Ren Da-Bing, Yi Lun-Zhao, Qin Yan-Hua, Yun Yong-Huan, Deng Bai-Chuan, Lu Hong-Mei, Chen Xiao-Qing, Liang Yi-Zeng
Yunnan Food Safety Research Institute, Kunming University of Science and Technology, Kunming 650500, China; College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.
Yunnan Food Safety Research Institute, Kunming University of Science and Technology, Kunming 650500, China; College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.
J Chromatogr A. 2015 May 8;1393:47-56. doi: 10.1016/j.chroma.2015.03.016. Epub 2015 Mar 14.
Solvent system selection is the first step toward a successful counter-current chromatography (CCC) separation. This paper introduces a systematic and practical solvent system selection strategy based on the nonrandom two-liquid segment activity coefficient (NRTL-SAC) model, which is efficient in predicting the solute partition coefficient. Firstly, the application of the NRTL-SAC method was extended to the ethyl acetate/n-butanol/water and chloroform/methanol/water solvent system families. Moreover, the versatility and predictive capability of the NRTL-SAC method were investigated. The results indicate that the solute molecular parameters identified from hexane/ethyl acetate/methanol/water solvent system family are capable of predicting a large number of partition coefficients in several other different solvent system families. The NRTL-SAC strategy was further validated by successfully separating five components from Salvia plebeian R.Br. We therefore propose that NRTL-SAC is a promising high throughput method for rapid solvent system selection and highly adaptable to screen suitable solvent system for real-life CCC separation.
溶剂系统的选择是成功进行逆流色谱(CCC)分离的第一步。本文介绍了一种基于非随机双液段活度系数(NRTL-SAC)模型的系统且实用的溶剂系统选择策略,该模型在预测溶质分配系数方面效率很高。首先,将NRTL-SAC方法的应用扩展到乙酸乙酯/正丁醇/水和氯仿/甲醇/水溶剂系统族。此外,还研究了NRTL-SAC方法的通用性和预测能力。结果表明,从己烷/乙酸乙酯/甲醇/水溶剂系统族中确定的溶质分子参数能够预测其他几个不同溶剂系统族中的大量分配系数。通过成功从荔枝草中分离出五种成分,进一步验证了NRTL-SAC策略。因此,我们认为NRTL-SAC是一种很有前景的高通量方法,可用于快速选择溶剂系统,并且高度适用于为实际的CCC分离筛选合适的溶剂系统。