Solute affinity in ion-exchange displacement chromatography
โ Scribed by Clayton A. Brooks; Steven M. Cramer
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 961 KB
- Volume
- 51
- Category
- Article
- ISSN
- 0009-2509
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โฆ Synopsis
In this paper a new graphical method, derived from the Steric Mass Action model of non-linear ion-exchange chromatography, is presented for the determination of solute affinity in ion exchange displacement systems. The affinity of solutes in these systems is described by a dynamic affinity parameter which is a function of the linear steric mass action parameters of the solutes and the characteristic velocity of the displacer front. This method can be employed to determine the elution order of the feed solutes in the isotachic displacement train as well as the ability of a given molecule to act as a displacer for a given protein mixture. The ideal model of ion-exchange displacement chromatography and a transient model are employed to study selectivity reversals and resolving power in ion-exchange displacement systems. The work presented here provides a theoretical framework for studying dynamic affinity, resolving power, and displacer design for ion-exchange displacement chromatography.
๐ SIMILAR VOLUMES
In ideal displacement chromatography systems with infinite mass-transfer kinetics , ยฎarious solutes are separated by sharp discontinuities. In real systems, howeยฎer, the shocks are eroded into shock layers because of the finite rates of mass transfer. The thickness of these shock layers, which can r
In this paper, the NernstยฑPlanck equation, in which the strong coupling effects between the various species are considered by including electrical influence produced by ion transfer, is introduced to the study of ion exchange displacement chromatography and the solution of concentration distribution