Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt

Prospection techniques based on measuring the electrical resistivity of geomaterials are being used mainly for geophysical characterization, for evaluating soil contamination and the extension of contaminated areas, in addition to the compaction control in geotechnical works. This technique is based...

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Main Authors: Dias Ana Sofia, Gingine Vikas, Cardoso Rafaela
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:E3S Web of Conferences
Online Access:http://dx.doi.org/10.1051/e3sconf/20160910002
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spelling doaj-504202388c4f40ebad2d8bc6374d71d42021-02-02T07:51:25ZengEDP SciencesE3S Web of Conferences2267-12422016-01-0191000210.1051/e3sconf/20160910002e3sconf_eunsat2016_10002Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of saltDias Ana Sofia0Gingine Vikas1Cardoso Rafaela2CERis/ICIST, Instituto Superior Técnico, University of LisbonCERis/ICIST, Instituto Superior Técnico, University of LisbonCERis/ICIST, Instituto Superior Técnico, University of LisbonProspection techniques based on measuring the electrical resistivity of geomaterials are being used mainly for geophysical characterization, for evaluating soil contamination and the extension of contaminated areas, in addition to the compaction control in geotechnical works. This technique is based on the fact that contrasts in electrical resistivity along the profiles analysed help identifying zones of transition, because this property is affected by the presence of water and dissolved salts in the electrolyte, as well as by soil structure. However, in situ data interpretation has some difficulties because electrical resistivity is affected by changes in the unsaturated state of the soil, as well as by the presence of salt compounds (natural or from contamination). The correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt was investigated in the study presented. The samples tested were compacted for the same voids ratio and water content, however one type was prepared with distilled water and the other with a NaCl solution (0.5 M). This is a relatively small concentration of salt, to which there were no significant changes in the liquid and plasticity limits, neither on zeta potential if pH is equal to 7, however the quantity of ions supplied was enough to affect the electrical resistivity of the compacted material. The water retention curve of the two kinds of samples was determined using a water dewpoint device and through vapour equilibrium. The electrical resistivity was measured in samples to which suction was known, allowing to find a relationship between total suction and electrical conductivity, and therefore between water content and electrical resistivity. The results found are commented considering the electrical transport through the liquid phase and its continuity in the porous media, which depends on the conductivity of the electrolyte and on the degree of saturation.http://dx.doi.org/10.1051/e3sconf/20160910002
collection DOAJ
language English
format Article
sources DOAJ
author Dias Ana Sofia
Gingine Vikas
Cardoso Rafaela
spellingShingle Dias Ana Sofia
Gingine Vikas
Cardoso Rafaela
Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt
E3S Web of Conferences
author_facet Dias Ana Sofia
Gingine Vikas
Cardoso Rafaela
author_sort Dias Ana Sofia
title Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt
title_short Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt
title_full Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt
title_fullStr Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt
title_full_unstemmed Correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt
title_sort correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2016-01-01
description Prospection techniques based on measuring the electrical resistivity of geomaterials are being used mainly for geophysical characterization, for evaluating soil contamination and the extension of contaminated areas, in addition to the compaction control in geotechnical works. This technique is based on the fact that contrasts in electrical resistivity along the profiles analysed help identifying zones of transition, because this property is affected by the presence of water and dissolved salts in the electrolyte, as well as by soil structure. However, in situ data interpretation has some difficulties because electrical resistivity is affected by changes in the unsaturated state of the soil, as well as by the presence of salt compounds (natural or from contamination). The correspondence between electrical resistivity and total suction in compacted kaolin considering the presence of salt was investigated in the study presented. The samples tested were compacted for the same voids ratio and water content, however one type was prepared with distilled water and the other with a NaCl solution (0.5 M). This is a relatively small concentration of salt, to which there were no significant changes in the liquid and plasticity limits, neither on zeta potential if pH is equal to 7, however the quantity of ions supplied was enough to affect the electrical resistivity of the compacted material. The water retention curve of the two kinds of samples was determined using a water dewpoint device and through vapour equilibrium. The electrical resistivity was measured in samples to which suction was known, allowing to find a relationship between total suction and electrical conductivity, and therefore between water content and electrical resistivity. The results found are commented considering the electrical transport through the liquid phase and its continuity in the porous media, which depends on the conductivity of the electrolyte and on the degree of saturation.
url http://dx.doi.org/10.1051/e3sconf/20160910002
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