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首页> 外文期刊>Chemical Engineering and Processing >Lab-scale extraction of essential oils from Tunisian lemongrass (Cymbopogon flexuosus)
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Lab-scale extraction of essential oils from Tunisian lemongrass (Cymbopogon flexuosus)

机译:突尼斯柠檬草精油的实验室规模提取(Cymbogon Flexuosus)

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The present study is conducted to investigate the effect(s) of ultrasonic pretreatment on the extraction of essential oils from dried leaves of lemongrass (Cymbopogon flexuosus) by hydro-distillation. The drying process was carried out within a forced convective dryer at 50 degrees C and a drying air velocity of 1 m/s. Using a response surface methodology (RSM) based on central composite design with the face centered, the obtained optimum conditions were as follows: an ultrasound pretreatment for 25 min within a power of 250 W, at 50 degrees C. Modeling showed that all factors (time, power and temperature) were found to be highly significant in the extraction process (p 0.001), to significant in all 2-way interactions (p 0.05) except in the Time x Temperature interaction. Then, a second-degree model with interactions was retained. The maximum amount of essential oils was obtained under optimized conditions approximate to 3.093 g/100 g d.m.). The major component of the extracted essential oils is citral, which represents 85% of the extracted mass and it is present in both cis-isomer (neral) and trans-isomer (geranial) (respectively at 38.89% and 45.86%).
机译:进行本研究以研究超声波预处理对从柠檬草(Cymbobogon Flexuosus)的干燥叶子萃取精油的影响。干燥过程在50℃下在强制对流干燥器内进行,干燥空气速度为1m / s。使用基于中央复合设计的响应面方法(RSM)与面部为中心,所获得的最佳条件如下:在50摄氏度下,在250W的功率内进行25分钟的超声预处理,建模显示所有因素(在萃取过程(P <0.001)中发现时间,功率和温度)在提取过程中非常显着,除了在时间x温度相互作用之外,除了在所有双向相互作用之外,在所有双向相互作用中的显着性(P <0.05)。然后,保留了具有相互作用的二级模型。在优化条件下获得的最大精油量近似为3.093g / 100g下午)。提取的精油的主要成分是柠檬螯合物,其占提取物质量的85%,并且其存在于顺式 - 异构体(颈体)和反式异构体(Geranial)中(分别为38.89%和45.86%)。

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