The causes of past changes in the global methane cycle and especially the role of marine methane hydrate (clathrate) destabilization events are a matter of debate. Here we present evidence from the North Greenland Ice Core Project ice core based on the hydrogen isotopic composition of methane [δD(CH4)] that clathrates did not cause atmospheric methane concentration to rise at the onset of Dansgaard-Oeschger (DO) events 7 and 8. Box modeling supports boreal wetland emissions as the most likely explanation for the interstadial increase. Moreover, our data show that δD(CH4) dropped 500 years before the onset of DO 8, with CH4 concentration rising only slightly. This can be explained by an early climate response of boreal wetlands, which carry ...
Past atmospheric methane concentrations show strong fluctuations in parallel to rapid glacial climat...
Highlights • CH4 excess is detected in water masses interacting with sea ice. • CH4 excess in ...
Bubble enclosures in polar ice cores represent the only direct paleoatmospheric archive. Ice core re...
The causes of past changes in the global methane cycle and especially the role of marine methane hyd...
Samples from two Greenland ice cores (NEEM and NGRIP) have been measured for methane carbon isotope ...
Atmospheric methane concentration shows a wellknown decrease over the first half of the Holocene fol...
The abrupt warming across the Younger Dryas termination (~11 600 yr before present) was marked by a ...
In relation to Arctic warming, the possible occurrence of methane hydrate degassing events has attra...
The Antarctic and Greenland ice contains an almost direct record of past atmospheric CH4. The record...
Ice core records of atmospheric methane (CH₄) and its isotopic composition provide important informa...
RECORDS of the variation in atmospheric methane concentration have been obtained from ice cores for ...
ICE-CORE reconstructions of atmospheric methane concentrations for the past 220 kyr have revealed la...
During the last glacial cycle, greenhouse gas concentrations fluctuated on decadal and longer timesc...
Atmospheric methane (CH₄) records reconstructed from polar ice cores represent an integrated view on...
International audienceAtmospheric methane (CH4) records reconstructed from polar ice cores represent...
Past atmospheric methane concentrations show strong fluctuations in parallel to rapid glacial climat...
Highlights • CH4 excess is detected in water masses interacting with sea ice. • CH4 excess in ...
Bubble enclosures in polar ice cores represent the only direct paleoatmospheric archive. Ice core re...
The causes of past changes in the global methane cycle and especially the role of marine methane hyd...
Samples from two Greenland ice cores (NEEM and NGRIP) have been measured for methane carbon isotope ...
Atmospheric methane concentration shows a wellknown decrease over the first half of the Holocene fol...
The abrupt warming across the Younger Dryas termination (~11 600 yr before present) was marked by a ...
In relation to Arctic warming, the possible occurrence of methane hydrate degassing events has attra...
The Antarctic and Greenland ice contains an almost direct record of past atmospheric CH4. The record...
Ice core records of atmospheric methane (CH₄) and its isotopic composition provide important informa...
RECORDS of the variation in atmospheric methane concentration have been obtained from ice cores for ...
ICE-CORE reconstructions of atmospheric methane concentrations for the past 220 kyr have revealed la...
During the last glacial cycle, greenhouse gas concentrations fluctuated on decadal and longer timesc...
Atmospheric methane (CH₄) records reconstructed from polar ice cores represent an integrated view on...
International audienceAtmospheric methane (CH4) records reconstructed from polar ice cores represent...
Past atmospheric methane concentrations show strong fluctuations in parallel to rapid glacial climat...
Highlights • CH4 excess is detected in water masses interacting with sea ice. • CH4 excess in ...
Bubble enclosures in polar ice cores represent the only direct paleoatmospheric archive. Ice core re...