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Extraction of polyphenolic antioxidants from orange peel waste using deep eutectic solvents

机译:深凝固溶剂从橙皮废物中取出多酚抗氧化剂

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Extraction of polyphenolic compounds from orange peel (OP) via solid-liquid extraction (SLE) using deep eutectic solvents (DES) was investigated in this work as a means to develop sustainable separation processes to recover natural antioxidants from food waste biomass. In particular, choline chloride-based DES paired with glycerol and ethylene glycol were explored as potential extractants to evaluate the effect of the solvent structure (i.e. number of hydroxyl groups and hydrogen bond acceptor/donor ratio) on the polyphenol extraction efficiency. Afterwards, the effect of different operating parameters (i.e. solvent concentration, temperature, time and solid/liquid ratio) were further evaluated to determine the optimal extraction conditions for polyphenols recovery in terms of total phenolic content (TPC) and antioxidant activity based on DPPH radical scavenging method. Under optimum conditions (DES 10 wt.% water, temperature of 333.15 K, 1:10 solid/liquid ratio and extraction time of 100 min), choline chloride-based DES outperformed the benchmark solvent (aqueous (aq.) ethanol 30 wt.% water) for the extraction of polyphenolic compounds from OP, with [Ch]Cl:EG 1:4 providing the highest TPC (3.61 mg gallic acid equivalent per gram of orange peel (GAE/g OP) and antioxidant potential (30.6 mu g/ml). Although ethylene glycol (EG) has provided the highest TPC (5.84 mg GAE/g OP), DES have proved more selective towards target polyphenolic compounds. Additionally, Scanning Electron Microscopy (SEM) was performed to illustrate the structural modifications occurred on the biomass before and after the extraction process, supporting DES as efficient solvents for cell wall dissolution. Lastly, characterization and quantification of individual polyphenolic profiles in the extracts were completed via high performance liquid chromatography (HPLC), displaying ferulic acid as the most abundant compound followed by p-coumaric acid and gallic acid.
机译:在该工作中研究了通过使用深凝胶溶剂(DES)的固液萃取(SLE)从橙皮(OP)中的多酚化合物作为一种开发可持续分离方法的方法,以回收食物废物生物质的天然抗氧化剂。特别地,氯化氯化胆碱基与甘油和乙二醇配对作为潜在的萃取剂,以评估溶剂结构(即羟基数量和氢粘合受体/供体/供体/供体/供体比的效果)对多酚提取效率。然后,进一步评估不同操作参数(即溶剂浓度,温度,时间和固体/液体比率)的影响,以确定基于DPPH激进的总酚类含量(TPC)和抗氧化活性的多酚恢复的最佳提取条件清除方法。在最佳条件下(DES 10 WT.%水,温度为333.15 k,1:10固体/液体比和100分钟的提取时间),基于氯化胆碱的DES优于基准溶剂(水溶液(水溶液)乙醇30重量。 %水)用于从OP中提取多酚化合物,用[CH] Cl:例如1:4提供最高TPC(每克橙皮(GAE / G OP)和抗氧化剂潜力(30.6μg)(30.6μg / ml)。虽然乙二醇(例如)提供了最高TPC(5.84mg GAE / G OP),但是DES已经证明了靶向多酚化合物的更具选择性。另外,进行扫描电子显微镜(SEM)以说明发生的结构改进在萃取过程之前和之后的生物质上,支持DES作为细胞壁溶解的有效溶剂。最后,通过高效液相色谱(HPLC)完成提取物中单个多酚谱的表征和定量,显示型纱线酸是最丰富的化合物,然后是p-香豆酸和食小酸。

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