首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Analytical and preparative supercritical fluid extraction of chamomile flowers and its comparison with conventional methods.
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Analytical and preparative supercritical fluid extraction of chamomile flowers and its comparison with conventional methods.

机译:洋甘菊花的分析和制备超临界流体萃取及其与常规方法的比较。

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Supercritical fluid extraction (SFE) was compared with Soxhlet extraction, steam distillation and maceration for the isolation of the active components present in chamomile flowerheads. The obtained fractions were analysed by GC-MS and reversed-phase HPLC. The yield of essential oil achieved by a 30-min extraction with pure CO2 at 90 atm and 40 degrees C was 4.4 times higher than that produced by steam distillation performed for 4 h. The recovery of the flavonoid apigenin obtained by supercritical CO2 after a 30-min extraction at 200 atm and 40 degrees C was 71.4% compared to Soxhlet extraction performed for 6 h and 124.6% compared to maceration performed for 3 days. However, the highly polar flavonoid apigenin-7-glucoside was not extracted by 100% CO2 (recovery values < 1.1%). Its extraction efficiency was markedly improved by the addition of the polar modifier methanol (5%, v/v) to the CO2 fluid, yet the obtained recoveries were unsatisfactory (14.6-19.5%). The SFE method was scaled-up for preparative applications using a pilot plant with three separation stages operating in series. Large-scale SFE was technically feasible with pure CO2 as the extracting fluid. However, the use of CO2 modified with organic solvents was not effective at the pilot-plant scale.
机译:将超临界流体萃取(SFE)与索氏萃取,蒸汽蒸馏和浸软进行了比较,以分离洋甘菊头状花序中存在的活性成分。通过GC-MS和反相HPLC分析获得的级分。通过在90个大气压和40摄氏度下用纯CO2萃取30分钟所获得的精油收率比水蒸气蒸馏4小时所产生的收率高4.4倍。与在6天进行的索氏提取相比,在200 atm和40摄氏度下萃取30分钟后,超临界CO2回收的类黄酮芹菜素的回收率为71.4%,而浸渍3天的回收率为124.6%。但是,高极性类黄酮芹菜素-7-葡糖苷没有被100%CO2提取(回收率<1.1%)。通过向CO2流体中添加极性改性剂甲醇(5%,v / v)可以显着提高其提取效率,但回收率不令人满意(14.6-19.5%)。使用具有三个分离阶段的串联操作的中试设备,将SFE方法扩大到了制备应用领域。使用纯CO2作为萃取液,大规模SFE在技术上是可行的。但是,使用有机溶剂改性的CO2在中试规模上无效。

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