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首页> 外文期刊>Brazilian journal of chemical engineering >Extraction of citronella (Cymbopogon nardus) essential oil using supercritical co2: experimental data and mathematical modeling
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Extraction of citronella (Cymbopogon nardus) essential oil using supercritical co2: experimental data and mathematical modeling

机译:超临界二氧化碳萃取香茅(Cymbopogon nardus)精油:实验数据和数学模型

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Citronella essential oil has more than eighty components, of which the most important ones are citronellal, geranial and limonene. They are present at high concentrations in the oil and are responsible for the repellent properties of the oil. The oil was extracted using supercritical carbon dioxide due to the high selectivity of the solvent. The operational conditions studied varied from 313.15 to 353.15 K for the temperature and the applied pressures were 6.2, 10.0, 15.0 and 180.0 MPa. Better values of efficiency of the extracted oil were obtained at higher pressure conditions. At constant temperature, the amount of extracted oil increased when the pressure increased, but the opposite occurred when the temperature increased at constant pressure. The composition of the essential oil was complex, although there were several main components in the oil and some waxes were presented in the extracted oils above 10.0 MPa. The results were modeled using a mathematical model in a predictive way, reproducing the extraction curves over the maximum time of the process.
机译:香茅精油具有八十多种成分,其中最重要的成分是香茅醛,香叶醛和li烯。它们以高浓度存在于机油中,并负责机油的驱避性能。由于溶剂的高选择性,使用超临界二氧化碳萃取了油。对于温度,研究的操作条件从313.15到353.15 K不等,所施加的压力分别为6.2、10.0、15.0和180.0 MPa。在较高压力条件下获得了更高的萃取油效率值。在恒定温度下,当压力升高时,提取的油量增加,而在恒定压力下,温度升高时,采出的油量相反。精油的成分很复杂,尽管其中有几种主要成分,并且在10.0 MPa以上的萃取油中存在一些蜡。使用数学模型以预测方式对结果进行建模,在整个过程的最大时间内重现提取曲线。

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