Article ID Journal Published Year Pages File Type
691838 Journal of the Taiwan Institute of Chemical Engineers 2011 7 Pages PDF
Abstract

In this work, a nonequilibrium dynamic model has been developed based on unsteady-state diffusion-reaction film modeling for simultaneous reactive absorption of gases. The model can predict ionic and molecular forms of all species exist in liquid phase. As a case study, simultaneous reactive absorption of ammonia and carbon dioxide into partially carbonated ammonia solutions was modeled. Dynamic modeling of the process leads to a system of partial differential equations, which has to be solved numerically using method of lines. For the process, conversion film parameter and carbonation ratio are presented as a pair of components absorption rate criteria. The steady-state experimental data were conducted using a pilot scale absorption column for the evaluation of the model. A comparison between the experimental data and the simulation results proves the good predictivity of the presented nonequilibrium dynamic model.

Related Topics
Physical Sciences and Engineering Chemical Engineering Process Chemistry and Technology
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