Batch Distillation: Simulation, Optimal Design, and Control, Second EditionMost available books in chemical engineering mainly pertain to continuous processes, with batch distillation relegated to a small section. Filling this void in the chemical engineering literature, Batch Distillation: Simulation, Optimal Design, and Control, Second Edition helps readers gain a solid, hands-on background in batch processing. The seco |
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average distillate composition azeotropic distillation Azeotropic System batch column batch distillation column batch rectifier Batch Stripper binary azeotropes Boiling bottom composition Calculations calculus of variation Chapter composition of component Composition Profiles condenser constraint continuous distillation differential equations Diwekar Diwekar U. M. Doherty enthalpy equilibrium Example extractive distillation feasibility Fenske equation formulation heat duty holdup initial integration key component liquid composition material balance maximum distillate problem maximum principle middle vessel column minimum number Minimum-Boiling Azeotropic molar mole fraction mole/hr number of plates objective function obtain optimal control optimal control problems optimal reflux ordinary differential equations parameter polynomial reaction reactive distillation reboiler reflux operation reflux ratio relative volatility residue curve map rigorous model Rmin Runge–Kutta method separatrix shortcut method shown in Figure simple distillation simulation solution solve stiff stochastic techniques theoretical plates thermodynamic tion uncertainties Underwood equations unstable node vapor boilup rate variable reflux