Southern Ocean deep-water circulation plays an important role in the global carbon cycle. On geological time-scales, upwelling along the Chilean continental margin likely contributed to the deglacial atmospheric carbon dioxide rise, but little quantitative evidence exists of carbon storage. Here, we use a new X-ray Micro-Computer-Tomography method to assess foraminiferal test dissolution as proxy for paleo-carbonate ion concentrations [CO3^2−]. Our subantarctic Southeast Pacific sediment core depth transect shows significant deep-water [CO3^2−] variations during the Last Glacial Maximum and Deglaciation (10 – 22 ka BP). We provide evidence for an increase in [CO3^2−] during the early deglacial period (15-19 ka BP), followed by a ca. 40 µmol...
We present new deep water carbonate ion concentration ([CO3 2-]) records, reconstructed using Cibici...
It has been shown that the deep Eastern Equatorial Pacific (EEP) region was poorly ventilated during...
Late Pleistocene atmospheric CO2 concentrations varied by ~90 ppm, rising with Antarctic and global ...
Southern Ocean deep-water circulation plays a vital role in the global carbon cycle. On geological t...
To understand the whereabouts of CO2 during glacials and its pathways during deglacial transitions i...
Ocean circulation critically affects the global climate and atmospheric carbon dioxide through redis...
During the last deglaciation, the opposing patterns of atmospheric CO2 and radiocarbon activities (Δ...
International audienceCoeval changes in atmospheric CO2 and C-14 contents during the last deglaciati...
Coeval changes in atmospheric CO2 and 14C contents during the last deglaciation are often attributed...
Processes underlying changes in the oceanic carbon storage during the Last Glacial Maximum and the s...
Carbon release from the deep ocean at glacial terminations is a critical component of past climate c...
Records from ice and marine sediment cores have revealed significant changes in the ocean and atmosp...
It has been proposed that the ventilation of the deep Pacific carbon pool was not significantly redu...
Reconstructions on Antarctic ice cores revealed pronounced, millennial-scale variabilities in atmosp...
AbstractIt has been proposed that the ventilation of the deep Pacific carbon pool was not significan...
We present new deep water carbonate ion concentration ([CO3 2-]) records, reconstructed using Cibici...
It has been shown that the deep Eastern Equatorial Pacific (EEP) region was poorly ventilated during...
Late Pleistocene atmospheric CO2 concentrations varied by ~90 ppm, rising with Antarctic and global ...
Southern Ocean deep-water circulation plays a vital role in the global carbon cycle. On geological t...
To understand the whereabouts of CO2 during glacials and its pathways during deglacial transitions i...
Ocean circulation critically affects the global climate and atmospheric carbon dioxide through redis...
During the last deglaciation, the opposing patterns of atmospheric CO2 and radiocarbon activities (Δ...
International audienceCoeval changes in atmospheric CO2 and C-14 contents during the last deglaciati...
Coeval changes in atmospheric CO2 and 14C contents during the last deglaciation are often attributed...
Processes underlying changes in the oceanic carbon storage during the Last Glacial Maximum and the s...
Carbon release from the deep ocean at glacial terminations is a critical component of past climate c...
Records from ice and marine sediment cores have revealed significant changes in the ocean and atmosp...
It has been proposed that the ventilation of the deep Pacific carbon pool was not significantly redu...
Reconstructions on Antarctic ice cores revealed pronounced, millennial-scale variabilities in atmosp...
AbstractIt has been proposed that the ventilation of the deep Pacific carbon pool was not significan...
We present new deep water carbonate ion concentration ([CO3 2-]) records, reconstructed using Cibici...
It has been shown that the deep Eastern Equatorial Pacific (EEP) region was poorly ventilated during...
Late Pleistocene atmospheric CO2 concentrations varied by ~90 ppm, rising with Antarctic and global ...