Literature DB >> 20552704

An automated method for 'clumped-isotope' measurements on small carbonate samples.

Thomas W Schmid1, Stefano M Bernasconi.   

Abstract

Clumped-isotope geochemistry deals with the state of ordering of rare isotopes in molecules, in particular with their tendency to form bonds with other rare isotopes rather than with the most abundant ones. Among its possible applications, carbonate clumped-isotope thermometry is the one that has gained most attention because of the wide potential of applications in many disciplines of earth sciences. Clumped-isotope thermometry allows reconstructing the temperature of formation of carbonate minerals without knowing the isotopic composition of the water from which they were formed. This feature enables new approaches in paleothermometry. The currently published method is, however, limited by sample weight requirements of 10-15 mg and because measurements are performed manually. In this paper we present a new method using an automated sample preparation device coupled to an isotope ratio mass spectrometer. The method is based on the repeated analysis (n = 6-8) of 200 microg aliquots of sample material and completely automated measurements. In addition, we propose to use precisely calibrated carbonates spanning a wide range in Delta(47) instead of heated gases to correct for isotope effects caused by the source of the mass spectrometer, following the principle of equal treatment of the samples and standards. We present data for international standards (NBS 19 and LSVEC) and different carbonates formed at temperatures exceeding 600 degrees C to show that precisions in the range of 10 to 15 ppm (1 SE) can be reached for repeated analyses of a single sample. Finally, we discuss and validate the correction procedure based on high-temperature carbonates instead of heated gases. Copyright 2010 John Wiley & Sons, Ltd.

Entities:  

Year:  2010        PMID: 20552704     DOI: 10.1002/rcm.4598

Source DB:  PubMed          Journal:  Rapid Commun Mass Spectrom        ISSN: 0951-4198            Impact factor:   2.419


  5 in total

1.  Penultimate deglacial warming across the Mediterranean Sea revealed by clumped isotopes in foraminifera.

Authors:  L Rodríguez-Sanz; S M Bernasconi; G Marino; D Heslop; I A Müller; A Fernandez; K M Grant; E J Rohling
Journal:  Sci Rep       Date:  2017-11-29       Impact factor: 4.379

2.  Geochemistry and Microtextures of Vein Calcites Pervading the Izu-Bonin Forearc and Rear Arc Crust: New Insights From IODP Expeditions 352 and 351.

Authors:  D Quandt; P Micheuz; W Kurz; S M Bernasconi; D Hippler; K Krenn; C A Hauzenberger
Journal:  Geochem Geophys Geosyst       Date:  2020-02-19       Impact factor: 3.624

3.  Reducing Uncertainties in Carbonate Clumped Isotope Analysis Through Consistent Carbonate-Based Standardization.

Authors:  Stefano M Bernasconi; Inigo A Müller; Kristin D Bergmann; Sebastian F M Breitenbach; Alvaro Fernandez; David A Hodell; Madalina Jaggi; Anna Nele Meckler; Isabel Millan; Martin Ziegler
Journal:  Geochem Geophys Geosyst       Date:  2018-09-03       Impact factor: 3.624

4.  Bacterial and abiogenic carbonates formed in caves-no vital effect on clumped isotope compositions.

Authors:  Attila Demény; László Rinyu; Péter Németh; György Czuppon; Nóra Enyedi; Judit Makk; Szabolcs Leél-Őssy; Dóra Kesjár; Ivett Kovács
Journal:  PLoS One       Date:  2021-01-25       Impact factor: 3.240

5.  InterCarb: A Community Effort to Improve Interlaboratory Standardization of the Carbonate Clumped Isotope Thermometer Using Carbonate Standards.

Authors:  S M Bernasconi; M Daëron; K D Bergmann; M Bonifacie; A N Meckler; H P Affek; N Anderson; D Bajnai; E Barkan; E Beverly; D Blamart; L Burgener; D Calmels; C Chaduteau; M Clog; B Davidheiser-Kroll; A Davies; F Dux; J Eiler; B Elliott; A C Fetrow; J Fiebig; S Goldberg; M Hermoso; K W Huntington; E Hyland; M Ingalls; M Jaggi; C M John; A B Jost; S Katz; J Kelson; T Kluge; I J Kocken; A Laskar; T J Leutert; D Liang; J Lucarelli; T J Mackey; X Mangenot; N Meinicke; S E Modestou; I A Müller; S Murray; A Neary; N Packard; B H Passey; E Pelletier; S Petersen; A Piasecki; A Schauer; K E Snell; P K Swart; A Tripati; D Upadhyay; T Vennemann; I Winkelstern; D Yarian; N Yoshida; N Zhang; M Ziegler
Journal:  Geochem Geophys Geosyst       Date:  2021-05-24       Impact factor: 3.624

  5 in total

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