International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO$_2$ ) are thought to arise from the rapid release of CO$_2$ sequestered in the deep sea, primarily via the Southern Ocean. Here, we present radiocarbon evidence from the Atlantic sector of the Southern Ocean that strongly supports this hypothesis. We show that during the last glacial period, deep water circulating around Antarctica was more than two timesolder than today relative to the atmosphere.During deglaciation, the dissipation of this old and presumably CO$_2$ -enriched deep water played an important role in the pulsed rise of atmospheric CO$_2$ through its variable influence on the upwelling branch of the Antarctic overtu...
Better insight into the glacial whereabouts of CO2 is crucial to achieve a comprehensive overview of...
No single mechanism can account for the full amplitude of past atmospheric carbon dioxide (CO2) conc...
Throughout the transition from the last Glacial to the current Interglacial, rising atmospheric CO2 ...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial climate transitions were accompanied by millennial-scale pulses in atmosph...
No single mechanism can account for the full amplitude of past atmospheric carbon dioxide (CO2) conc...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Decades ago, the analysis of ancient air – trapped deep inside of Antarctic glaciers – revealed an a...
Better insight into the glacial whereabouts of CO2 is crucial to achieve a comprehensive overview of...
No single mechanism can account for the full amplitude of past atmospheric carbon dioxide (CO2) conc...
Throughout the transition from the last Glacial to the current Interglacial, rising atmospheric CO2 ...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
International audiencePast glacial-interglacial increases in the concentration of atmospheric carbon...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Past glacial-interglacial climate transitions were accompanied by millennial-scale pulses in atmosph...
No single mechanism can account for the full amplitude of past atmospheric carbon dioxide (CO2) conc...
Past glacial-interglacial increases in the concentration of atmospheric carbon dioxide (CO2) are tho...
Decades ago, the analysis of ancient air – trapped deep inside of Antarctic glaciers – revealed an a...
Better insight into the glacial whereabouts of CO2 is crucial to achieve a comprehensive overview of...
No single mechanism can account for the full amplitude of past atmospheric carbon dioxide (CO2) conc...
Throughout the transition from the last Glacial to the current Interglacial, rising atmospheric CO2 ...