Miyabe K, Guiochon G
Department of Chemistry, The University of Tennessee, Knoxville, Tennessee 37996-1600, and Division of Chemical and Analytical Sciences, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.
Biotechnol Prog. 1999 Jul-Aug;15(4):740-52. doi: 10.1021/bp990062x.
The experimental results of a previous study of the mass transfer kinetics of bovine serum albumin (BSA) in ion-exchange chromatography under nonlinear conditions are reevaluated. The analysis of the concentration dependence of the lumped mass-transfer rate coefficient (k(m,L)) provides information on the kinetics of axial dispersion, fluid-to-particle mass transfer, intraparticle mass transfer, and adsorption/desorption. The new analysis shows that the contribution of intraparticle mass transfer is the dominant one. Similar to k(m,L), the surface diffusivity (D(s)) of BSA increases with increasing concentration. The linear concentration dependence of k(m,L) seems to originate in a similar dependence of D(s). The use of an heterogeneous-surface model for the anion-exchange resin provides an explanation of the positive concentration dependence of D(s). This work illustrates how frontal analysis data can be used for a detailed investigation of the kinetics of mass transfer between the phases of a chromatographic column, in addition to its conventional use in the determination of the thermodynamic characteristics of the phase equilibrium.
对先前一项关于非线性条件下离子交换色谱中牛血清白蛋白(BSA)传质动力学的研究实验结果进行了重新评估。对集总传质速率系数(k(m,L))的浓度依赖性分析提供了关于轴向扩散、流体与颗粒间传质、颗粒内传质以及吸附/解吸动力学的信息。新的分析表明颗粒内传质的贡献是主要的。与k(m,L)类似,BSA的表面扩散系数(D(s))随浓度增加而增大。k(m,L)的线性浓度依赖性似乎源于D(s)的类似依赖性。使用阴离子交换树脂的非均相表面模型对D(s)的正浓度依赖性作出了解释。这项工作说明了前沿分析数据如何能用于详细研究色谱柱各相之间的传质动力学,此外还说明了其在确定相平衡热力学特性方面的常规用途。