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Mathematical model of computer-programmed intermittent dual countercurrent chromatography applied to hydrostatic and hydrodynamic equilibrium systems

机译:计算机程序间歇性双向逆流色谱法在流体静力学和流体力学平衡系统中的数学模型

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Dual high-speed countercurrent chromatography (dual CCC) literally permits countercurrent flow of two immiscible solvent phases continuously through the coiled column for separation of solutes according to their partition coefficients. Application of this technique has been successfully demonstrated by separation of analytes by gas-liquid and liquid-liquid two-phase systems. However, the method cannot be directly applied to the system with a set of coiled columns connected in series, since the countercurrent process is interrupted at the junction between the columns. However, this problem can be solved by intermittent dual CCC by eluting each phase alternately through the opposite ends of the separation column. This mode of application has an advantage over the conventional dual CCC in that the method can be applied to all types of CCC systems including hydrostatic equilibrium systems such as toroidal coil CCC and centrifugal partition chromatography. Recently, the application of this method to high-speed CCC (hydrodynamic system) has been demonstrated for separation of natural products by Hewitson et al. using a set of conventional multilayer coil separation columns connected in series. Here, we have developed a mathematical model for this intermittent dual CCC system to predict retention time of the analytes, and using a simplified model system the validity of the model is justified by a series of basic studies on both hydrodynamic and hydrostatic CCC systems with a computer-programmed single sliding valve. The present method has been successfully applied to spiral tube assembly high-speed CCC (hydrodynamic system) and toroidal coil CCC (hydrostatic system) for separation of DNP-amino acid samples with two biphasic solvent systems composed of hexane-ethyl acetate-methanol-0.1 M hydrochloric acid (1:11:1 and 4:5:4:5,v/v). Published by Elsevier B.V.
机译:双高速逆流色谱法(双重CCC)字面上允许两个不混溶的溶剂相连续不断地流过卷曲柱,以根据溶质的分配系数分离溶质。通过气-液和液-液两相系统分离分析物已成功证明了该技术的应用。但是,该方法不能直接应用于一组串联连接的盘绕色谱柱的系统,因为逆流过程在色谱柱之间的连接处被中断。但是,可以通过在分离塔的相反两端交替洗脱各相来实现间歇性双重CCC来解决此问题。这种应用模式相对于传统的双重CCC具有一个优势,因为该方法可以应用于所有类型的CCC系统,包括静液压平衡系统,例如环形线圈CCC和离心分配色谱。最近,Hewitson等人证明了该方法在高速CCC(流体动力学系统)中用于天然产物分离的应用。使用一组串联的常规多层线圈分离塔。在这里,我们已经为这种间歇性双CCC系统开发了数学模型,以预测分析物的保留时间,并使用简化的模型系统,通过对水动力和静水CCC系统进行了一系列基础研究,证明了该模型的有效性。计算机编程的单滑阀。本方法已成功应用于螺旋管组件高速CCC(流体动力学系统)和环形线圈CCC(流体静力学系统)中,用于分离DNP氨基酸样品,并使用由己烷-乙酸乙酯-甲醇-0.1组成的两个双相溶剂系统。 M盐酸(1:11:1和4:5:4:5,v / v)。由Elsevier B.V.发布

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