MRC-Microgravity Research Centre, Université libre de Bruxelles (ULB), EP-CP165/62, Avenue F.D. Roosevelt 50, B-1050 Brussels, Belgium.
Mechanical and Manufacturing Department, Mondragon Goi Eskola Politeknikoa (MGEP), Loramendi 4, Apdo. 23, 20500 Mondragon, Spain.
Molecules. 2020 Nov 17;25(22):5372. doi: 10.3390/molecules25225372.
This study aims at contributing to quinine extraction using supercritical CO and ethanol as a co-solvent. The diffusion coefficients of quinine in supercritical CO are measured using the Taylor dispersion technique when quinine is pre-dissolved in ethanol. First, the diffusion coefficients of pure ethanol in the supercritical state of CO were investigated in order to get a basis for seeing a relative change in the diffusion coefficient with the addition of quinine. We report measurements of the diffusion coefficients of ethanol in scCO in the temperature range from 304.3 to 343 K and pressures of 9.5, 10 and 12 MPa. Next, the diffusion coefficients of different amounts of quinine dissolved in ethanol and injected into supercritical CO were measured in the same range of temperatures at = 12 Mpa. At the pressure = 9.5 MPa, which is close to the critical pressure, the diffusion coefficients were measured at the temperature, = 343 K, far from the critical value. It was found that the diffusion coefficients are significantly dependent on the amount of quinine in a small range of its content, less than 0.1%. It is quite likely that this behavior is associated with a change in the spatial structure, that is, the formation of clusters or compounds, and a subsequent increase in the molecular weight of the diffusive substance.
本研究旨在利用超临界 CO 和乙醇作为共溶剂来提取奎宁。当奎宁预先溶解在乙醇中时,使用泰勒分散技术测量奎宁在超临界 CO 中的扩散系数。首先,研究了纯乙醇在 CO 超临界状态下的扩散系数,以便了解在加入奎宁时扩散系数的相对变化。我们报告了在温度范围为 304.3 至 343 K 和压力为 9.5、10 和 12 MPa 下测量的 scCO 中乙醇扩散系数。接下来,在相同的温度范围内测量了不同量的奎宁溶解在乙醇中并注入超临界 CO 中的扩散系数,压力为 = 12 MPa。在接近临界压力的压力 = 9.5 MPa 下,在远离临界值的温度 = 343 K 下测量了扩散系数。结果发现,扩散系数在其含量的很小范围内,即小于 0.1%,与奎宁的含量显著相关。这种行为很可能与空间结构的变化有关,即形成团簇或化合物,以及扩散物质的分子量随后增加。