was then appraised by the determination of the respective ternary liquid-liquid phase diagrams at 25 °C. The studied ABS were finally used to separate carbohydrates and antioxidants from real food waste samples, using an expired vanilla pudding as an example. With the studied systems, the separation of the two products occurs in one-step, where carbohydrates are enriched in the carbohydrate-rich phase and antioxidants are mainly present in the IL-rich phase. Extraction efficiencies of carbohydrates ranging between 89% and 92% to the carbohydrate-rich phase, and antioxidant relative activities ranging between 65% and 75% in the IL-rich phase were obtained. Furthermore, antioxidants from the IL-rich phase were recovered by solid-phase extraction, and the IL was recycled for two more times with no losses on the ABS separation performance. Overall, the obtained results show that the investigated ABS are promising platforms to simultaneously separate carbohydrates and antioxidants from real food waste samples, and could be used in further related applications foreseeing industrial food waste valorization.
机译:食品工业产生大量废物,其中许多富含有价值的化合物,可以在循环经济的框架内进行回收和再利用。开发可回收这些增值化合物的可持续且具有成本效益的技术将有助于显着减少该行业的环境足迹和经济负担。因此,在这项工作中,研究了由胆碱衍生的双歧酰亚胺离子液体(ILs)和碳水化合物组成的双相水相体系(ABS),作为从食物垃圾中同时分离和回收抗氧化剂和碳水化合物的替代方法。为了改善所研究的ILs的生物相容性和拟议的工艺,选择了胆碱衍生的Bistriflimide ILs,这些ILs通过阳离子烷基侧链和连接到阳离子上的官能团的数量进行适当设计,从而能够生成ABS。与碳水化合物。这些ILs通过对人肠上皮细胞(Caco-2细胞系)的细胞毒性试验来表征,证明其毒性显着低于其他众所周知的和常用的氟化ILs。然后通过在25°C下确定各自的三元液相图来评估这些IL与一系列碳水化合物(即单糖,二糖和多元醇)形成ABS的能力。最后,以过期的香草布丁为例,研究的ABS最终用于从真实的食物垃圾样品中分离碳水化合物和抗氧化剂。使用研究的系统,两种产物的分离是一步完成的,其中碳水化合物富含碳水化合物,而抗氧化剂主要存在于富含IL的相中。获得了在富含碳水化合物的相中碳水化合物的萃取效率在89%到92%之间,并且在富含IL的相中抗氧化剂的相对活性在65%到75%之间。此外,通过固相萃取从富含IL的相中回收了抗氧化剂,并且IL进行了两次循环利用,而不会损失ABS分离性能。总体而言,所获得的结果表明,所研究的ABS是从真实的食物垃圾样品中同时分离碳水化合物和抗氧化剂的有前途的平台,并可用于预测工业食物垃圾价值的其他相关应用中。

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