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首页> 外文期刊>Natural product research >Application of factorial design and Box-Behnken matrix in the optimisation of a microwave-assisted extraction of essential oils from Salvia mirzayanii.
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Application of factorial design and Box-Behnken matrix in the optimisation of a microwave-assisted extraction of essential oils from Salvia mirzayanii.

机译:析因设计和Box-Behnken矩阵在微波辅助提取丹参中香精油中的应用。

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摘要

Essential oil of Salvia mirzayanii cultivated in Iran was obtained by microwave assisted extraction (MAE) procedures. The essential oil was analysed by capillary gas chromatography using flame ionisation and mass spectrometric detections. The effects of different parameters, such as microwave power, temperature, time and type of solvent on the MAE of Salvia mirzayanii oil were investigated. Results of the two-level fractional factorial design (2(4-1)) based on an analysis of variance demonstrated that only the power, temperature and type of solvent were statistically significant. Optimal conditions for the extraction of essential oils were obtained by using Box-Behnken design. For optimum recovery of essential oil the variables power, temperature and solvent values were 115 W, 50 degrees C and 14 s, respectively. Under the optimised experimental conditions, the extraction yield of microwave assisted extraction was 11.2% (w/w).
机译:通过微波辅助提取(MAE)程序获得了在伊朗种植的丹参丹参的精油。通过毛细管气相色谱法使用火焰离子化和质谱检测分析精油。研究了微波功率,温度,时间和溶剂类型等不同参数对丹参油MAE的影响。基于方差分析的两级分数阶乘设计(2(4-1))的结果表明,只有功率,温度和溶剂类型在统计学上是显着的。通过Box-Behnken设计获得了提取精油的最佳条件。为了获得最佳的精油回收率,变量功率,温度和溶剂值分别为115 W,50摄氏度和14 s。在优化的实验条件下,微波辅助提取的提取率为11.2%(w / w)。

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