González J C, Vieytes M R, Botana A M, Vieites J M, Botana L M
Departamento de Farmacologia, Facultad de Veterinaria, Universidade de Santiago de Compostela, Lugo, Spain.
J Chromatogr A. 2001 Feb 23;910(1):119-25. doi: 10.1016/s0021-9673(00)01120-1.
The solubility of solids and liquids in supercritical CO2 with added entrainers was modeled with a modified version of the equation of Chrastil to include the effect of entrainers. By considering the formation of the solute-entrainer-solvent complexes an equation is obtained which predicts an exponential increase of solubility with fluid density and/or entrainer concentration. The correlating model was tested by non-linear regression through a computerized iterative process for several systems where an entrainer was present. Four experimental parameters are easily regressed from experimental data, hence the corresponding properties of components such as chemical potentials or critical parameters are not needed. Instead of its simplicity, this thermodynamical model provided a good correlation of the solubility enhancement in the presence of entrainer effect.
通过对Chrastil方程进行修正以纳入夹带剂的影响,对添加了夹带剂的固体和液体在超临界CO₂中的溶解度进行了建模。通过考虑溶质 - 夹带剂 - 溶剂络合物的形成,得到了一个方程,该方程预测溶解度随流体密度和/或夹带剂浓度呈指数增加。通过计算机迭代过程对存在夹带剂的多个系统进行非线性回归,对相关模型进行了测试。四个实验参数很容易从实验数据中回归得到,因此不需要诸如化学势或临界参数等组分的相应性质。尽管该热力学模型简单,但它很好地关联了存在夹带剂效应时溶解度的增强情况。