Optimized sequential extraction for carbonates: Quantification and δ13C analysis of calcite, dolomite and siderite

Publication date

2016-12-02

Authors

Morera-Chavarría, A.ISNI 0000000436414539
Griffioen, J.ORCID 0000-0001-6307-0100ISNI 000000039033097X
Behrends, T.ISNI 0000000419421286

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Siderite is present in diverse types of rocks and sediments, but its quantification is cumbersome when present in relatively low contents. A new analytical method for the sequential separation of different carbonate phases is presented. The separation, quantification and characterization of the carbonates is based on different kinetic reactions during acid digestion in combination with monitoring the solution composition and the concomitant release of CO2. Trapping the released gasses permits the isotopic characterization (δ13C) of the different phases. Based on published rate laws, an idealized model was built to identify pH and temperature conditions for optimal separation of the various carbonates by taking the size distribution of carbonate particles into consideration. Results from the theoretical survey were implemented in an extraction scheme, which was optimized and evaluated by tests on pure mineral phases and their mixtures. Further tests on a diverse array of sediment and rock samples validated the specificity and reproducibility of the method.

Keywords

Siderite, Calcite, Dolomite, Acid digestion, Sequential extraction, δ13C, Sediments, Iron biogeochemistry, Taverne

Citation

Morera-Chavarría, A, Griffioen, J & Behrends, T 2016, 'Optimized sequential extraction for carbonates : Quantification and δ 13 C analysis of calcite, dolomite and siderite', Chemical Geology, vol. 443, pp. 146-157. https://doi.org/10.1016/j.chemgeo.2016.09.025