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In addition, our model was validated against experimental breakthrough profiles.
Simulations from a two-domain model matched the experimental breakthrough curves very well.
Experimental breakthrough curves were analyzed using a theoretical 1D model developed by Bohart and Adams.
The model described satisfactorily the experimental breakthrough curves and well explained the performance of oxidation.
The optimized dispersivity, D is calculated so that the theoretical predictions match the experimental breakthrough curves.
The experimental breakthrough curve showed a superior fit with the Bohart-Adams model.
Experimental breakthrough profiles were compared with the simulated breakthrough profiles obtained from the mathematical model.
The results were validated by means of experimental breakthrough tests in a fixed-bed set-up.
The agreement between the prediction and the experimental breakthrough curves is satisfied.
Experimental breakthrough data for a representative set of volatile organic compounds (VOCs) has been measured.
Bromide experimental breakthrough curves were analyzed using convective dispersive and dual-permeability (DP) models (HYDRUS-1D).
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