首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >An approach of ionic liquids/lithium salts based microwave irradiation pretreatment followed by ultrasound-microwave synergistic extraction for two coumarins preparation from Cortex fraxini
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An approach of ionic liquids/lithium salts based microwave irradiation pretreatment followed by ultrasound-microwave synergistic extraction for two coumarins preparation from Cortex fraxini

机译:一种基于离子液体/锂盐的微波辐射预处理,然后超声-微波协同萃取的方法,用于从霜皮层中制备两种香豆素

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Ionic liquids/lithium salts solvent system was successfully introduced into the separation technique for the preparation of two coumarins (aesculin and aesculetin) from Cortex fraxini. Ionic liquids/lithium salts based microwave irradiation pretreatment followed by ultrasound-microwave synergy extraction (ILSMP-UMSE) procedure was developed and optimized for the sufficient extraction of these two analytes. Several variables which can potentially influence the extraction yields, including pretreatment time and temperature, [C(4)mirniBr concentration, LiAc content, ultrasound-microwave synergy extraction (UMSE) time, liquid-solid ratio, and UMSE power were optimized by Plackett-Burman design. Among seven variables, UMSE time, liquid-solid ratio, and UMSE power were the statistically significant variables and these three factors were further optimized by Box-Behnken design to predict optimal extraction conditions and find out operability ranges with maximum extraction yields. Under optimum operating conditions, ILSMP-UMSE showed higher extraction yields of two target compounds than those obtained by reference extraction solvents. Method validation studies also evidenced that ILSMP-UMSE is credible for the preparation of two coumarins from Cortex fraxini. This study is indicative of the proposed procedure that has huge application prospects for the preparation of natural products from plant materials. (C) 2015 Elsevier B.V. All rights reserved.
机译:离子液体/锂盐溶剂系统已成功地引入到分离技术中,以从法国亚麻提取物中制备两种香豆素(七叶皂苷和七叶皂苷)。开发并优化了基于离子液体/锂盐的微波辐射预处理,然后进行超声-微波协同萃取(ILSMP-UMSE)程序,以充分萃取这两种分析物的方法。 Plackett优化了可能会影响萃取得率的几个变量,包括预处理时间和温度,[C(4)mirniBr浓度,LiAc含量,超声-微波协同萃取(UMSE)时间,液固比和UMSE功率]。缅甸人设计。在七个变量中,UMSE时间,液固比和UMSE功率是统计上显着的变量,并且通过Box-Behnken设计进一步优化了这三个因素,以预测最佳提取条件并找出具有最大提取得率的可操作范围。在最佳操作条件下,ILSMP-UMSE显示出两种目标化合物的萃取产率高于参考萃取溶剂的萃取产率。方法验证研究还证明,ILSMP-UMSE对于从Cortex fraxini制备两种香豆素是可靠的。这项研究表明拟议的程序具有巨大的应用前景,从植物材料制备天然产物。 (C)2015 Elsevier B.V.保留所有权利。

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