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The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions

The Raman wavenumber of the symmetric stretching vibration of carbonate ion (ν(1)-CO(3)(2−)) was measured in three aqueous solutions containing 2.0 mol·L(−1) Na(2)CO(3) and 0.20, 0.42, or 0.92 mol·L(−1) NaCl, respectively, from 122 to 1538 MPa at 22 °C using a moissanite anvil cell. The ν(1) Raman s...

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Autores principales: Wu, Jia, Wang, Shixia, Zheng, Haifei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159916/
https://www.ncbi.nlm.nih.gov/pubmed/27982064
http://dx.doi.org/10.1038/srep39088
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author Wu, Jia
Wang, Shixia
Zheng, Haifei
author_facet Wu, Jia
Wang, Shixia
Zheng, Haifei
author_sort Wu, Jia
collection PubMed
description The Raman wavenumber of the symmetric stretching vibration of carbonate ion (ν(1)-CO(3)(2−)) was measured in three aqueous solutions containing 2.0 mol·L(−1) Na(2)CO(3) and 0.20, 0.42, or 0.92 mol·L(−1) NaCl, respectively, from 122 to 1538 MPa at 22 °C using a moissanite anvil cell. The ν(1) Raman signal linearly shifted to higher wavenumbers with increasing pressure. Most importantly, the slope of ν(1)-CO(3)(2−) Raman frequency shift (∂ν(1)/∂P)(I) was independent of NaCl concentration. Moreover, elevated ionic strength was found to shift the apparent outline of the carbonate peak toward low wavenumbers, possibly by increasing the proportion of the contact ion pair NaCO(3)(−). Further investigations revealed no cross-interaction between the pressure effect and the ionic strength effect on the Raman spectra, possibly because the distribution of different ion-pair species in the carbonate equilibrium was largely pressure-independent. These results suggested that the ionic strength should be incorporated as an additional constraint for measuring the internal pressure of various solution-based systems. Combining the ν(1)-CO(3)(2−) Raman frequency slope with the pressure herein with the values for the temperature or the ionic strength dependencies determined from previous studies, we developed an empirical equation that can be used to estimate the pressure of carbonate-bearing aqueous solutions.
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spelling pubmed-51599162016-12-21 The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions Wu, Jia Wang, Shixia Zheng, Haifei Sci Rep Article The Raman wavenumber of the symmetric stretching vibration of carbonate ion (ν(1)-CO(3)(2−)) was measured in three aqueous solutions containing 2.0 mol·L(−1) Na(2)CO(3) and 0.20, 0.42, or 0.92 mol·L(−1) NaCl, respectively, from 122 to 1538 MPa at 22 °C using a moissanite anvil cell. The ν(1) Raman signal linearly shifted to higher wavenumbers with increasing pressure. Most importantly, the slope of ν(1)-CO(3)(2−) Raman frequency shift (∂ν(1)/∂P)(I) was independent of NaCl concentration. Moreover, elevated ionic strength was found to shift the apparent outline of the carbonate peak toward low wavenumbers, possibly by increasing the proportion of the contact ion pair NaCO(3)(−). Further investigations revealed no cross-interaction between the pressure effect and the ionic strength effect on the Raman spectra, possibly because the distribution of different ion-pair species in the carbonate equilibrium was largely pressure-independent. These results suggested that the ionic strength should be incorporated as an additional constraint for measuring the internal pressure of various solution-based systems. Combining the ν(1)-CO(3)(2−) Raman frequency slope with the pressure herein with the values for the temperature or the ionic strength dependencies determined from previous studies, we developed an empirical equation that can be used to estimate the pressure of carbonate-bearing aqueous solutions. Nature Publishing Group 2016-12-16 /pmc/articles/PMC5159916/ /pubmed/27982064 http://dx.doi.org/10.1038/srep39088 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Wu, Jia
Wang, Shixia
Zheng, Haifei
The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions
title The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions
title_full The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions
title_fullStr The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions
title_full_unstemmed The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions
title_short The influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ Raman study on Na(2)CO(3)-NaCl solutions
title_sort influence of ionic strength on carbonate-based spectroscopic barometry for aqueous fluids: an in-situ raman study on na(2)co(3)-nacl solutions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5159916/
https://www.ncbi.nlm.nih.gov/pubmed/27982064
http://dx.doi.org/10.1038/srep39088
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