Coupled Mg/Ca and clumped isotope analyses of foraminifera provide consistent water temperatures
Abstract
The reliable determination of past seawater temperature is fundamental to paleoclimate studies. We test the robustness of two paleotemperature proxies by combining Mg/Ca and clumped isotopes (Δ47) on the same specimens of core top planktonic foraminifera. The strength of this approach is that Mg/Ca and Δ47 are measured on the same specimens of foraminifera, thereby providing two independent estimates of temperature. This replication constitutes a rigorous test of individual methods with the advantage that the same approach can be applied to fossil specimens. Aliquots for Mg/Ca and clumped analyses are treated in the same manner following a modified cleaning procedure of foraminifera for trace element and isotopic analyses. We analysed eight species of planktonic foraminifera from coretop samples over a wide range of temperatures from 2 to 29°C. We provide a new clumped isotope temperature calibrations using subaqueous cave carbonates, which is consistent with recent studies. Tandem Mg/Ca–Δ47 results follow an exponential curve as predicted by temperature calibration equations. Observed deviations from the predicted Mg/Ca-Δ47 relationship are attributed to the effects of Fe-Mn oxide coatings, contamination, or dissolution of foraminiferal tests. This coupled approach provides a high degree of confidence in temperature estimates when Mg/Ca and Δ47 yield concordant results, and can be used to infer the past δ18O of seawater (δ18Osw) for paleoclimate studies. Mehr anzeigen
Persistenter Link
https://doi.org/10.3929/ethz-b-000280900Publikationsstatus
publishedExterne Links
Zeitschrift / Serie
Geochimica et Cosmochimica ActaBand
Seiten / Artikelnummer
Verlag
ElsevierThema
Clumped isotopes; Mg/Ca analysis; Planktonic foraminifera; Paleoceanography; PaleoclimatologyOrganisationseinheit
09601 - Stoll, Heather / Stoll, Heather
Förderung
160046 - Clumped Isotope Thermometry in burial diagenetic systems - part 2: new constraints on the kinetics of 13C-18O bond reordering from contact metamorphic aureoles of magmatic intrusions (SNF)