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Mathematical modelling of supercritical CO2 extraction of volatile oils from aromatic plants

机译:超临界CO2萃取芳香植物挥发油的数学模型

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The modelling of the experimental data of the extraction of the volatile oil from six aromatic plants (coriander, fennel, savoury, winter savoury, cotton lavender and thyme) was performed using five mathematical models, based on differential mass balances. In all cases the extraction was internal diffusion controlled and the internal mass transfer coefficienty (k(s)) have been found to change with pressure, temperature and particle size. For fennel, savoury and cotton lavender, the external mass transfer and the equilibrium phase also influenced the second extraction period, since k(s) changed with the tested flow rates. In general, the axial dispersion coefficient could be neglected for the conditions studied, since Peclet numbers were high. On the other hand, the solute-matrix interaction had to be considered in order to ensure a satisfactory description of the experimental data. (C) 2010 Elsevier Ltd. All rights reserved.
机译:基于五个不同的质量平衡,使用五个数学模型对从六种芳香植物(香菜,茴香,咸味,冬季咸味,棉花熏衣草和百里香)中提取挥发油的实验数据进行了建模。在所有情况下,萃取均受内部扩散控制,并且已发现内部传质系数(k(s))随压力,温度和粒径而变化。对于茴香,咸味和棉花熏衣草,由于k(s)随着测试流速的变化而变化,外部传质和平衡相也影响了第二次萃取期。通常,由于佩克雷特数高,轴向分散系数对于所研究的条件可以忽略不计。另一方面,必须考虑溶质与基质的相互作用,以确保对实验数据的满意描述。 (C)2010 Elsevier Ltd.保留所有权利。

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