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模拟移动床色谱中的两步溶剂梯度。线性平衡的数值研究。

Two-step solvent gradients in simulated moving bed chromatography. Numerical study for linear equilibria.

作者信息

Antos Dorota, Seidel-Morgenstern Andreas

机构信息

Max-Planck-Institut für Dynamik Komplexer Technischer Systeme, Magdeburg, Germany.

出版信息

J Chromatogr A. 2002 Jan 25;944(1-2):77-91. doi: 10.1016/s0021-9673(01)01365-6.

Abstract

The application of gradients in simulated moving bed (SMB) chromatography has recently attracted interest as a method for further improving the performance of this continuous separation process. One possible implementation of gradients consists in setting the solvent strength in the desorbent stream higher than that in the feed stream. As a result, the components to be separated are more retained in the zones upstream of the feed position and more easily eluted in the zones downstream of the feed position. If a liquid mobile phase is used, gradients can be created by dosing different solvents into the feed and desorbent ports. In a closed-loop gradient SMB arrangement the solvent strength within the unit will depend on the two feed compositions and on the characteristic flow-rates of the process. In this work an equilibrium stage model describing a true moving bed process is used to analyze numerically the main features of a two-step gradient SMB process. The adsorption isotherms are assumed to be always linear under isocratic conditions. The relevant Henry constants depend in a nonlinear manner on the composition of the solvent. Based on numerical simulations the impact of the two inlet solvent compositions is demonstrated in terms of the size and shape of regions of applicable flow-rates. Different strategies of designing the process are discussed and compared with respect to maximizing productivities and minimizing desorbent requirements.

摘要

模拟移动床(SMB)色谱中梯度的应用最近作为一种进一步提高这种连续分离过程性能的方法引起了关注。梯度的一种可能实现方式是将解吸剂流中的溶剂强度设置得高于进料流中的溶剂强度。结果,待分离的组分在进料位置上游的区域中保留得更多,而在进料位置下游的区域中更容易洗脱。如果使用液体流动相,可以通过向进料口和解吸剂口加入不同的溶剂来形成梯度。在闭环梯度SMB装置中,装置内的溶剂强度将取决于两种进料组成以及该过程的特征流速。在这项工作中,使用描述真实移动床过程的平衡级模型对两步梯度SMB过程的主要特征进行数值分析。假设在等度条件下吸附等温线始终为线性。相关的亨利常数以非线性方式取决于溶剂的组成。基于数值模拟,从适用流速区域的大小和形状方面展示了两种入口溶剂组成的影响。讨论并比较了不同的过程设计策略,以实现生产率最大化和解吸剂需求最小化。

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