Modelling and experimental measurement of the closed equilibrium system of H2O–SrS

This study investigates the H2OâSrS (strontium sulphide) equilibrium system at [SrS] between 0.125 and 88.064 mM (mmol·Lâ1) in a closed oxygen-free test system at 25 ºC (the measured systemâs pH being in the range of 10.0â13.1). The distribution of ions and molecules in this system is described in...

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Main Authors: Alexey Mashirin, Ergo Rikmann, Toomas Tenno, Kalev Uiga, Ivar Zekker
Format: Article
Language:English
Published: Estonian Academy Publishers 2020-10-01
Series:Proceedings of the Estonian Academy of Sciences
Subjects:
Online Access:https://kirj.ee/wp-content/plugins/kirj/pub/proc-2020-4-287-297_20201016111706.pdf
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spelling doaj-5fa005807076486b89462387564f0c4e2020-11-25T04:08:22ZengEstonian Academy PublishersProceedings of the Estonian Academy of Sciences1736-60461736-75302020-10-0169428729710.3176/proc.2020.4.0210.3176/proc.2020.4.02Modelling and experimental measurement of the closed equilibrium system of H2O–SrSAlexey Mashirin0Ergo Rikmann1Toomas Tenno2Kalev Uiga3Ivar Zekker4Institute of Chemistry, University of Tartu, Ravila 14A, 50411 Tartu, EstoniaInstitute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, EstoniaInstitute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, Estonia; Corresponding author, toomas.tenno@ut.eeInstitute of Chemistry, University of Tartu, Ravila 14A, 50411 Tartu, EstoniaInstitute of Chemistry, University of Tartu, Ravila 14a, 50411 Tartu, EstoniaThis study investigates the H2OâSrS (strontium sulphide) equilibrium system at [SrS] between 0.125 and 88.064 mM (mmol·Lâ1) in a closed oxygen-free test system at 25 ºC (the measured systemâs pH being in the range of 10.0â13.1). The distribution of ions and molecules in this system is described in a structural scheme. A proton transfer model was developed to calculate the pH, concentrations of formed ions and molecules in the system by using an iteration method. In the formation of the basic equilibrium system of H2OâSrS, the dissociation of SrS in aqueous media causes the release of the S2â ions that will accept a certain quantity of protons (â[H+]S2â), originating from the reversible dissociation of water (â[H+]H2O). In the final closed system of H2OâSrS, after adding larger amounts (â¥10 g·Lâ1) of salt into MilliQ water, strontium hydroxide was formed as a precipitate. Proton transfer parameters, pH, and equilibrium concentrations of ions and molecules in the liquid phase were calculated and experimentally validated.https://kirj.ee/wp-content/plugins/kirj/pub/proc-2020-4-287-297_20201016111706.pdfsolubility product of srs (kspsrs)dissociation constants of h2sproton-centric model of the h2o–srs equilibrium system
collection DOAJ
language English
format Article
sources DOAJ
author Alexey Mashirin
Ergo Rikmann
Toomas Tenno
Kalev Uiga
Ivar Zekker
spellingShingle Alexey Mashirin
Ergo Rikmann
Toomas Tenno
Kalev Uiga
Ivar Zekker
Modelling and experimental measurement of the closed equilibrium system of H2O–SrS
Proceedings of the Estonian Academy of Sciences
solubility product of srs (ksp
srs)
dissociation constants of h2s
proton-centric model of the h2o–srs equilibrium system
author_facet Alexey Mashirin
Ergo Rikmann
Toomas Tenno
Kalev Uiga
Ivar Zekker
author_sort Alexey Mashirin
title Modelling and experimental measurement of the closed equilibrium system of H2O–SrS
title_short Modelling and experimental measurement of the closed equilibrium system of H2O–SrS
title_full Modelling and experimental measurement of the closed equilibrium system of H2O–SrS
title_fullStr Modelling and experimental measurement of the closed equilibrium system of H2O–SrS
title_full_unstemmed Modelling and experimental measurement of the closed equilibrium system of H2O–SrS
title_sort modelling and experimental measurement of the closed equilibrium system of h2o–srs
publisher Estonian Academy Publishers
series Proceedings of the Estonian Academy of Sciences
issn 1736-6046
1736-7530
publishDate 2020-10-01
description This study investigates the H2OâSrS (strontium sulphide) equilibrium system at [SrS] between 0.125 and 88.064 mM (mmol·Lâ1) in a closed oxygen-free test system at 25 ºC (the measured systemâs pH being in the range of 10.0â13.1). The distribution of ions and molecules in this system is described in a structural scheme. A proton transfer model was developed to calculate the pH, concentrations of formed ions and molecules in the system by using an iteration method. In the formation of the basic equilibrium system of H2OâSrS, the dissociation of SrS in aqueous media causes the release of the S2â ions that will accept a certain quantity of protons (â[H+]S2â), originating from the reversible dissociation of water (â[H+]H2O). In the final closed system of H2OâSrS, after adding larger amounts (â¥10 g·Lâ1) of salt into MilliQ water, strontium hydroxide was formed as a precipitate. Proton transfer parameters, pH, and equilibrium concentrations of ions and molecules in the liquid phase were calculated and experimentally validated.
topic solubility product of srs (ksp
srs)
dissociation constants of h2s
proton-centric model of the h2o–srs equilibrium system
url https://kirj.ee/wp-content/plugins/kirj/pub/proc-2020-4-287-297_20201016111706.pdf
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