首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Optimized ultrasonic assisted extraction-dispersive liquid-liquid microextraction coupled with gas chromatography for determination of essential oil of Oliveria decumbens vent
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Optimized ultrasonic assisted extraction-dispersive liquid-liquid microextraction coupled with gas chromatography for determination of essential oil of Oliveria decumbens vent

机译:优化的超声辅助萃取-分散液-液微萃取-气相色谱法测定扶桑叶挥发油

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摘要

Ultrasonic assisted extraction-dispersive liquid-liquid microextraction (UAE-DLLME) coupled with gas chromatography (GC) was applied for extraction and determination of essential oil constituents of the plant Oliveria decumbens Vent. Scanning electron microscopy (SEM) was used to see the effect of ultrasonic radiation on the extraction efficiency. By comparison with hydrodistillation, UAE-DLLME is fast, low cost, simple, efficient and consuming small amount of plant materials (~1.0g). The effects of various parameters such as temperature, ultrasonication time, volume of disperser and extraction solvents were investigated by a full factorial design to identify significant variables and their interactions. The results demonstrated that temperature and ultrasonication time had no considerable effect on the results. In the next step, a central composite design (CCD) was performed to obtain the optimum levels of significant parameters. The obtained optimal conditions were: 0.45mL for disperser solvent (acetonitrile) and 94.84μL for extraction solvent (chlorobenzene). The limits of detection (LODs), linear dynamic range and determination coefficients (R2) were 0.2-29ngmL-1, 1-2100ngmL-1 and 0.995-0.998, respectively. The main components of the essential oil were: thymol (47.06%), carvacrol (23.31%), gamma-terpinene (18.94%), p-cymene (8.71%), limonene (0.76%) and myristicin (0.63%).
机译:超声辅助萃取-分散液-液微萃取(UAE-DLLME)结合气相色谱(GC)用于提取和测定植物Oliveria decumbens Vent的精油成分。使用扫描电子显微镜(SEM)观察超声辐射对提取效率的影响。与加氢蒸馏相比,UAE-DLLME快速,低成本,简单,高效且消耗少量植物原料(〜1.0g)。通过全因子设计研究了各种参数(例如温度,超声处理时间,分散剂和萃取溶剂的体积)的影响,以确定重要的变量及其相互作用。结果表明,温度和超声处理时间对结果没有显着影响。在下一步中,进行了中央复合设计(CCD),以获得重要参数的最佳水平。获得的最佳条件为:分散剂(乙腈)为0.45mL,萃取溶剂(氯苯)为94.84μL。检出限(LOD),线性动态范围和测定系数(R2)分别为0.2-29ngmL-1、1-2100ngmL-1和0.995-0.998。香精油的主要成分是:百里香酚(47.06%),香芹酚(23.31%),γ-萜品烯(18.94%),对伞花烯(8.71%),li烯(0.76%)和肉豆蔻苷(0.63%)。

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