Well-preserved low-Mg calcite tests of modern benthic foraminifera from a depth transect off SW Norway show decreasing Sr/Ca with increasing water depth (r = –0.84). The Mg/Ca ratios also decrease with increasing water depth, although in a curvilinear fashion. Moreover, the inter- and intra-species scatter is apparently larger than for Sr/Ca. A majority of the analysed specimens have Mn/Ca < 200 μmol/mol, and show Sr/Ca, Mg/Ca that fall within published ranges for benthic foraminiferal calcite, indicating that pristine biogenic calcite has been analysed. The uniform temperature and salinity of bottom waters below ~800 m moreover indicate that neither temperature nor salinity can explain the observed Me/Ca trends. The Sr/Ca and Mg/Ca depth t...
We analysed Mg/Ca, Sr/Ca and Ca isotope ratios of benthonic foraminifers from sediment core tops ret...
Mg/Ca ratios in benthic foraminiferal shells are frequently used in paleoceanographic studies to est...
Accurately quantifying deep-sea calcite dissolution is crucial for understanding the role of the mar...
Well-preserved low-Mg calcite tests of modern benthic foraminifera from a depth transect off SW Norw...
International audienceMg/Ca palaeothermometry in foraminiferal calcite is a widely applied tool in p...
Measurements of Sr/Ca of benthic foraminifera show a linear decrease with water depth which is super...
Foraminiferal calcite Mg/Ca (Mg/CaCC) is used in paleoceanographic studies to reconstruct temperatur...
We investigated the effect of the calcium concentration in seawater and thereby the calcite saturati...
We investigated the effect of the calcium concentration in seawater and thereby the calcite saturati...
transects have been analyzed in order to assess the influence of bottom water temperature (BWT) and ...
Core top samples from Atlantic (Little Bahama Banks (LBB)) and Pacific (Hawaii and Indonesia) depth ...
We analysed Mg/Ca, Sr/Ca and Ca isotope ratios of benthonic foraminifers from sediment core tops ret...
planktic foraminifera ecology dissolution core-top plankton tow Mg/Ca palaeothermometry in foraminif...
Changes in the Sr to Ca ratio of sea water have important implications for the interpretation of pas...
Mg / Ca ratios in foraminiferal tests are routinely used as paleotemperature proxies, but on long ti...
We analysed Mg/Ca, Sr/Ca and Ca isotope ratios of benthonic foraminifers from sediment core tops ret...
Mg/Ca ratios in benthic foraminiferal shells are frequently used in paleoceanographic studies to est...
Accurately quantifying deep-sea calcite dissolution is crucial for understanding the role of the mar...
Well-preserved low-Mg calcite tests of modern benthic foraminifera from a depth transect off SW Norw...
International audienceMg/Ca palaeothermometry in foraminiferal calcite is a widely applied tool in p...
Measurements of Sr/Ca of benthic foraminifera show a linear decrease with water depth which is super...
Foraminiferal calcite Mg/Ca (Mg/CaCC) is used in paleoceanographic studies to reconstruct temperatur...
We investigated the effect of the calcium concentration in seawater and thereby the calcite saturati...
We investigated the effect of the calcium concentration in seawater and thereby the calcite saturati...
transects have been analyzed in order to assess the influence of bottom water temperature (BWT) and ...
Core top samples from Atlantic (Little Bahama Banks (LBB)) and Pacific (Hawaii and Indonesia) depth ...
We analysed Mg/Ca, Sr/Ca and Ca isotope ratios of benthonic foraminifers from sediment core tops ret...
planktic foraminifera ecology dissolution core-top plankton tow Mg/Ca palaeothermometry in foraminif...
Changes in the Sr to Ca ratio of sea water have important implications for the interpretation of pas...
Mg / Ca ratios in foraminiferal tests are routinely used as paleotemperature proxies, but on long ti...
We analysed Mg/Ca, Sr/Ca and Ca isotope ratios of benthonic foraminifers from sediment core tops ret...
Mg/Ca ratios in benthic foraminiferal shells are frequently used in paleoceanographic studies to est...
Accurately quantifying deep-sea calcite dissolution is crucial for understanding the role of the mar...