International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MBE, ∼ 430 ka BP) were around 40 ppm lower than after the MBE. The reasons for this difference remain unclear. A recent hypothesis proposed that changes in oceanic circulation, in response to different external forcings before and after the MBE, might have increased the ocean carbon storage in pre-MBE interglacials, thus lowering atmospheric CO2. Nevertheless, no quantitative estimate of this hypothesis has been produced up to now. Here we use an intermediate complexity model including the carbon cycle to evaluate the response of the carbon reservoirs in the atmosphere, ocean and land in response to the changes of orbital forcings, ice sheet ...
Highlights: • We provide comprehensive discussion of carbon cycle forcings in interglacials. • We ...
During the four most recent glacial cycles atmospheric CO2 during glacial maxima has been lowered by...
The mechanisms of strong glacial-interglacial variations in the atmospheric CO2 concentration and th...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
Atmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MBE, ĝ1/4 ĝ€-430ĝ€-kaĝ€†...
Atmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MBE, similar to 430 kaBP...
Atmospheric CO<sub>2</sub> levels during interglacials prior to the Mid-Brunhes Event (MBE, ∼ 430 ...
International audienceAtmospheric CO 2 levels during interglacials prior to the Mid-Brunhes Event (M...
Explaining a difference in atmospheric CO2 dynamics among interglacials is an elusive issue. Several...
Explaining the difference in carbon cycle dynamics (and hence atmospheric CO2) between various inter...
During the four most recent glacial cycles, atmospheric CO2 during glacial maxima has been lowered b...
Trends in the atmospheric concentration of CO2 during three recent interglacials, the Holocene, the ...
Highlights: • We provide comprehensive discussion of carbon cycle forcings in interglacials. • We ...
During the four most recent glacial cycles atmospheric CO2 during glacial maxima has been lowered by...
The mechanisms of strong glacial-interglacial variations in the atmospheric CO2 concentration and th...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
International audienceAtmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MB...
Atmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MBE, ĝ1/4 ĝ€-430ĝ€-kaĝ€†...
Atmospheric CO2 levels during interglacials prior to the Mid-Brunhes Event (MBE, similar to 430 kaBP...
Atmospheric CO<sub>2</sub> levels during interglacials prior to the Mid-Brunhes Event (MBE, ∼ 430 ...
International audienceAtmospheric CO 2 levels during interglacials prior to the Mid-Brunhes Event (M...
Explaining a difference in atmospheric CO2 dynamics among interglacials is an elusive issue. Several...
Explaining the difference in carbon cycle dynamics (and hence atmospheric CO2) between various inter...
During the four most recent glacial cycles, atmospheric CO2 during glacial maxima has been lowered b...
Trends in the atmospheric concentration of CO2 during three recent interglacials, the Holocene, the ...
Highlights: • We provide comprehensive discussion of carbon cycle forcings in interglacials. • We ...
During the four most recent glacial cycles atmospheric CO2 during glacial maxima has been lowered by...
The mechanisms of strong glacial-interglacial variations in the atmospheric CO2 concentration and th...