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Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture

This paper presents dielectric measurements of talc, glass beads, and their mixtures under different moisture and salinity levels. The measurements were conducted using a prototype seven-rod probe (15 mm long central rod) connected to a single port of vector network analyzer. The samples were moiste...

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Autores principales: Szerement, Justyna, Saito, Hironobu, Furuhata, Kahori, Yagihara, Shin, Szypłowska, Agnieszka, Lewandowski, Arkadiusz, Kafarski, Marcin, Wilczek, Andrzej, Majcher, Jacek, Woszczyk, Aleksandra, Skierucha, Wojciech
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7215746/
https://www.ncbi.nlm.nih.gov/pubmed/32340125
http://dx.doi.org/10.3390/ma13081968
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author Szerement, Justyna
Saito, Hironobu
Furuhata, Kahori
Yagihara, Shin
Szypłowska, Agnieszka
Lewandowski, Arkadiusz
Kafarski, Marcin
Wilczek, Andrzej
Majcher, Jacek
Woszczyk, Aleksandra
Skierucha, Wojciech
author_facet Szerement, Justyna
Saito, Hironobu
Furuhata, Kahori
Yagihara, Shin
Szypłowska, Agnieszka
Lewandowski, Arkadiusz
Kafarski, Marcin
Wilczek, Andrzej
Majcher, Jacek
Woszczyk, Aleksandra
Skierucha, Wojciech
author_sort Szerement, Justyna
collection PubMed
description This paper presents dielectric measurements of talc, glass beads, and their mixtures under different moisture and salinity levels. The measurements were conducted using a prototype seven-rod probe (15 mm long central rod) connected to a single port of vector network analyzer. The samples were moistened with distilled water and KCl solutions in order to obtain six different moisture content levels. The complex dielectric permittivity was determined from vector network analyzer reflection-coefficient measurements based on the open-water-liquid calibration procedure. Next, the fitting of volumetric water content–real part of dielectric permittivity calibration curves was performed for each material at selected frequencies, and the obtained relations were compared with well-known calibration equations. Additionally, a salinity index for the tested materials was calculated. It was concluded that pure talc is not an optimal material for the calibration and verification of dielectric methods. The calibration curves obtained for glass beads and the mixtures of glass beads with talc gave results close to well-known reference calibration functions. Additionally, the addition of talc caused the data points to be less scattered. Moreover, the values of the salinity index for the tested materials were in a good agreement with literature data for sand. The obtained results indicated that glass beads with the addition of talc can be used as a reference material for the calibration and verification of dielectric methods and devices for soil moisture measurement.
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spelling pubmed-72157462020-05-22 Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture Szerement, Justyna Saito, Hironobu Furuhata, Kahori Yagihara, Shin Szypłowska, Agnieszka Lewandowski, Arkadiusz Kafarski, Marcin Wilczek, Andrzej Majcher, Jacek Woszczyk, Aleksandra Skierucha, Wojciech Materials (Basel) Article This paper presents dielectric measurements of talc, glass beads, and their mixtures under different moisture and salinity levels. The measurements were conducted using a prototype seven-rod probe (15 mm long central rod) connected to a single port of vector network analyzer. The samples were moistened with distilled water and KCl solutions in order to obtain six different moisture content levels. The complex dielectric permittivity was determined from vector network analyzer reflection-coefficient measurements based on the open-water-liquid calibration procedure. Next, the fitting of volumetric water content–real part of dielectric permittivity calibration curves was performed for each material at selected frequencies, and the obtained relations were compared with well-known calibration equations. Additionally, a salinity index for the tested materials was calculated. It was concluded that pure talc is not an optimal material for the calibration and verification of dielectric methods. The calibration curves obtained for glass beads and the mixtures of glass beads with talc gave results close to well-known reference calibration functions. Additionally, the addition of talc caused the data points to be less scattered. Moreover, the values of the salinity index for the tested materials were in a good agreement with literature data for sand. The obtained results indicated that glass beads with the addition of talc can be used as a reference material for the calibration and verification of dielectric methods and devices for soil moisture measurement. MDPI 2020-04-23 /pmc/articles/PMC7215746/ /pubmed/32340125 http://dx.doi.org/10.3390/ma13081968 Text en © 2020 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
Szerement, Justyna
Saito, Hironobu
Furuhata, Kahori
Yagihara, Shin
Szypłowska, Agnieszka
Lewandowski, Arkadiusz
Kafarski, Marcin
Wilczek, Andrzej
Majcher, Jacek
Woszczyk, Aleksandra
Skierucha, Wojciech
Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture
title Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture
title_full Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture
title_fullStr Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture
title_full_unstemmed Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture
title_short Dielectric Properties of Glass Beads with Talc as a Reference Material for Calibration and Verification of Dielectric Methods and Devices for Measuring Soil Moisture
title_sort dielectric properties of glass beads with talc as a reference material for calibration and verification of dielectric methods and devices for measuring soil moisture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7215746/
https://www.ncbi.nlm.nih.gov/pubmed/32340125
http://dx.doi.org/10.3390/ma13081968
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