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Residue curve maps for reactive distillation systems with liquid-phase splitting
Authors:Zhiwen QiAspi Kolah  Kai Sundmacher
Affiliation:a Max-Planck-Institut für Dynamik komplexer technischer Systeme, Sandtorstrasse 1, D-39106 Magdeburg, Germany
b Otto-von-Guericke-Universität Magdeburg, Institut für Verfahrenstechnik, Lehrstuhl für Systemverfahrenstechnik, Universitätsplatz 2, D-39106 Magdeburg, Germany
Abstract:A model has been developed to study the effects of chemical kinetics on the residue curve maps (RCM) for reactive distillation systems with liquid phase splitting. In the model, chemical reaction can occur in both or only one of the two liquid phases. The heating policy V/V0=H/H0 is applied so that the kinetic effect can be described by a single parameter, the Damköhler number Da. The effects of reaction kinetics on pseudohomogeneous and heterogeneous mixtures have been compared. The properties of their RCMs are the same outside, but are fully different inside the liquid-liquid (L-L) region if they have different chemical equilibrium curves. Inside the L-L region, the chemical equilibrium curve coincides to a unique reactive liquid-liquid tie line in case that the pseudohomogeneous chemical equilibrium curve intersects with the L-L envelope. When the reaction occurs in only one of the two liquid phases, the residue curves inside the L-L region are strongly affected by the L-L envelope, especially at high Da. In the present paper, first an illustrative arbitrary reaction system, and then the reaction of cyclohexene with water to cyclohexanol are analysed with respect to their RCMs.
Keywords:Residue curves  Reaction kinetics  Phase splitting  Reactive distillation  Bifurcation analysis  Reactive azeotrope
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