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首页> 外文期刊>Industrial Crops and Products >Extraction of nobiletin and tangeretin from Citrus depressa Hayata by supercritical carbon dioxide with ethanol as modifier
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Extraction of nobiletin and tangeretin from Citrus depressa Hayata by supercritical carbon dioxide with ethanol as modifier

机译:乙醇为改性剂的超临界二氧化碳萃取Hay柑中的诺列汀和橘皮苷。

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摘要

An optimal condition of supercritical fluid extraction for two polymethoxyflavones (PMFs), nobiletin and tangeretin, from Citrus depressa Hayata was developed. The effect of modifier type, modifier composition in terms of water content in ethanol, modifier percentage, extraction condition (temperature, pressure and CO2 flow rate), and particle size on the yield of nobiletin and tangeretin were investigated. The contents of nobiletin and tangeretin were determined by HPLC. Results showed that the yield of nobiletin and tangeretin increased significantly with increased percentage of aqueous ethanol (85%) as a modifier in supercritical carbon dioxide up to 9.1%. The optimal temperature and pressure for selective supercritical fluid extraction (SFE) of nobiletin and tangeretin were 80 degrees C and 30 MPa, respectively. The extraction rate was increased by increasing CO2 flow rate. The optimal particle size of sample was found to be 0.375 mm. Overall, the nobiletin and tangeretin yield of SFE was 107% compared to conventional solvent extraction method (100%). Therefore, application of SFE for extraction of nobiletin and tangeretin from C. depressa Hayata peel was preferable.
机译:提出了从C柑中提取两个聚甲氧基黄酮(nobiletin and tangeretin)的超临界流体的最佳条件。改性剂类型,改性剂组成(在乙醇中的水分含量,改性剂百分比,提取条件(温度,压力和CO 2 流速)以及粒径)对诺比列汀和橘皮素产量的影响为调查。通过HPLC测定诺比列汀和橘皮苷的含量。结果表明,随着超临界二氧化碳中作为改性剂的乙醇水溶液(85%)的比例增加至9.1%,nobiletin和tangeretin的产率显着增加。诺比列汀和橘皮素的选择性超临界流体萃取(SFE)的最佳温度和压力分别为80℃和30 MPa。增加CO 2 流速可提高萃取率。发现样品的最佳粒径为0.375mm。总体而言,与传统的溶剂萃取方法(100%)相比,SFE的Nobiletin和Tangeretin产率为107%。因此,将SFE应用于从iC中提取诺比汀和橘皮苷的应用。 Hay子最好是Hay子皮。

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