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A novel combined process for extracting, separating and recovering flavonoids from flos sophorae immaturus

机译:从Flos Sophorae Immaturus提取,分离和回收黄酮类化合物的新组合过程

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The hydrotropic characteristic of ionic liquids can be used to recover bio-molecules from aqueous media and ionic liquid based-aqueous biphasic systems have been extensively applied to the separation and purification of value-added compounds. According to the hydrotropy effect and the phase separation ability, n-1,3-dibutylimidazolium propionate was chosen from several imidazolium carboxylate ionic liquids to carry out the novel combined process integrating extracting, separating and recovering flavonoids from flos sophorae immaturus with the aid of aqueous biphasic systems. The optimum separation conditions derived from the response surface analysis were potassium citrate concentration 26.12%, pH 9.83 and temperature 41.89 degrees C, with the predicted extraction efficiency 100.27% and measured one 99.68%. The flavonoids in the ionic liquid-rich phase were precipitated out and recovered by the dilution of using pure water as an anti-solvent and the cooling of refrigerator, producing the maximum recovery rate 82% or so and establishing the appropriate dilution ratio 5 in the involved recovery systems. The extracts presented good scavenging activity, namely, 62% on the 2, 2-diphenyl-1-picrylhydrazyl radical and 85% on the hydroxyl radical from the well-known Fenton reaction when the sample concentration was approximately 0.125 mg/mL, elucidating the combined process efficient and feasible. (C) 2016 Elsevier B.V. All rights reserved.
机译:离子液体的水辐射特性可用于从水性介质中回收生物分子,并广泛地应用离子液体的双相体系,以分离和纯化增值化合物。根据水平效果和相分离能力,从几种咪唑鎓羧酸钡离子液中选择N-1,3-二丁基咪唑鎓丙酸盐,以通过借助水性将提取,分离和回收黄酮类化合物的新组合过程中的新组合过程。双相系统。源自响应表面分析的最佳分离条件是柠檬酸钾浓度为26.12%,pH 9.83和41.89℃的温度,预测提取效率100.27%并测量为99.68%。富含离子液体的相的类黄酮沉淀出来并通过稀释水作为抗溶剂的稀释和冰箱的冷却来回收,产生82%左右的最大回收率,并建立适当的稀释比5涉及恢复系统。提取物呈现出良好的清除活性,即,当样品浓度约为0.125mg / ml时,从众所周知的芬顿反应,在2,2-二苯基-1-普里德拉酰基自由基和85%上的85%的羟基,阐明综合工艺高效可行。 (c)2016年Elsevier B.v.保留所有权利。

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