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Ionic transport processes: in electrochemistry and membrane science

Modelling of heterogeneous processes, such as electrochemical reactions, extraction or ion-exchange, usually requires solving the transport problem associated to the process. Since the processes at the phase boundary are described by scalar quantities and transport quantities are vectors or tensors,...

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Detalles Bibliográficos
Autores principales: Kontturi, Kyösti, Murtomäki, Lasse, Manzanares, José A
Lenguaje:eng
Publicado: Oxford Univ. Press 2008
Materias:
Acceso en línea:https://dx.doi.org/10.1093/acprof:oso/9780199533817.001.0001
http://cds.cern.ch/record/1138164
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author Kontturi, Kyösti
Murtomäki, Lasse
Manzanares, José A
author_facet Kontturi, Kyösti
Murtomäki, Lasse
Manzanares, José A
author_sort Kontturi, Kyösti
collection CERN
description Modelling of heterogeneous processes, such as electrochemical reactions, extraction or ion-exchange, usually requires solving the transport problem associated to the process. Since the processes at the phase boundary are described by scalar quantities and transport quantities are vectors or tensors, coupling of them can take place only via conservation of mass, charge or momentum. In this book, transport of ionic species is addressed in a versatile manner, emphasizing the mutualcoupling of fluxes in particular. Treatment is based on the formalism of irreversible thermodynamics, i.e. on linear
id cern-1138164
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
publisher Oxford Univ. Press
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spelling cern-11381642021-04-22T01:43:26Zdoi:10.1093/acprof:oso/9780199533817.001.0001http://cds.cern.ch/record/1138164engKontturi, KyöstiMurtomäki, LasseManzanares, José AIonic transport processes: in electrochemistry and membrane scienceChemical Physics and ChemistryModelling of heterogeneous processes, such as electrochemical reactions, extraction or ion-exchange, usually requires solving the transport problem associated to the process. Since the processes at the phase boundary are described by scalar quantities and transport quantities are vectors or tensors, coupling of them can take place only via conservation of mass, charge or momentum. In this book, transport of ionic species is addressed in a versatile manner, emphasizing the mutualcoupling of fluxes in particular. Treatment is based on the formalism of irreversible thermodynamics, i.e. on linear Oxford Univ. Pressoai:cds.cern.ch:11381642008
spellingShingle Chemical Physics and Chemistry
Kontturi, Kyösti
Murtomäki, Lasse
Manzanares, José A
Ionic transport processes: in electrochemistry and membrane science
title Ionic transport processes: in electrochemistry and membrane science
title_full Ionic transport processes: in electrochemistry and membrane science
title_fullStr Ionic transport processes: in electrochemistry and membrane science
title_full_unstemmed Ionic transport processes: in electrochemistry and membrane science
title_short Ionic transport processes: in electrochemistry and membrane science
title_sort ionic transport processes: in electrochemistry and membrane science
topic Chemical Physics and Chemistry
url https://dx.doi.org/10.1093/acprof:oso/9780199533817.001.0001
http://cds.cern.ch/record/1138164
work_keys_str_mv AT kontturikyosti ionictransportprocessesinelectrochemistryandmembranescience
AT murtomakilasse ionictransportprocessesinelectrochemistryandmembranescience
AT manzanaresjosea ionictransportprocessesinelectrochemistryandmembranescience