Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7609023 | Journal of Chromatography A | 2018 | 48 Pages |
Abstract
Axi-symmetric numerical simulations are carried out to study the dynamics of a plug introduced through a mixed-stream injection in supercritical fluid chromatographic columns. The computational fluid dynamics model developed in this work takes into account both the hydrodynamics and adsorption equilibria to describe the phenomena of viscous fingering and plug effect that contribute to peak distortions in mixed-stream injections. The model was implemented into commercial computational fluid dynamics software using user-defined functions. The simulations describe the propagation of both the solute and modifier highlighting the interplay between the hydrodynamics and plug effect. The simulated peaks showed good agreement with experimental data published in the literature involving different injection volumes (5â¯Î¼L, 50â¯Î¼L, 1â¯mL and 2â¯mL) of flurbiprofen on Chiralpak AD-H column using a mobile phase of CO2 and methanol. The study demonstrates that while viscous fingering is the main source of peak distortions for large-volume injections (1â¯mL and 2â¯mL) it has negligible impact on small-volume injections (5â¯Î¼L and 50â¯Î¼L). Band broadening in small-volume injections arise mainly due to the plug effect.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Sai Gokul Subraveti, Petr Nikrityuk, Arvind Rajendran,