This study addresses computational fluid dynamics (CFD) for designing internally heat-integrated pressure-swing distillation (HIPSD) with improved energy efficiency in azeotropic distillation. An extended concept of pinch pressure is applied to determine the operating pressure of the HIPSD in a double annular column configuration for the circumvention of a distillation boundary and adequate heat transfer. For the separation of a highly azeotropic ternary mixture of butyl acetate, butanol, and water, the combination of a single unit of HIPSD and a decanter is employed. This azeotropic mixture is separated in different design alternatives for the given initial feed compositions. In each sequence, the heat transfer rate inside the HIPSD was calculated by the CFD method, and the total utility consumption accordingly decreased by 9.72% and 15.44%. The reboiler and condenser duty in the HIPSD were reduced by up to 48.65%. The separation efficiency in the condenser of the high-pressure column was improved enough to reach a zero reflux by the internal heat integration.
机构:
College of Chemical and Environmental Engineering,Shandong University of Science and TechnologyCollege of Chemical and Environmental Engineering,Shandong University of Science and Technology
Zhishan Zhang
Qingjun Zhang
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College of Chemical and Environmental Engineering,Shandong University of Science and TechnologyCollege of Chemical and Environmental Engineering,Shandong University of Science and Technology
Qingjun Zhang
Guijie Li
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机构:
School of Materials Science and Engineering,Shandong University of Science and TechnologyCollege of Chemical and Environmental Engineering,Shandong University of Science and Technology
Guijie Li
Meiling Liu
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College of Chemical and Environmental Engineering,Shandong University of Science and TechnologyCollege of Chemical and Environmental Engineering,Shandong University of Science and Technology
Meiling Liu
Jun Gao
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College of Chemical and Environmental Engineering,Shandong University of Science and TechnologyCollege of Chemical and Environmental Engineering,Shandong University of Science and Technology