Abstract
A mathematical model for the free radical polymerization of styrene is developed to predict the steady-state and dynamic behavior of a continuous process. Special emphasis is given for the kinetic and thermodynamic models, where the most sensitive parameters were estimated using data from an industrial plant. The thermodynamic model is based on a cubic equation of state and a mixing rule applied to the low-pressure vapor-liquid equilibrium of polymeric solutions, suitable for modeling the auto-refrigerated polymerization reactors, which use the vaporization rate to remove the reaction heat from the exothermic reactions. The simulation results show the high predictive capability of the proposed model when compared with plant data for conversion, average molecular weights, polydispersity, melt flow index, and thermal properties for different polymer grades.
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Almeida, A. S., Wada, K., & Secchi, A. R. (2008). Simulation of styrene polymerization reactors: Kinetic and thermodynamic modeling. Brazilian Journal of Chemical Engineering, 25(2), 337–349. https://doi.org/10.1590/S0104-66322008000200012
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