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PMID: 36521242 Published · ppublish English Journal Article

Computational fluid dynamics simulation and the experimental verification of protein adsorption on a hollow fiber membranes module.

Journal of chromatography. A ·Vol. 1687 ·2023-01-04 ·页码 463706

Wu J, Wei Y, Li S, Zhou J, Xu Z

Abstract

Immobilized metal affinity chromatography (IMAC) ensures the specific purification of proteins containing histidine tags through high affinity with transition metal chelators, which has various applications in biological protein separation. Most chromatographic separations currently use a fixed bed. In this form, internal flow pressure drops very sharply, accompanied by uneven solution flow, pore blockages, etc., all of which greatly reduce separation efficiency. Therefore, this study uses hollow fiber membranes (HFMs) with micron-scale inner diameters as a base, thus reducing operating pressure and significantly enhancing mass transmission. Batch adsorption experiments were performed using flat plate membranes to obtain the reaction's thermodynamic and kinetic model parameters for use in a dynamic column breakthrough simulation. The numerical simulation was based on a single HFM model and established a mathematical model for computational fluid dynamics (CFD) in ANSYS Fluent software. Model accuracy was validated by combining the simulation with experiments. The effects of different module and process parameters on the breakthrough curve were investigated by varying parameters such as flow rate, initial feed concentration, and HFM inner diameter. Design parameters and operating conditions contributing to module utilization were subsequently obtained.

Keywords
Adsorption Breakthrough curves Computational fluid dynamics Hollow fiber membranes Immobilized metal affinity chromatography
MeSH 主题词
Adsorption Hydrodynamics Chromatography, Affinity/methods Computer Simulation Models, Theoretical Chelating Agents
化学物质
Chelating Agents
作者与单位
共 5 位作者,点击展开单位 / ORCID
Wu Jiaojie
State Key Laboratory of Chemical Engineering, Membrane Science and Engineering R&D Lab, Chemical Engineering Research Center, School of Chemical Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China.
Wei Yongming
State Key Laboratory of Chemical Engineering, Membrane Science and Engineering R&D Lab, Chemical Engineering Research Center, School of Chemical Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China. Electronic address: [email protected].
Li Shuqin
State Key Laboratory of Chemical Engineering, Membrane Science and Engineering R&D Lab, Chemical Engineering Research Center, School of Chemical Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China.
Zhou Junjie
State Key Laboratory of Chemical Engineering, Membrane Science and Engineering R&D Lab, Chemical Engineering Research Center, School of Chemical Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China.
Xu Zhenliang
State Key Laboratory of Chemical Engineering, Membrane Science and Engineering R&D Lab, Chemical Engineering Research Center, School of Chemical Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China.
Article Info
Journal
Journal of chromatography. A
Abbr.
J Chromatogr A
ISSN
1873-3778
Corresponding email
Published
2023-01-04
电子出版
2022-00-07
页码
463706
Language
English
Country/Region
Netherlands
NLM ID
9318488
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