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Bohart Adams model which describes the initial part of a breakthrough profile is assumed to have rectangular shape isotherm.
Freundlich isotherm model was used to compare the theoretical and experimental breakthrough profile in the dynamic process.
A parametric analysis has been carried out to study the influence of different variables on the breakthrough profile.
The model adequately describes the NO breakthrough profile during 100 min lean exposure as well as the subsequent release and reduction of the stored NO.
They tested the proposed method on a heterogeneous quarter of five-spot synthetic reservoir, considering six parameters such as; the geometry of insertion and porosity inside and outside the insertion, for matching tracer breakthrough profile.
These C, t pairs were the times in the breakthrough profile, when 1%, 5%, 25%, 50 %, 75 and 95%and95%e pofluthet was pollutantt the outlet of the system.
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Experimental breakthrough profiles were compared with the simulated breakthrough profiles obtained from the mathematical model.
The breakthrough profiles were obtained in these studies.
In addition, our model was validated against experimental breakthrough profiles.
Sharp breakthrough profiles were found for the microseparator compared to the packed bed.
A simple mathematical model to predict initial breakthrough profiles from preparative chromatographic separations of biological macromolecules has been developed.
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