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Separation of Glycyrrhizic Acid and Its Derivants from Hydrolyzation in Subcritical Water by Macroporous Resin

机译:大孔树脂分离甘草酸及其衍生物的亚临界水分中的水解

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摘要

Glycyrrhizic acid (GL) and its derivants, glycyrrhetinic acid 3-O-mono-β-d-glucuronide (GAMG) and glycyrrhetinic acid (GA) hydrolyzed in subcritical water, are bioactive substances and edulcorators. In this work, a separation strategy for these three substances was established. The effects of adsorbent and eluent were investigated by static/dynamic adsorption and multi-stage desorption with the mechanism analysis. The adsorption of them onto EXA50 resin was well fitted by the pseudo second-order kinetic model. The optimal dynamic adsorption flow rate was 6 bed volume (BV)/h, and water of pH = 12 was used to elute GL at 4 BV/h, then n-buthanol was used subsequently to elute GA at 1 BV/h, and finally 90% ethanol was applied to elute GAMG at 2 BV/h. As a result, purities of these compounds increased, which demonstrated that this adsorption-desorption technology was simple and efficient, and indicated the potential for large-scale purification and preparation of GL and its derivants in the future.
机译:甘草酸(GL)及其衍生物,在亚临界水中水解的甘草酸3-O-单β-D-葡糖醛酸(GAM)和水解的甘草酸(Ga)是生物活性物质和抗培养镜。在这项工作中,建立了这三种物质的分离策略。通过静态/动态吸附和多阶段解吸来研究吸附剂和洗脱液的效果。伪二阶动力学模型,将它们吸附到EXA50树脂上。最佳动态吸附流速为6张床体积(BV)/ h,并且pH = 12的水用于在4 bV / h处洗脱,然后使用N-丁醇以在1 bv / h处洗脱Ga,最后将90%乙醇应用于2 bv / h的洗脱Gamg。结果,这些化合物的纯度增加,这表明这种吸附 - 解吸技术简单有效,并表明了未来大规模净化和GL的大规模净化和制备的可能性。

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