首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Predictive modeling of protein adsorption along the bed height by taking into account the axial nonuniform liquid dispersion and particle classification in expanded beds
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Predictive modeling of protein adsorption along the bed height by taking into account the axial nonuniform liquid dispersion and particle classification in expanded beds

机译:考虑到轴向不均匀的液体分散和膨胀床中的颗粒分类,可预测沿床高度的蛋白质吸附模型

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摘要

Expanded bed adsorption (EBA) is a special chromatography technique with perfect classification of adsorbent particles in the column, thus the performance of protein adsorption in expanded beds is particular, obviously nonuniform and complex along the column. Detailed description of the complex adsorption kinetics of proteins in expanded bed is essential for better analyzing of adsorptive mechanisms, the design of chromatographic processes and the optimization of operation parameters of EBA processes. In this work, a theoretical model for the prediction of protein adsorption kinetics in expanded beds was developed by taking into account the classified distribution of adsorbent particles along the bed height, the nonuniform behaviors of axial liquid dispersion, the axial variation of local bed voidage as well as the axial changes of target component mass transfer. The model was solved using the implicit finite difference scheme combining with the orthogonal collocation method, and then applied to predict the breakthrough behaviors of bovine serum albumin (BSA) on Streamline DEAE and lysozyme on Streamline SP along the bed height in expanded beds under various conditions. In addition, the experiments of front adsorption of BSA on Streamline DEAE at different axial column positions were carried out to reveal the adsorption kinetics of BSA along the bed height in a 20 mm I.D. expanded bed, and the influences of liquid velocity and feed concentration on the breakthrough behaviors were also analyzed. The breakthrough behaviors predicted by the present model were compared with the experimental data obtained in this work and in the literature published. The agreement between the prediction and the experimental breakthrough curves is satisfied. (c) 2005 Published by Elsevier B.V.
机译:膨胀床吸附(EBA)是一种特殊的色谱技术,可对色谱柱中的吸附剂颗粒进行完美分类,因此膨胀床中的蛋白质吸附性能尤为明显,沿色谱柱不均匀且复杂。详细描述蛋白质在膨胀床中的复杂吸附动力学,对于更好地分析吸附机理,色谱工艺设计和EBA工艺操作参数的优化至关重要。在这项工作中,通过考虑沿床高的吸附剂颗粒分类分布,轴向液体分散的不均匀行为,局部床空隙的轴向变化,开发了用于预测膨胀床中蛋白质吸附动力学的理论模型。以及目标组分传质的轴向变化。该模型采用隐式有限差分方案结合正交搭配法求解,然后用于预测牛血清白蛋白(BSA)在Streamline DEAE上的渗透行为以及Streamline SP在溶胀酶在不同条件下沿着床高的突破行为。 。此外,进行了BSA在Streamline DEAE上在不同轴向柱位置上的前吸附实验,以揭示BSA在20 mm I.D中沿床高的吸附动力学。膨胀床,并分析了液体速度和进料浓度对突破行为的影响。将本模型预测的突破行为与这项工作和发表的文献中获得的实验数据进行比较。满足预测值和实验突破曲线之间的一致性。 (c)2005年由Elsevier B.V.

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