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Semi-automatic determination of the carbon and oxygen stable isotope compositions of calcite and dolomite in natural mixtures
Authors:M Baudrand  G Aloisi  C Lécuyer  F Martineau  F Fourel  G Escarguel  M-M Blanc-Valleron  J-M Rouchy  V Grossi
Institution:1. Université Lyon 1, CNRS, UMR 5276, Laboratoire de Géologie de Lyon, 2 rue Raphaël Dubois, F-69622 Villeurbanne, France;2. Muséum National d’Histoire Naturelle, CNRS, UMR 7207, Paléobiodiversité et Paléoenvironnements, 57 rue Cuvier, CP 48, 75005 Paris, France
Abstract:A semi-automatic, on-line method was developed to determine the δ13C and δ18O values of coexisting calcite and dolomite. An isotopic mass balance is used to calculate the compositions of dolomite after having measured that of calcite and of the “bulk” sample. The limit of validity of this method is established by performing isotopic measurements of artificial mixtures made of precisely weighted and isotopically-characterised dolomite and calcite. The accuracy and repeatability of the calculation of dolomite δ13C and δ18O are statistically determined with a Monte-Carlo procedure of error propagation. Stable isotope ratios are determined by using an automated MultiPrep™ system on-line with an isotope-ratio mass-spectrometer (IRMS). The reaction time and the temperature of reaction were optimised by comparing the results with the isotopic composition of known mixtures. The best results were obtained by phosphoric acid digestion after 20 min at 40 °C for calcite and 45 min at 90 °C for dolomite. This procedure allows an accurate determination of the isotopic ratios from small samples (300 μg). Application of this protocol to natural mixtures of calcite and dolomite requires the accurate determination of the relative abundance of calcite and dolomite by combining Mélières manocalcimetry (MMC) and X-ray diffractometry (XRD).
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