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Modeling Multiple Chemical Equilibrium in Single-Stage Extraction of Atenolol Enantiomers with Tartrate and Boric Acid as Chiral Selector

机译:用酒石酸和硼酸为单阶段萃取多阶段提取多阶段均衡的多阶段均衡

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摘要

Enantioselective liquid-liquid extraction (ELLE) was adopted to separate atenolol (AT) enantiomers, where tartrate and boric acid (BA) were used as the chiral selector. Influence of process variables on extraction efficiency were studied, including type of tartaric acid derivatives, type of the organic solvent, pH of aqueous phase, molality of BA and tartaric acid derivatives, as well as temperature. A theoretical model was developed based on the mechanism research on reactive extraction of AT enantiomers by n-hexyl (L)-tartrate (LT) and BA. Important parameters of this model were determined. By modeling and experiment, the optimal conditions identified involve the LT molality of 0.0796 mol.kg(-1), BA molality of 0.1 mol.kg(-1), AT molality of 1.592 mmol.kg(-1), and pH value 9.00 at 278 K, where the obtained enantioselectivity (alpha) is 1.8951 and performance factor (pf) is 0.0608.
机译:采用对映选择性液 - 液萃取(ELLE)分离用于分离的阿替洛尔(AT)对映体,其中用硼酸盐和硼酸(BA)作为手性选择器。 研究了过程变量对提取效率的影响,包括酒石酸衍生物的型,有机溶剂类型,水相的pH,BA和酒石酸衍生物的摩尔,以及温度。 基于N-己基(L) - rtrate(LT)和BA的对映体反应提取的机制研究开发了理论模型。 确定了该模型的重要参数。 通过建模和实验,所识别的最佳条件涉及0.0796mol.kg(-1),麦芽糖的LT麦格力0.1mol.kg(-1),摩尔为1.592mmol.kg(-1)和pH值 9.00在278 k下,其中获得的对映选择性(α)为1.8951,性能因数(PF)为0.0608。

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