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Theoretical and Experimental Studies of the Process of Simultaneous Enzymatic Reaction and Chromatographic Separation

机译:同时酶促反应和色谱分离过程的理论与实验研究

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A general mathematical model was developed to simulate the process of simultaneous enzymatic reaction and chromatographic separation. The enzymatic hydrolyses of sucrose and penicillin G were selected as two typical reaction systems which take place in the mobile and the stationary phases, respectively, to study the coupling process. The theoretical analysis showed that the coupling process is more effective for eliminating the uncompetitive inhibition in comparison to the competitive one. Among three operating parameters of the substrate concentration, the pulse volume and the eluting velocity, the substrate conversion is most sensitive to the eluting velocity, whereas the productivity is most sensitive to the substrate concentration. The experimental results showed that the volume overload mode of operation is superior in substrate conversion to the concentration overload, while their difference in product separation extent is insignificant.
机译:开发了一般的数学模型来模拟同时酶促反应和色谱分离的过程。 选择蔗糖和青霉素G的酶水解,分别为两个典型的反应系统,分别在移动和固定相中进行,以研究偶联过程。 理论分析表明,与竞争中的竞争相比,耦合过程更有效地消除了非竞争性抑制。 在衬底浓度的三个操作参数中,脉冲体积和洗脱速度,基板转化对洗脱速度最敏感,而生产率对基底浓度最敏感。 实验结果表明,体积过载操作模式在浓度过载的基材转化中优异,而其产品分离程度的差异是微不足道的。

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