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Published in: Measurement Techniques 6/2019

19-11-2019 | STATE STANDARDS

Creating Reference Standards for the Implementation of the State Verification Scheme for Water Content Measurement

Authors: M. Yu. Medvedevskikh, A. S. Sergeeva, M. P. Krasheninina, O. S. Shokhina

Published in: Measurement Techniques | Issue 6/2019

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Abstract

The results of the development of methods for the transfer of units of water content in solid and liquid substances and materials are presented. Four types of comparison standards have been created for the transfer of units of water content, reproduced at the State Primary Standard of units of mass fraction, mass (molar) concentration of water in solid and liquid substances and GET 173–2017 materials. The procedures for the preparation of reference standards materials based on a mixture of organic solvents that are stable in water content and sodium molybdate dihydrate, which has chemically bound (crystallized) water, are described. The methods of reproducing the units of water content used in determining the characteristics of reference standards are presented: coulometric and volumetric Karl Fischer titration, air-heat drying and thermogravimetric analysis with mass spectrometric detection. The characteristics and standard uncertainties of the comparison standards, due to the characterization method, heterogeneity, long-term and short-term instabilities, are evaluated. The main changes adopted within the framework of the processing of the State verification scheme for means of measuring the water content in solid and liquid substances and materials are described.

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Literature
1.
go back to reference V. V. Gorshkov, V. I. Koryakov, M. Yu. Medvedevskikh, and S. V. Medvedevskikh, “State Primary Standard of units of mass fraction and mass concentration of moisture in solid substances and materials,” Izmer. Tekhn., No. 4, 24–27 (2010). V. V. Gorshkov, V. I. Koryakov, M. Yu. Medvedevskikh, and S. V. Medvedevskikh, “State Primary Standard of units of mass fraction and mass concentration of moisture in solid substances and materials,” Izmer. Tekhn., No. 4, 24–27 (2010).
2.
go back to reference S. V. Medvedevskikh, M. Yu. Medvedevskikh, and Yu. A. Karpov, “General approaches to the estimation of the uncertainty of the results of reproducing units of water content in solids and materials,” Izmer. Tekhn., No. 8, 65–70 (2015). S. V. Medvedevskikh, M. Yu. Medvedevskikh, and Yu. A. Karpov, “General approaches to the estimation of the uncertainty of the results of reproducing units of water content in solids and materials,” Izmer. Tekhn., No. 8, 65–70 (2015).
3.
go back to reference M. Yu. Medvedevskikh, M. P. Krasheninina, A. S. Sergeyeva, and O. S. Shokhina, “Reference installation based on thermogravimetric analysis with mass spectrometric detection as part of the state primary standard GET 173,” Zavod. Lab. Diagn. Mater., No. 6, 63–70 (2018). M. Yu. Medvedevskikh, M. P. Krasheninina, A. S. Sergeyeva, and O. S. Shokhina, “Reference installation based on thermogravimetric analysis with mass spectrometric detection as part of the state primary standard GET 173,” Zavod. Lab. Diagn. Mater., No. 6, 63–70 (2018).
4.
go back to reference M. Yu. Medvedevskikh, A. S. Sergeyeva, and M. P. Krasheninina, “Standard samples in the fi eld of moisture metering (survey),” Zavod. Lab. Diagn. Mater., No. 6, 66–71 (2015). M. Yu. Medvedevskikh, A. S. Sergeyeva, and M. P. Krasheninina, “Standard samples in the fi eld of moisture metering (survey),” Zavod. Lab. Diagn. Mater., No. 6, 66–71 (2015).
5.
go back to reference J. R. De Laeter, J. K. Bohlke, P. De Bievre, et al., “Atomic weights of the elements: Review 2000,” Pure Appl. Chem., 75, No. 6, 683–800 (2003)CrossRef J. R. De Laeter, J. K. Bohlke, P. De Bievre, et al., “Atomic weights of the elements: Review 2000,” Pure Appl. Chem., 75, No. 6, 683–800 (2003)CrossRef
6.
go back to reference P. J. Mohr, B. N. Taylor, and D. B. Newell, “CODATA Recommended Values of the Fundamental Physical Constants: 2010,” J. Phys. Chem. Ref. Data, 41, No. 4, 1–84 (2012).CrossRef P. J. Mohr, B. N. Taylor, and D. B. Newell, “CODATA Recommended Values of the Fundamental Physical Constants: 2010,” J. Phys. Chem. Ref. Data, 41, No. 4, 1–84 (2012).CrossRef
7.
go back to reference H. Wang, K. Ma, W. Zhang, et al., “Production of three certified reference materials for water content based on mixed solutions of butanol, xylene and propylene carbonate,” Accred. Qual. Assur., 17, 589–596 (2012).CrossRef H. Wang, K. Ma, W. Zhang, et al., “Production of three certified reference materials for water content based on mixed solutions of butanol, xylene and propylene carbonate,” Accred. Qual. Assur., 17, 589–596 (2012).CrossRef
8.
go back to reference Quantitative Description of Uncertainty in Analytical Measurements. Manual EURACHEM/CITAC, VNIIM im. Mendeleeva, St. Petersburg (2002). Quantitative Description of Uncertainty in Analytical Measurements. Manual EURACHEM/CITAC, VNIIM im. Mendeleeva, St. Petersburg (2002).
9.
go back to reference K. Derffel, Statistics in Analytical Chemistry, Mir, Moscow (1994). K. Derffel, Statistics in Analytical Chemistry, Mir, Moscow (1994).
Metadata
Title
Creating Reference Standards for the Implementation of the State Verification Scheme for Water Content Measurement
Authors
M. Yu. Medvedevskikh
A. S. Sergeeva
M. P. Krasheninina
O. S. Shokhina
Publication date
19-11-2019
Publisher
Springer US
Published in
Measurement Techniques / Issue 6/2019
Print ISSN: 0543-1972
Electronic ISSN: 1573-8906
DOI
https://doi.org/10.1007/s11018-019-01649-3

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