| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 7608457 | Journal of Chromatography A | 2018 | 50 Pages | 
Abstract
												Process development and characterization based on mathematic modeling provides several advantages and has been applied more frequently over the last few years. In this work, a Donnan equilibrium ion exchange (DIX) model is applied for modelling and simulation of ion exchange chromatography of a monoclonal antibody in linear chromatography. Four different cation exchange resin prototypes consisting of weak, strong and mixed ligands are characterized using pH and salt gradient elution experiments applying the extended DIX model. The modelling results are compared with the results using a classic stoichiometric displacement model. The Donnan equilibrium model is able to describe all four prototype resins while the stoichiometric displacement model fails for the weak and mixed weak/strong ligands. Finally, in silico chromatogram simulations of pH and pH/salt dual gradients are performed to verify the results and to show the consistency of the developed model.
											Related Topics
												
													Physical Sciences and Engineering
													Chemistry
													Analytical Chemistry
												
											Authors
												Felix Wittkopp, Lars Peeck, Mathias Hafner, Christian Frech, 
											