首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Application of ionic liquids in vacuum microwave-assisted extraction followed by macroporous resin isolation of three flavonoids rutin, hyperoside and hesperidin from Sorbus tianschanica leaves
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Application of ionic liquids in vacuum microwave-assisted extraction followed by macroporous resin isolation of three flavonoids rutin, hyperoside and hesperidin from Sorbus tianschanica leaves

机译:离子液体在真空微波辅助萃取中的应用,然后大孔树脂从山梨叶中分离出三种黄酮类芦丁,金丝桃苷和橙皮苷

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Rutin, hyperoside and hesperidin were effectively extracted from Sorbus tianschanica leaves by an ionic liquid vacuum microwave-assisted method. A series of ionic liquids with various anions and alkyl chain length of the cations were studied and the extraction was performed in [C(6)mim][BF4] aqueous solution. After optimization by a factorial design and response surface methodology, total extraction yield of 2.37 mg/g with an error of 0.12 mg/g (0.71 +/- 0.04 mgig, 1.18 +/- 0.06 mg/g and 0.48 +/- 0.02 for rutin, hyper-side and hesperidin, respectively) was achieved under -0.08 MPa for vacuum, 19 min and 420 W for microwave irradiation time and power, and 15 mL/g for liquid-solid ratio. The proposed method here is more efficient and needs a shorter extraction time for rutin, hyperoside and hesperidin from S. tianschanica leaves than reference extraction techniques. In stability studies performed with standard rutin, hyperoside and hesperidin, the target analytes were stable under the optimum conditions. The proposed method had a high reproducibility and precision. In addition, separation of rutin, hyperoside and hesperidin from [C6mim][BF4] extraction solution was completed effectively by AB-8 macroporous resin adsorption and desorption process. Ionic liquid vacuum microwave-assisted extraction is a simple, rapid and efficient sample extraction technique. (C) 2016 Elsevier B.V. All rights reserved.
机译:采用离子液体真空微波辅助法从山梨叶片中有效提取了芦丁,金丝桃苷和橙皮苷。研究了一系列具有各种阴离子和阳离子的烷基链长的离子液体,并在[C(6)mim] [BF4]水溶液中进行了萃取。通过析因设计和响应面方法进行优化后,总提取产量为2.37 mg / g,误差为0.12 mg / g(0.71 +/- 0.04 mgig,1.18 +/- 0.06 mg / g和0.48 +/- 0.02分别在-0.08 MPa的真空下,19分钟和420 W的微波辐射时间和功率下以及15 mL / g的液固比下分别获得芦丁,hyper-side和橙皮苷。与参考提取技术相比,此处提出的方法更有效,并且需要从天蝎叶中提取芦丁,金丝桃苷和橙皮苷的时间较短。在使用标准芦丁,金丝桃苷和橙皮苷进行的稳定性研究中,目标分析物在最佳条件下稳定。该方法具有较高的重现性和精密度。另外,通过AB-8大孔树脂的吸附和解吸过程,有效地完成了从[C6mim] [BF4]提取液中的芦丁,高丝苷和橙皮苷的分离。离子液体真空微波辅助萃取是一种简单,快速且有效的样品萃取技术。 (C)2016 Elsevier B.V.保留所有权利。

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