The influence of ocean circulation changes on atmospheric CO2 hinges primarily on the ability to alter the ocean interior's respired nutrient inventory. Here we investigate the Atlantic overturning circulation at the Last Glacial Maximum and its impact on respired carbon storage using radiocarbon and stable carbon isotope data from the Brazil and Iberian Margins. The data demonstrate the existence of a shallow well-ventilated northern-sourced cell overlying a poorly ventilated, predominantly southern-sourced cell at the Last Glacial Maximum. We also find that organic carbon remineralisation rates in the deep Atlantic remained broadly similar to modern, but that ventilation ages in the southern-sourced overturning cell were significantly inc...
Despite its importance for climate and the carbon cycle, the deep ocean circulation during the Last ...
Carbon-rich Pacific deep water extended into the South Atlantic some 38,000 to 28,000 years ago, pot...
Atmospheric CO2 was ∼90 ppmv lower at the Last Glacial Maximum (LGM) compared to the late Holocene, ...
The influence of ocean circulation changes on atmospheric CO2 hinges primarily on the ability to alt...
The influence of ocean circulation changes on atmospheric CO2 hinges primarily on the ability to alt...
Changes in deep ocean ventilation are commonly invoked as the primary cause of lower glacial atmosph...
Changes in deep ocean ventilation are commonly invoked as the primary cause of lower glacial atmosph...
Increased carbon sequestration in the ocean subsurface is commonly assumed to have been one of the m...
Ocean circulation critically affects the global climate and atmospheric carbon dioxide through redis...
During the Last Glacial Maximum (LGM; ~20,000 years ago), the global ocean sequestered a large amoun...
While the ocean’s large-scale overturning circulation is thought to have been significantly differen...
While the ocean's large-scale overturning circulation is thought to have been significantly differen...
While the ocean's large-scale overturning circulation is thought to have been significantly differen...
Atmospheric CO2 concentrations declined markedly about 70,000 years ago, when the Earth’s climate de...
Graduation date: June 12, 2017During the Last Glacial Maximum (LGM, ∼ 21 ky before present) the atmo...
Despite its importance for climate and the carbon cycle, the deep ocean circulation during the Last ...
Carbon-rich Pacific deep water extended into the South Atlantic some 38,000 to 28,000 years ago, pot...
Atmospheric CO2 was ∼90 ppmv lower at the Last Glacial Maximum (LGM) compared to the late Holocene, ...
The influence of ocean circulation changes on atmospheric CO2 hinges primarily on the ability to alt...
The influence of ocean circulation changes on atmospheric CO2 hinges primarily on the ability to alt...
Changes in deep ocean ventilation are commonly invoked as the primary cause of lower glacial atmosph...
Changes in deep ocean ventilation are commonly invoked as the primary cause of lower glacial atmosph...
Increased carbon sequestration in the ocean subsurface is commonly assumed to have been one of the m...
Ocean circulation critically affects the global climate and atmospheric carbon dioxide through redis...
During the Last Glacial Maximum (LGM; ~20,000 years ago), the global ocean sequestered a large amoun...
While the ocean’s large-scale overturning circulation is thought to have been significantly differen...
While the ocean's large-scale overturning circulation is thought to have been significantly differen...
While the ocean's large-scale overturning circulation is thought to have been significantly differen...
Atmospheric CO2 concentrations declined markedly about 70,000 years ago, when the Earth’s climate de...
Graduation date: June 12, 2017During the Last Glacial Maximum (LGM, ∼ 21 ky before present) the atmo...
Despite its importance for climate and the carbon cycle, the deep ocean circulation during the Last ...
Carbon-rich Pacific deep water extended into the South Atlantic some 38,000 to 28,000 years ago, pot...
Atmospheric CO2 was ∼90 ppmv lower at the Last Glacial Maximum (LGM) compared to the late Holocene, ...