Mathematical modeling of salt-gradient ion-exchange simulated moving bed chromatography for protein separations.

Jian-Gang Lu
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引用次数: 4

Abstract

The salt-gradient operation mode used in ion-exchange simulated moving bed chromatography (SMBC) can improve the efficiency of protein separations. A detailed model that takes into account any kind of adsorption/ion-exchange equilibrium, salt gradient, size exclusion, mass transfer resistance, and port periodic switching mechanism, was developed to simulate the complex dynamics. The model predictions were verified by the experimental data on upward and downward gradients for protein separations reported in the literature. All design and operating parameters (number, configuration, length and diameter of columns, particle size, switching period, flow rates of feed, raffinate, desorbent and extract, protein concentrations in feed, different salt concentrations in desorbent and feed) can be chosen correctly by numerical simulation. This model can facilitate the design, operation, optimization, control and scale-up of salt-gradient ion-exchange SMBC for protein separations.

盐梯度离子交换的数学模型模拟了蛋白质分离的移动床色谱。
离子交换模拟移动床色谱(SMBC)中采用的盐梯度操作模式可以提高蛋白质的分离效率。建立了一个详细的模型,考虑了各种吸附/离子交换平衡、盐梯度、尺寸排斥、传质阻力和端口周期开关机制,以模拟复杂的动力学。通过文献报道的蛋白质分离的向上和向下梯度实验数据验证了模型的预测。所有设计和操作参数(塔的数量、配置、长度和直径、粒度、切换周期、饲料、萃余液、脱吸剂和萃取物的流速、饲料中的蛋白质浓度、脱吸剂和饲料中的不同盐浓度)都可以通过数值模拟来正确选择。该模型可为盐梯度离子交换SMBC的设计、操作、优化、控制和放大提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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