Entropy production and exergy loss in experimental distillation columns

Diabatic distillation, i.e. with heat exchangers on all trays, can increase the second law energy efficiency drastically compared to adiabatic distillation. The purpose of this research was to describe the entropy production rate in one adiabatic and one diabatic experimental water/ethanol rectifyin...

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Veröffentlicht in:Chemical engineering science 2003-04, Vol.58 (8), p.1587-1597
Hauptverfasser: de Koeijer, Gelein, Rivero, Ricardo
Format: Artikel
Sprache:eng
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Zusammenfassung:Diabatic distillation, i.e. with heat exchangers on all trays, can increase the second law energy efficiency drastically compared to adiabatic distillation. The purpose of this research was to describe the entropy production rate in one adiabatic and one diabatic experimental water/ethanol rectifying column by applying the theory of irreversible thermodynamics. As a benchmark for the description, an exergy analysis of the two columns was used. This analysis showed that the diabatic column looses 39% less exergy than the adiabatic column. Heat and mass transfer on the trays and in the heat exchangers determined the entropy production rate, and neither pressure drop nor mixing effects played a large role in these columns. The significance of this work is the experimental confirmation of the theory on diabatic distillation.
ISSN:0009-2509
1873-4405
DOI:10.1016/S0009-2509(02)00627-9