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Prediction of the location of stationary steady-state zone positions in counterflow isotachophoresis performed under constant voltage in a vortex-stabilized annular column

✍ Scribed by Schurie L. M. Harrison; Cornelius F. Ivory


Publisher
John Wiley and Sons
Year
2007
Tongue
English
Weight
633 KB
Volume
30
Category
Article
ISSN
1615-9306

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✦ Synopsis


Abstract

A theoretical model is presented and an analytical expression derived to predict the locations of stationary steady‐state zone positions in ITP as a function of current for a straight channel under a constant applied voltage. Stationary zones may form in the presence of a countercurrent flow whose average velocity falls between that of a pure leader zone and of a pure trailer zone. A comparison of model predictions with experimental data from an anionic system shows that the model is able to predict the location of protein zones with reasonable accuracy once the ITP stack has formed. This result implies that an ITP stack can be precisely directed by the operator to specific positions in a channel whence portions of the stack can be removed or redirected for further processing or analysis.