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The Diffusion Coefficient of Ionic Species Through Unsaturated Materials
by
Mercado-Mendoza, Hugo
, Bourbon, Xavier
, Lorente, Sylvie
in
Chlorides
/ Civil Engineering
/ Classical and Continuum Physics
/ Diffusion coefficient
/ Drying
/ Earth and Environmental Science
/ Earth Sciences
/ Earth, ocean, space
/ Engineering Sciences
/ Equivalent circuits
/ Exact sciences and technology
/ Geotechnical Engineering & Applied Earth Sciences
/ Hydrogeology
/ Hydrology. Hydrogeology
/ Hydrology/Water Resources
/ Industrial Chemistry/Chemical Engineering
/ Migration
/ Porous materials
/ Saturation
/ Transport
2013
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The Diffusion Coefficient of Ionic Species Through Unsaturated Materials
by
Mercado-Mendoza, Hugo
, Bourbon, Xavier
, Lorente, Sylvie
in
Chlorides
/ Civil Engineering
/ Classical and Continuum Physics
/ Diffusion coefficient
/ Drying
/ Earth and Environmental Science
/ Earth Sciences
/ Earth, ocean, space
/ Engineering Sciences
/ Equivalent circuits
/ Exact sciences and technology
/ Geotechnical Engineering & Applied Earth Sciences
/ Hydrogeology
/ Hydrology. Hydrogeology
/ Hydrology/Water Resources
/ Industrial Chemistry/Chemical Engineering
/ Migration
/ Porous materials
/ Saturation
/ Transport
2013
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Do you wish to request the book?
The Diffusion Coefficient of Ionic Species Through Unsaturated Materials
by
Mercado-Mendoza, Hugo
, Bourbon, Xavier
, Lorente, Sylvie
in
Chlorides
/ Civil Engineering
/ Classical and Continuum Physics
/ Diffusion coefficient
/ Drying
/ Earth and Environmental Science
/ Earth Sciences
/ Earth, ocean, space
/ Engineering Sciences
/ Equivalent circuits
/ Exact sciences and technology
/ Geotechnical Engineering & Applied Earth Sciences
/ Hydrogeology
/ Hydrology. Hydrogeology
/ Hydrology/Water Resources
/ Industrial Chemistry/Chemical Engineering
/ Migration
/ Porous materials
/ Saturation
/ Transport
2013
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The Diffusion Coefficient of Ionic Species Through Unsaturated Materials
Journal Article
The Diffusion Coefficient of Ionic Species Through Unsaturated Materials
2013
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Overview
This paper documents the measurement of the chloride diffusion coefficient through partially saturated porous materials. The method was electrochemical impedance spectroscopy, and it was validated by comparison to migration tests in fully saturated samples. A microstructure-based electrical equivalent circuit was developed to obtain the main features of the sample including the material electrical resistance for any water saturation degree. It is shown that the chloride diffusion coefficient varies over four orders of magnitude when the material is almost dry to fully saturated.
Publisher
Springer Netherlands,Springer,Springer Verlag
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