The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures

Coupling between heat and mass transfer occurs across interfaces and in vapor and liquid films. In this work, we present the first rigorous investigation of the role of these physical phenomena in the mathematical modeling of distillation columns for a nitrogen–oxygen mixture. Coupling phenomena in...

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Main Authors: Diego Kingston, Øivind Wilhelmsen, Signe Kjelstrup
Format: Article
Language:English
Published: Elsevier 2020-11-01
Series:Chemical Engineering Science: X
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590140020300228
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spelling doaj-fdd8d3475e2141ae872f7c7612d3cf992020-12-17T04:51:26ZengElsevierChemical Engineering Science: X2590-14002020-11-018100076The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixturesDiego Kingston0Øivind Wilhelmsen1Signe Kjelstrup2Universidad de Buenos Aires, Facultad de Ingeniería, Departamento de Química, Paseo Colón 850, C1063ACV Buenos Aires, Argentina; PoreLab, Department of Chemistry, Norwegian University of Science and Technology, NO-7491 Trondheim, Norway; Corresponding author at: Universidad de Buenos Aires, Facultad de Ingeniería, Departamento de Química, Paseo Colón 850, C1063ACV Buenos Aires, Argentina.Department of Energy and Process Engineering, Norwegian University of Science and Technology, NO-7491 Trondheim, Norway; Porelab, SINTEF Energy Research, NO-7465 Trondheim, NorwayPoreLab, Department of Chemistry, Norwegian University of Science and Technology, NO-7491 Trondheim, NorwayCoupling between heat and mass transfer occurs across interfaces and in vapor and liquid films. In this work, we present the first rigorous investigation of the role of these physical phenomena in the mathematical modeling of distillation columns for a nitrogen–oxygen mixture. Coupling phenomena in the liquid film have a strong influence on the local behavior, where it can alter the direction of the measurable heat flux in that phase and change the nitrogen molar flux by 45% on average. However, we found that the steady-state temperature and concentration profiles inside an adiabatic distillation column for nitrogen–oxygen separation remain largely unchanged. This supports the common approach of neglecting these physical phenomena in such modeling. Since the values of the interface coefficients, estimated by kinetic theory, have unknown uncertainties, further work is needed to reveal the true magnitude and relevance of these parameters, either experimentally or by use of non-equilibrium molecular dynamics simulations.http://www.sciencedirect.com/science/article/pii/S2590140020300228InterfaceSoret effectNon-Equilibrium Thermodynamicsair separationdistillation
collection DOAJ
language English
format Article
sources DOAJ
author Diego Kingston
Øivind Wilhelmsen
Signe Kjelstrup
spellingShingle Diego Kingston
Øivind Wilhelmsen
Signe Kjelstrup
The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures
Chemical Engineering Science: X
Interface
Soret effect
Non-Equilibrium Thermodynamics
air separation
distillation
author_facet Diego Kingston
Øivind Wilhelmsen
Signe Kjelstrup
author_sort Diego Kingston
title The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures
title_short The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures
title_full The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures
title_fullStr The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures
title_full_unstemmed The influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures
title_sort influence of interfacial transfer and film coupling in the modeling of distillation columns to separate nitrogen and oxygen mixtures
publisher Elsevier
series Chemical Engineering Science: X
issn 2590-1400
publishDate 2020-11-01
description Coupling between heat and mass transfer occurs across interfaces and in vapor and liquid films. In this work, we present the first rigorous investigation of the role of these physical phenomena in the mathematical modeling of distillation columns for a nitrogen–oxygen mixture. Coupling phenomena in the liquid film have a strong influence on the local behavior, where it can alter the direction of the measurable heat flux in that phase and change the nitrogen molar flux by 45% on average. However, we found that the steady-state temperature and concentration profiles inside an adiabatic distillation column for nitrogen–oxygen separation remain largely unchanged. This supports the common approach of neglecting these physical phenomena in such modeling. Since the values of the interface coefficients, estimated by kinetic theory, have unknown uncertainties, further work is needed to reveal the true magnitude and relevance of these parameters, either experimentally or by use of non-equilibrium molecular dynamics simulations.
topic Interface
Soret effect
Non-Equilibrium Thermodynamics
air separation
distillation
url http://www.sciencedirect.com/science/article/pii/S2590140020300228
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