Simultaneous δ2H and δ18O analyses of water inclusions in halite with off‐axis integrated cavity output spectroscopy

Stable isotope compositions of ancient halite fluid inclusions have been recognized to be valuable tools for reconstructing past environments. Nevertheless, in order to better understand the genesis of halite deposits, it could be of great interest to combine both δ2H and δ18O measurements of the wa...

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Published inJournal of mass spectrometry. Vol. 55; no. 10; pp. e4615 - n/a
Main Authors Fourel, François, Lécuyer, Christophe, Jame, Patrick, Guironnet, Alexandre, Boutier, Antoine, Barbier, Manon, Blamey, Nigel, Brand, Uwe, Fralick, Philip
Format Journal Article
LanguageEnglish
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Wiley-Blackwell
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Abstract Stable isotope compositions of ancient halite fluid inclusions have been recognized to be valuable tools for reconstructing past environments. Nevertheless, in order to better understand the genesis of halite deposits, it could be of great interest to combine both δ2H and δ18O measurements of the water trapped as inclusions in the defects of the mineral lattice. We developed a method combining off‐axis integrated cavity output spectroscopy (OA‐ICOS) connected on line with a modified elemental analyzer (EA‐OA‐ICOS) to perform those measurements. The first step was to test the method with synthetic halite crystals precipitated in the laboratory from isotopically calibrated waters. Water isotopic signatures have been measured with conventional techniques, equilibration for δ18O and chromium reduction for δ2H. Then, we modified and optimized a conventional EA to connect it online with an OA‐ICOS instrument for H2O measurements. The technique is first evaluated for calibrated free water samples. The technique is also evaluated for salt matrix effect, accuracy, and linearity for both isotopic signatures. Then, the technique is used to measure simultaneously δ2H and δ18O values of halite water inclusions precipitated from the evaporation experiments. Data generated with this new technique appeared to be comparable with those inferred from prior off‐line technique studies. The advantages offered by the OA‐ICOS technique are the simultaneous acquisition of both isotopic ratios and the substantial reduction of data acquisition time and sample aliquot size. Natural halite samples have been analyzed with this method. Natural halite samples as old as Precambrian have also been analyzed with this method.
AbstractList Stable isotope compositions of ancient halite fluid inclusions have been recognized to be valuable tools for reconstructing past environments. Nevertheless, in order to better understand the genesis of halite deposits, it could be of great interest to combine both δ2H and δ18O measurements of the water trapped as inclusions in the defects of the mineral lattice. We developed a method combining off‐axis integrated cavity output spectroscopy (OA‐ICOS) connected on line with a modified elemental analyzer (EA‐OA‐ICOS) to perform those measurements. The first step was to test the method with synthetic halite crystals precipitated in the laboratory from isotopically calibrated waters. Water isotopic signatures have been measured with conventional techniques, equilibration for δ18O and chromium reduction for δ2H. Then, we modified and optimized a conventional EA to connect it online with an OA‐ICOS instrument for H2O measurements. The technique is first evaluated for calibrated free water samples. The technique is also evaluated for salt matrix effect, accuracy, and linearity for both isotopic signatures. Then, the technique is used to measure simultaneously δ2H and δ18O values of halite water inclusions precipitated from the evaporation experiments. Data generated with this new technique appeared to be comparable with those inferred from prior off‐line technique studies. The advantages offered by the OA‐ICOS technique are the simultaneous acquisition of both isotopic ratios and the substantial reduction of data acquisition time and sample aliquot size. Natural halite samples have been analyzed with this method. Natural halite samples as old as Precambrian have also been analyzed with this method.
Author Guironnet, Alexandre
Brand, Uwe
Fralick, Philip
Lécuyer, Christophe
Boutier, Antoine
Barbier, Manon
Blamey, Nigel
Jame, Patrick
Fourel, François
Author_xml – sequence: 1
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  surname: Fourel
  fullname: Fourel, François
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  organization: Université Claude Bernard Lyon 1
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  givenname: Christophe
  surname: Lécuyer
  fullname: Lécuyer, Christophe
  organization: Université Claude Bernard Lyon 1
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  givenname: Patrick
  surname: Jame
  fullname: Jame, Patrick
  organization: Institut des Sciences Analytiques de Lyon (ISA Lyon)
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  givenname: Alexandre
  surname: Guironnet
  fullname: Guironnet, Alexandre
  organization: Institut des Sciences Analytiques de Lyon (ISA Lyon)
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  givenname: Antoine
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  fullname: Boutier, Antoine
  organization: Université Claude Bernard Lyon 1
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  fullname: Blamey, Nigel
  organization: Western University Canada
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  givenname: Uwe
  surname: Brand
  fullname: Brand, Uwe
  organization: Brock University
– sequence: 9
  givenname: Philip
  surname: Fralick
  fullname: Fralick, Philip
  organization: Lakehead University
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Snippet Stable isotope compositions of ancient halite fluid inclusions have been recognized to be valuable tools for reconstructing past environments. Nevertheless, in...
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StartPage e4615
SubjectTerms Analytical chemistry
Analytical methods
Chemical Sciences
Chromium
Crystal defects
Crystals
Data acquisition
Defects
Environmental Sciences
Evaluation
Evaporation
Fluid inclusions
Halite
Halites
hydrogen
Isotopes
laser spectroscopy
Linearity
oxygen
Precambrian
Reduction
Signatures
Spectroscopy
Spectrum analysis
Stable isotopes
Water analysis
Water sampling
Title Simultaneous δ2H and δ18O analyses of water inclusions in halite with off‐axis integrated cavity output spectroscopy
URI https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fjms.4615
https://www.proquest.com/docview/2448092688
https://search.proquest.com/docview/2439975825
https://hal.science/hal-02891946
Volume 55
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