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- W2474826215 abstract "A ∞/∞ analysis method was developed to evaluate the effect of feasibility analysis methods on designing the reactive distillation (RD) process. Its mathematic derivation revealed that results from the reactive flash-cascade model were the same as results from the ∞/∞ analysis method only if the predicted column discharge was a pure compound or a common azeotrope under chemical equilibrium, but those two results were different when the predicted column discharge was a reactive azeotrope. The same phenomenon also appeared in comparison between the singular point equation method and the reactive flash-cascade model rebuilt by a single mole-based parameter. In the case of the reactive azeotrope appearing in the column discharge, both the theoretical discovery and the case study suggested that the separating degree of a RD column predicted by the feasibility analysis was finite, and it may be broken through in reality by means of imposing greater separating power, such as more theoretical trays or a bigger ref..." @default.
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- W2474826215 date "2015-12-09" @default.
- W2474826215 modified "2023-09-28" @default.
- W2474826215 title "Finite Separating Degree in Feasibility Analysis Methods of Reactive Distillation Process" @default.
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- W2474826215 doi "https://doi.org/10.1021/ie504842h" @default.
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