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A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository

We present an innovative electrochemical probe for the monitoring of pH, redox potential and conductivity in near-field rocks of deep geological radioactive waste repositories. The probe is composed of a monocrystalline antimony electrode for pH sensing, four AgCl/Ag-based reference or Cl(−) selecti...

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Autores principales: Daoudi, Jordan, Betelu, Stephanie, Tzedakis, Theodore, Bertrand, Johan, Ignatiadis, Ioannis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5492355/
https://www.ncbi.nlm.nih.gov/pubmed/28608820
http://dx.doi.org/10.3390/s17061372
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author Daoudi, Jordan
Betelu, Stephanie
Tzedakis, Theodore
Bertrand, Johan
Ignatiadis, Ioannis
author_facet Daoudi, Jordan
Betelu, Stephanie
Tzedakis, Theodore
Bertrand, Johan
Ignatiadis, Ioannis
author_sort Daoudi, Jordan
collection PubMed
description We present an innovative electrochemical probe for the monitoring of pH, redox potential and conductivity in near-field rocks of deep geological radioactive waste repositories. The probe is composed of a monocrystalline antimony electrode for pH sensing, four AgCl/Ag-based reference or Cl(−) selective electrodes, one Ag(2)S/Ag-based reference or S(2−) selective electrode, as well as four platinum electrodes, a gold electrode and a glassy-carbon electrode for redox potential measurements. Galvanostatic electrochemistry impedance spectroscopy using AgCl/Ag-based and platinum electrodes measure conductivity. The use of such a multi-parameter probe provides redundant information, based as it is on the simultaneous behaviour under identical conditions of different electrodes of the same material, as well as on that of electrodes made of different materials. This identifies the changes in physical and chemical parameters in a solution, as well as the redox reactions controlling the measured potential, both in the solution and/or at the electrode/solution interface. Understanding the electrochemical behaviour of selected materials thus is a key point of our research, as provides the basis for constructing the abacuses needed for developing robust and reliable field sensors.
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spelling pubmed-54923552017-07-03 A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository Daoudi, Jordan Betelu, Stephanie Tzedakis, Theodore Bertrand, Johan Ignatiadis, Ioannis Sensors (Basel) Article We present an innovative electrochemical probe for the monitoring of pH, redox potential and conductivity in near-field rocks of deep geological radioactive waste repositories. The probe is composed of a monocrystalline antimony electrode for pH sensing, four AgCl/Ag-based reference or Cl(−) selective electrodes, one Ag(2)S/Ag-based reference or S(2−) selective electrode, as well as four platinum electrodes, a gold electrode and a glassy-carbon electrode for redox potential measurements. Galvanostatic electrochemistry impedance spectroscopy using AgCl/Ag-based and platinum electrodes measure conductivity. The use of such a multi-parameter probe provides redundant information, based as it is on the simultaneous behaviour under identical conditions of different electrodes of the same material, as well as on that of electrodes made of different materials. This identifies the changes in physical and chemical parameters in a solution, as well as the redox reactions controlling the measured potential, both in the solution and/or at the electrode/solution interface. Understanding the electrochemical behaviour of selected materials thus is a key point of our research, as provides the basis for constructing the abacuses needed for developing robust and reliable field sensors. MDPI 2017-06-13 /pmc/articles/PMC5492355/ /pubmed/28608820 http://dx.doi.org/10.3390/s17061372 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Daoudi, Jordan
Betelu, Stephanie
Tzedakis, Theodore
Bertrand, Johan
Ignatiadis, Ioannis
A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository
title A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository
title_full A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository
title_fullStr A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository
title_full_unstemmed A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository
title_short A Multi-Parametric Device with Innovative Solid Electrodes for Long-Term Monitoring of pH, Redox-Potential and Conductivity in a Nuclear Waste Repository
title_sort multi-parametric device with innovative solid electrodes for long-term monitoring of ph, redox-potential and conductivity in a nuclear waste repository
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5492355/
https://www.ncbi.nlm.nih.gov/pubmed/28608820
http://dx.doi.org/10.3390/s17061372
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