Long-term measurements at the Mauna Loa Observatory (MLO) show that the CO2 seasonal cycle amplitude (SCA) increased from 1959 to 2019 at an overall rate of 0.22 ± 0.034 ppm decade-1 while also varying on interannual to decadal time scales. These SCA changes are a signature of changes in land ecological CO2 fluxes as well as shifting winds. Simulations with the TM3 tracer transport model and CO2 fluxes from the Jena CarboScope CO2 Inversion suggest that shifting winds alone have contributed to a decrease in SCA of -0.10 ± 0.022 ppm decade-1 from 1959 to 2019, partly offsetting the observed long-term SCA increase associated with enhanced ecosystem net primary production. According to these simulati...
An increase in global wind speeds over time is affecting the global uptake of CO2 by the ocean. We d...
An observed increase of the amplitude of the seasonal cycle of atmospheric COz at Mauna Loa Observat...
The 2015−2016 El Niño was one of the strongest on record, but its influence on the carbon balance is...
Long-term measurements at the Mauna Loa Observatory (MLO) show that the CO2 seasonal cycle amplitude...
International audienceChanging amplitude of the seasonal cycle of atmospheric CO2 (SCA) in the north...
Changing amplitude of the seasonal cycle of atmospheric CO2 (SCA) in the northern hemisphere is an e...
Interannual variations of atmospheric CO2 concentrations at Mauna Loa are almost masked by the seaso...
We characterized decadal changes in the amplitude and shape of the seasonal cycle of atmospheric CO2...
The atmospheric CO2 growth rate (CGR) variability is largely controlled by tropical temperature fluc...
International audienceEl Niño has two different flavors, eastern Pacific (EP) and central Pacific (C...
Cyclical rise and fall of monthly mean CO2 concentration occurred rather regularly at Mauna Loa, Haw...
No consensus has yet been reached on the major factors driving the observed increase in the seasonal...
OBSERVATIONS of atmospheric CO2 concentrations at Mauna Loa, Hawaii, and at the South Pole over the ...
An increase in global wind speeds over time is affecting the global uptake of CO2 by the ocean. We d...
An observed increase of the amplitude of the seasonal cycle of atmospheric COz at Mauna Loa Observat...
The 2015−2016 El Niño was one of the strongest on record, but its influence on the carbon balance is...
Long-term measurements at the Mauna Loa Observatory (MLO) show that the CO2 seasonal cycle amplitude...
International audienceChanging amplitude of the seasonal cycle of atmospheric CO2 (SCA) in the north...
Changing amplitude of the seasonal cycle of atmospheric CO2 (SCA) in the northern hemisphere is an e...
Interannual variations of atmospheric CO2 concentrations at Mauna Loa are almost masked by the seaso...
We characterized decadal changes in the amplitude and shape of the seasonal cycle of atmospheric CO2...
The atmospheric CO2 growth rate (CGR) variability is largely controlled by tropical temperature fluc...
International audienceEl Niño has two different flavors, eastern Pacific (EP) and central Pacific (C...
Cyclical rise and fall of monthly mean CO2 concentration occurred rather regularly at Mauna Loa, Haw...
No consensus has yet been reached on the major factors driving the observed increase in the seasonal...
OBSERVATIONS of atmospheric CO2 concentrations at Mauna Loa, Hawaii, and at the South Pole over the ...
An increase in global wind speeds over time is affecting the global uptake of CO2 by the ocean. We d...
An observed increase of the amplitude of the seasonal cycle of atmospheric COz at Mauna Loa Observat...
The 2015−2016 El Niño was one of the strongest on record, but its influence on the carbon balance is...