Most conceptual models of ocean circulation during past glacial periods invoke a shallowed North Atlantic‐sourced water mass overlying an expanded, poorly ventilated Southern Ocean (SO)‐sourced deep water mass (Southern Component Water, or SCW), rich in remineralised carbon, within the Atlantic basin. However, the ventilation state, carbon inventory and circulation pathway of SCW sourced in the Pacific sector of the SO (Pacific SO) during glacial periods are less well understood. Here, we present multi‐proxy data – including δ18O and δ13C measured on the benthic and planktic foraminifera Cibicidoides wuellerstorfi, and Neogloboquadrina pachyderma, and productivity proxies including percent CaCO3, total organic carbon (TOC) and Ba/Ti – from ...
We have generated an early Pleistocene benthic isotopic record for the Ocean Drilling Program Site 8...
Changes in Southern Ocean hydrography may have played an important role in the Middle Pleistocene Tr...
A prominent two-step rise in atmospheric CO2 marked the end of the last glacial. The steps coincid...
Most conceptual models of ocean circulation during past glacial periods invoke a shallowed North Atl...
The structure of the glacial ocean was significantly different to that of the present day with inter...
We compiled carbon isotope records from the North Atlantic, South Atlantic, and Pacific oceans to es...
International audienceDeep water circulation changes during the initiation of the last glacial perio...
A prominent two-step rise in atmospheric CO2 marked the end of the last glacial. The steps coincided...
Glacial/interglacial changes in Southern Ocean’s air-sea gas exchange have been considered as import...
The role of the Southern Ocean in releasing CO2 (sequestered in the global ocean during the Last Gla...
We demonstrate that the carbon isotopic signal of mid-depth waters evolved differently from deep wat...
Variations in the contribution of North Atlantic Deep Water (NADW), relative to North Pacific Deep W...
Changes in Atlantic deep water circulation were reconstructed by comparing the benthic foraminiferal...
Better insight into the glacial whereabouts of CO2 is crucial to achieve a comprehensive overview of...
Deep‐sea sediment core FR1/97 GC‐12 is located 990 mbsl in the northern Tasman Sea, southwest Pacifi...
We have generated an early Pleistocene benthic isotopic record for the Ocean Drilling Program Site 8...
Changes in Southern Ocean hydrography may have played an important role in the Middle Pleistocene Tr...
A prominent two-step rise in atmospheric CO2 marked the end of the last glacial. The steps coincid...
Most conceptual models of ocean circulation during past glacial periods invoke a shallowed North Atl...
The structure of the glacial ocean was significantly different to that of the present day with inter...
We compiled carbon isotope records from the North Atlantic, South Atlantic, and Pacific oceans to es...
International audienceDeep water circulation changes during the initiation of the last glacial perio...
A prominent two-step rise in atmospheric CO2 marked the end of the last glacial. The steps coincided...
Glacial/interglacial changes in Southern Ocean’s air-sea gas exchange have been considered as import...
The role of the Southern Ocean in releasing CO2 (sequestered in the global ocean during the Last Gla...
We demonstrate that the carbon isotopic signal of mid-depth waters evolved differently from deep wat...
Variations in the contribution of North Atlantic Deep Water (NADW), relative to North Pacific Deep W...
Changes in Atlantic deep water circulation were reconstructed by comparing the benthic foraminiferal...
Better insight into the glacial whereabouts of CO2 is crucial to achieve a comprehensive overview of...
Deep‐sea sediment core FR1/97 GC‐12 is located 990 mbsl in the northern Tasman Sea, southwest Pacifi...
We have generated an early Pleistocene benthic isotopic record for the Ocean Drilling Program Site 8...
Changes in Southern Ocean hydrography may have played an important role in the Middle Pleistocene Tr...
A prominent two-step rise in atmospheric CO2 marked the end of the last glacial. The steps coincid...