1) The annual cycles of atmospheric CO₂ at Mauna Loa and Point Barrow (Alaska) are statistically almost completely explained by changes in Arctic sea ice volume and extent. 2) The annual cycles of atmospheric CO₂ at the South Pole and at Palmer Station are statistically largely explained by changes in Antarctic sea ice extent. 3) Results are consistent with a monthly CO₂ flux dependent on the distance from equilibrium of a temperature dependent process. Degassing and calcium carbonate crystal formation during the sea ice freeze likely contribute to the peak net monthly emission rate of CO₂. High solubility of gas in cold sea ice meltwater and dissolution of calcium carbonate likely contribute to the peak net ...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
The Arctic Ocean is generally undersaturated in CO2 and acts as a net sink of atmospheric CO2. This ...
Given rapid sea ice changes in the Arctic Ocean in the context of climate warming, better constraint...
Recent observations of significant carbon dioxide fluxes above first year sea ice [Pakapkyriakou et ...
Background: The seasonal cycle of atmospheric carbon dioxide is usually ascribed to the seasonality ...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
Given rapid sea ice changes in the Arctic Ocean in the context of climate warming, better constraint...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
The Arctic Ocean is generally undersaturated in CO2 and acts as a net sink of atmospheric CO2. This ...
Given rapid sea ice changes in the Arctic Ocean in the context of climate warming, better constraint...
Recent observations of significant carbon dioxide fluxes above first year sea ice [Pakapkyriakou et ...
Background: The seasonal cycle of atmospheric carbon dioxide is usually ascribed to the seasonality ...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
Given rapid sea ice changes in the Arctic Ocean in the context of climate warming, better constraint...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
International audienceGiven rapid sea ice changes in the Arctic Ocean in the context of climate warm...
The Arctic Ocean is generally undersaturated in CO2 and acts as a net sink of atmospheric CO2. This ...
Given rapid sea ice changes in the Arctic Ocean in the context of climate warming, better constraint...