The cause of the initial rise in atmospheric CO2 during the last deglaciation remains unknown. Coincident with the rising atmospheric CO2, the δ13C of atmospheric CO2 decreased by ~0.3‰ during Heinrich Stadial 1 (HS1: 14.5-17.5 kyr BP), which requires the input of carbon from an isotopically light reservoir. The light carbon signal in the atmosphere occurred concurrently with the carbon isotope minimum, or a decrease in surface ocean δ13C of ~0.5‰, suggesting the two phenomena are related. The leading hypotheses explaining the δ13C minimum are (1) enhanced ventilation of 13C-depleted abyssal water in the Southern Ocean which in turn caused low δ13C values in the surface ocean and atmosphere, and (2) a reduction in the Atlantic Meridional Ov...
The link between the atmospheric CO2 level and the ventilation state of the deep ocean is an importa...
Financial support was provided by the European Community through a Marie Curie Intra-European Fellow...
Atmospheric CO2 was ∼90 ppmv lower at the Last Glacial Maximum (LGM) compared to the late Holocene, ...
The cause of the initial rise in atmospheric CO2 during the last deglaciation remains unknown. Coinc...
The cause of the initial rise in atmospheric CO2 during the last deglaciation remains unknown. Coinc...
During the early part of the last glacial termination (17.2-15 ka) and coincident with a ∼ 35 ppm ri...
Author Posting. © American Geophysical Union, 2019. This article is posted here by permission of Ame...
Several synergistic mechanisms were likely involved in the last deglacial atmospheric pCO2 rise. Lea...
The reason for the initial rise in atmospheric CO<sub>2</sub> during the last deglaciation remains...
To understand the whereabouts of CO2 during glacials and its pathways during deglacial transitions i...
Late Pleistocene atmospheric CO2 concentrations varied by ~90 ppm, rising with Antarctic and global ...
How does deep-ocean circulation influence atmospheric CO2 across deglacial transitions? Although bio...
Late Pleistocene atmospheric CO2 concentrations varied by ~90 ppm, rising with Antarctic and global ...
Ocean circulation critically affects the global climate and atmospheric carbon dioxide through redis...
Here we use high-precision carbon isotope data (δ13C-CO2) to show atmospheric CO2 during Marine Isot...
The link between the atmospheric CO2 level and the ventilation state of the deep ocean is an importa...
Financial support was provided by the European Community through a Marie Curie Intra-European Fellow...
Atmospheric CO2 was ∼90 ppmv lower at the Last Glacial Maximum (LGM) compared to the late Holocene, ...
The cause of the initial rise in atmospheric CO2 during the last deglaciation remains unknown. Coinc...
The cause of the initial rise in atmospheric CO2 during the last deglaciation remains unknown. Coinc...
During the early part of the last glacial termination (17.2-15 ka) and coincident with a ∼ 35 ppm ri...
Author Posting. © American Geophysical Union, 2019. This article is posted here by permission of Ame...
Several synergistic mechanisms were likely involved in the last deglacial atmospheric pCO2 rise. Lea...
The reason for the initial rise in atmospheric CO<sub>2</sub> during the last deglaciation remains...
To understand the whereabouts of CO2 during glacials and its pathways during deglacial transitions i...
Late Pleistocene atmospheric CO2 concentrations varied by ~90 ppm, rising with Antarctic and global ...
How does deep-ocean circulation influence atmospheric CO2 across deglacial transitions? Although bio...
Late Pleistocene atmospheric CO2 concentrations varied by ~90 ppm, rising with Antarctic and global ...
Ocean circulation critically affects the global climate and atmospheric carbon dioxide through redis...
Here we use high-precision carbon isotope data (δ13C-CO2) to show atmospheric CO2 during Marine Isot...
The link between the atmospheric CO2 level and the ventilation state of the deep ocean is an importa...
Financial support was provided by the European Community through a Marie Curie Intra-European Fellow...
Atmospheric CO2 was ∼90 ppmv lower at the Last Glacial Maximum (LGM) compared to the late Holocene, ...