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- W61908610 abstract "Recently, a batch reactor integrated with membrane-based separation has been a research area of growing interest and address for improving process performance in order to achieve a high desired product yield. The inclusive of membrane-based separation can shift the equilibrium of chemical reaction by selectively removing the reaction products, by-product species from reaction mixtures and therefore increase the yield of a desired product. In this work, a batch reactor with membrane-base separation for esterification has been studied. To operate the reactor efficiently, an optimal temperature has been determined to achieve best reaction rate and membrane permeability for overall batch. Furthermore, Model Predictive Control (MPC) coupled with an Extended Kalman Filter (EKF) has been designed and implemented to track the optimal temperature profile. The performance of the designed controller has been compared to that of a Generic Model Control (GMC) with Extended Kalman Filter techniques (EKF). Simulation studies have shown that the proposed controller can successfully control the reactor temperature at a desired set point and it is much more effective than the GMC in nominal, plant/model mismatch and noise cases." @default.
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- W61908610 date "2008-02-20" @default.
- W61908610 modified "2023-09-28" @default.
- W61908610 title "Model predictive control of a batch reactor with membrane-based separation" @default.
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