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Solubility of caffeine from green tea in supercritical CO2: a theoretical and empirical approach

机译:绿茶中咖啡因在超临界二氧化碳中的溶解度:理论和经验方法

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摘要

Decaffeination of fresh green tea was carried out with supercritical CO2 in the presence of ethanol as co-solvent. The solubility of caffeine in supercritical CO2 varied from 44.19 × 10−6 to 149.55 × 10−6 (mole fraction) over a pressure and temperature range of 15 to 35 MPa and 313 to 333 K, respectively. The maximum solubility of caffeine was obtained at 25 MPa and 323 K. Experimental solubility data were correlated with the theoretical equation of state models Peng-Robinson (PR), Soave Redlich-Kwong (SRK), and Redlich-Kwong (RK). The RK model had regressed experimental data with 15.52 % average absolute relative deviation (AARD). In contrast, Gordillo empirical model regressed the best to experimental data with only 0.96 % AARD. Under supercritical conditions, solubility of caffeine in tea matrix was lower than the solubility of pure caffeine. Further, solubility of caffeine in supercritical CO2 was compared with solubility of pure caffeine in conventional solvents and a maximum solubility 90 × 10−3 mol fraction was obtained with chloroform.Electronic supplementary materialThe online version of this article (doi:10.1007/s13197-015-1946-5) contains supplementary material, which is available to authorized users.
机译:在乙醇作为助溶剂的存在下,用超临界二氧化碳对新鲜绿茶进行脱咖啡因作用。咖啡因在超临界CO2中的溶解度在15至35 MPa的压力和温度范围内从44.19×10 -6 到149.55×10 -6 (摩尔分数)变化313至333K。咖啡因的最大溶解度是在25MPa和323K下获得的。实验溶解度数据与状态模型Peng-Robinson(PR),Soave Redlich-Kwong(SRK)和Redlich-Kwong(RK)的理论方程式相关。 RK模型已回归实验数据,平均绝对相对偏差(AARD)为15.52%。相比之下,Gordillo经验模型仅以0.96%的AARD回归最佳实验数据。在超临界条件下,咖啡因在茶基质中的溶解度低于纯咖啡因的溶解度。此外,将咖啡因在超临界CO2中的溶解度与纯咖啡因在常规溶剂中的溶解度进行了比较,并使用氯仿获得了最大溶解度90×10 −3 mol分数。电子补充材料doi:10.1007 / s13197-015-1946-5)包含补充材料,授权用户可以使用。

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