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Limonene in Arizona liquid systems used in countercurrent chromatography. II Polarity and stationary-phase retention

机译:亚利桑那州液体系统中的柠檬烯用于逆流色谱法。 II极性和固定相保留

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摘要

The previous article in this series described the physico-chemical properties and chemical compositions of the two phases of the limonene-ethyl acetate-ethanol-water biphasic liquid system. This system was designed to be a "green" version of the so-called Arizona (AZ) scale of heptane- ethyl acetate-methanol compositions in which the heptane- ethyl acetate volume ratio is exactly the same as the methanol-water ratio. The first major difference between the standard and "green" AZ systems is the difference in upper and lower phase densities. The higher density of limonene compared with heptane greatly reduces the density difference of the "green" system: half the compositions have a density difference lower than 0.06 g mL~(-1), precluding their use in hydrodynamic CCC columns. The other major difference is the phase polarity. The better distribution of ethanol between the upper organic and lower aqueous phases of the "green" AZ scale renders them more polar than their counterparts in standard heptane-based compositions. The test solutes aspirin and coumarin have higher distribution constants in the "green" AZ compositions. It is revealed that a hydrostatic column is suitable for use with all "green" compositions, with very good phase retention and limited driving pressure at high flow rates. A hydrodynamic column only functioned at limited flow rates with polar compositions of sufficient phasedensity difference. The CCC chromatograms obtained with different compositions and columns are shown, and their peak position and sharpness discussed.
机译:该系列的上一篇文章描述了柠檬烯-乙酸乙酯-乙醇-水双相液体系统两相的物理化学性质和化学组成。该系统被设计为庚烷-乙酸乙酯-甲醇组合物的所谓亚利桑那(AZ)规模的“绿色”版本,其中庚烷-乙酸乙酯的体积比与甲醇-水的比例完全相同。标准和“绿色” AZ系统之间的第一个主要区别是上下相位密度的不同。与庚烷相比,li烯的较高密度极大地减小了“绿色”系统的密度差:一半组合物的密度差低于0.06 g mL〜(-1),这排除了它们在流体动力学CCC色谱柱中的使用。另一个主要区别是相位极性。乙醇在“绿色” AZ规模的上层有机相和下层水相之间的更好分配使它们比标准庚烷基组合物中的对应物更具极性。测试溶质阿司匹林和香豆素在“绿色” AZ成分中具有较高的分布常数。揭示了一种静液压柱适合于与所有“绿色”组合物一起使用,在高流速下具有很好的相保持性和有限的驱动压力。液力色谱柱仅在有限的流速下运行,且极性组分具有足够的相密度差。显示了使用不同组成和色谱柱获得的CCC色谱图,并讨论了其峰位置和锐度。

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