Dai Xiao-Ping, Majumdar Sudipto, Luo Robert G, Sirkar Kamalesh K
Center for Membrane Technologies, Department of Chemical Engineering, Chemistry, and Environmental Science, New Jersey Institute of Technology, Newark, New Jersey 07102, USA.
Biotechnol Bioeng. 2003 Jul 20;83(2):125-39. doi: 10.1002/bit.10653.
Hollow fiber membranes and chromatographic resin beads are commonly employed in a variety of bioseparation processes. A new class of integrated separation devices is being studied in which the shell side of a hollow fiber device is filled with adsorbents/chromatographic resin beads. Such devices and the corresponding separation methods integrate feed broth clarification by the microfiltration/ultrafiltration membrane with bioproduct purification by the shell-side resin beads either as an adsorbent or as beads in elution chromatography. A mathematical model has been developed for the prediction of the chromatographic behavior of such an integrated device. Simulations have been done to study the effects of axial dispersion, feed flow rate, water permeation rate, fiber packing density, and void fraction. Numerical solutions were obtained by solving the governing equations. This model can reasonably describe the concentration profiles as well as the breakthrough and elution behaviors in the integrated device.
中空纤维膜和色谱树脂珠常用于各种生物分离过程。正在研究一类新型的集成分离装置,其中中空纤维装置的壳侧填充有吸附剂/色谱树脂珠。此类装置及相应的分离方法将微滤/超滤膜对发酵液的澄清与壳侧树脂珠作为吸附剂或洗脱色谱中的珠对生物产品的纯化相结合。已开发出一个数学模型来预测此类集成装置的色谱行为。已进行模拟以研究轴向扩散、进料流速、透水率、纤维填充密度和空隙率的影响。通过求解控制方程获得了数值解。该模型能够合理地描述集成装置中的浓度分布以及穿透和洗脱行为。