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Published in: Measurement Techniques 1/2014

01-04-2014 | Physicochemical Measurements

Methods and Means of Dielectric Measurements of Aqueous Solutions of Electrolytes

Authors: O. M. Rozental, Yu. G. Podkin

Published in: Measurement Techniques | Issue 1/2014

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Abstract

It is shown that the frequency range of a 1–30 MHz applied magnetic field is wide enough for achieving correct separation of the signals of the real and imaginary components of the complex dielectric permittivity and, at the same time, is narrow enough to enable observation of ion-molecular complexes of aqueous solutions of electrolytes as identifying features of natural and waste waters. A growth in the real part of the dielectric permittivity of aqueous solutions in the layers of mass transfer associated with the intensity of mass transfer is established.

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Footnotes
1
In accordance with the requirements of the Federal Law of the Russian Federation No. 416-FZ of December 7, 2011, “On Water Supply and Overflow Drainage,” and the Resolution of the Government of the Russian Federation No. 525 of June 21, 2013, “On the Approval of Rules for Monitoring the Composition and Properties of Waste Water.”
 
Literature
1.
go back to reference L. N. Aleksandrovskaya and O. M. Rozental, “Water ecology normalization,” Vodn. Resursy, 38, No. 1, 108–119 (2011). L. N. Aleksandrovskaya and O. M. Rozental, “Water ecology normalization,” Vodn. Resursy, 38, No. 1, 108–119 (2011).
2.
go back to reference Yu. G. Podkin and O. M. Rozental, “Dielectric measurements of aqueous solutions of electrolytes,” Izmer. Tekhn., No. 12, 57–62 (2013). Yu. G. Podkin and O. M. Rozental, “Dielectric measurements of aqueous solutions of electrolytes,” Izmer. Tekhn., No. 12, 57–62 (2013).
3.
go back to reference A. S. Lipeyev, Dielectric Relaxation and Molecular-Kinetic State of Water in Solutions: Auth. Abstr. Dissert. Doct. Chem. Sci., Moscow (2004). A. S. Lipeyev, Dielectric Relaxation and Molecular-Kinetic State of Water in Solutions: Auth. Abstr. Dissert. Doct. Chem. Sci., Moscow (2004).
4.
go back to reference J. S. Bobowski and T. Johnson, “Permittivity measurements of biological samples by an open-ended coaxial line,” Progr. Electromag. Res. B, 40, 159–183 (2012).CrossRef J. S. Bobowski and T. Johnson, “Permittivity measurements of biological samples by an open-ended coaxial line,” Progr. Electromag. Res. B, 40, 159–183 (2012).CrossRef
5.
go back to reference A. V. Vichkan and P. A. Mel’yanovskii, “High-frequency complex dielectric permittivity of aqueous salt solutions,” in: Proc. 12th Int. Crimean Conf. Microwave & Telecom. Technol. (CriMiCo’2002), pp. 542–543. A. V. Vichkan and P. A. Mel’yanovskii, “High-frequency complex dielectric permittivity of aqueous salt solutions,” in: Proc. 12th Int. Crimean Conf. Microwave & Telecom. Technol. (CriMiCo’2002), pp. 542–543.
6.
go back to reference L. N. Rashkovich,V. A. Smirnov, and E. V. Petrova, “Certain dielectric properties of crystals of monoclinal lysozyme,” Fiz. Tverd. Tela, 50, Iss. 4, 608–613 (2008). L. N. Rashkovich,V. A. Smirnov, and E. V. Petrova, “Certain dielectric properties of crystals of monoclinal lysozyme,” Fiz. Tverd. Tela, 50, Iss. 4, 608–613 (2008).
8.
go back to reference L. P. Semikhina, Dielectric and Magnetic Properties of Water and Aqueous Solutions and Biological Objects in Weak Electromagnetic Fields [in Russian], Tyumen State University, Tyumen (2005). L. P. Semikhina, Dielectric and Magnetic Properties of Water and Aqueous Solutions and Biological Objects in Weak Electromagnetic Fields [in Russian], Tyumen State University, Tyumen (2005).
9.
go back to reference E. A. Antsiferov, “Anomalous increase in the dielectric permittivity of solutions of chlorides of alkaline metals,” Depon. Nauch. Raboty, No. 7 (2005), VINITI, No. 700-B (2005). E. A. Antsiferov, “Anomalous increase in the dielectric permittivity of solutions of chlorides of alkaline metals,” Depon. Nauch. Raboty, No. 7 (2005), VINITI, No. 700-B (2005).
10.
go back to reference E. A. Antsiferov, Dielectric Properties of Aqueous Solutions of Salts of Alkaline Metals, Halogen Hydride Acids and Alkalis: Auth. Abstr. Dissert. Doct. Chem. Sci., Irkutsk (2006). E. A. Antsiferov, Dielectric Properties of Aqueous Solutions of Salts of Alkaline Metals, Halogen Hydride Acids and Alkalis: Auth. Abstr. Dissert. Doct. Chem. Sci., Irkutsk (2006).
11.
go back to reference N. A. Izmaylov, Electrochemistry of Solutions [in Russian], Khimiya, Moscow (1966). N. A. Izmaylov, Electrochemistry of Solutions [in Russian], Khimiya, Moscow (1966).
13.
go back to reference R. Buchner, J. Barthel, and J. Stauber, “The dielectric relaxation of water between 0°C and 35°C,” Chem. Phys. Lett., 306, No. 1–2, 57–63 (1999).CrossRefADS R. Buchner, J. Barthel, and J. Stauber, “The dielectric relaxation of water between 0°C and 35°C,” Chem. Phys. Lett., 306, No. 1–2, 57–63 (1999).CrossRefADS
14.
go back to reference V. S. Aleksandrov, L. A. Badenko, and V. S. Snegov, “Macroscopic fluctuations in the density of water,” Izmer. Tekhn., No. 3, 54–56 (2004); Measur. Techn., 47, No. 3, 295–299 (2004).CrossRef V. S. Aleksandrov, L. A. Badenko, and V. S. Snegov, “Macroscopic fluctuations in the density of water,” Izmer. Tekhn., No. 3, 54–56 (2004); Measur. Techn., 47, No. 3, 295–299 (2004).CrossRef
Metadata
Title
Methods and Means of Dielectric Measurements of Aqueous Solutions of Electrolytes
Authors
O. M. Rozental
Yu. G. Podkin
Publication date
01-04-2014
Publisher
Springer US
Published in
Measurement Techniques / Issue 1/2014
Print ISSN: 0543-1972
Electronic ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-014-0415-2

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