The land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric carbon dioxide concentrations1. Although the uptake of carbon by oceanic and terrestrial processes has kept pace with accelerating carbon dioxide emissions until now, atmospheric carbon dioxide concentrations exhibit a large variability on interannual timescales2, considered to be driven primarily by terrestrial ecosystem processes dominated by tropical rainforests3. We use a terrestrial biogeochemical model, atmospheric carbon dioxide inversion and global carbon budget accounting methods to investigate the evolution of the terrestrial carbon sink over the past 30 years, with a focus on the underlying mechanisms responsible for the exceptiona...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
© The Author(s) 2016. Each year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
The land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric ...
The land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric ...
The land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric ...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
New evidence is emerging that semi-arid ecosystems dominate interannual variability (IAV) of the glo...
New evidence is emerging that semi-arid ecosystems dominate interannual variability (IAV) of the glo...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
© The Author(s) 2016. Each year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
The land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric ...
The land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric ...
The land and ocean act as a sink for fossil-fuel emissions, thereby slowing the rise of atmospheric ...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
International audienceEach year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
New evidence is emerging that semi-arid ecosystems dominate interannual variability (IAV) of the glo...
New evidence is emerging that semi-arid ecosystems dominate interannual variability (IAV) of the glo...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...
© The Author(s) 2016. Each year, terrestrial ecosystems absorb more than a quarter of the anthropoge...
Each year, terrestrial ecosystems absorb more than a quarter of the anthropogenic carbon emissions, ...