International audienceHow ocean acidification will affect marine organisms depends on changes in both the long-term mean and the short-term temporal variability of carbonate chemistry. Although the decadal-to-centennial response to atmospheric CO$_2$ and climate change is constrained by observations and models, little is known about corresponding changes in seasonality, particularly for pH. Here we assess the latter by analysing nine earth system models (ESMs) forced with a business-as-usual emissions scenario. During the twenty-first century, the seasonal cycle of surface-ocean pH was attenuated by 16 $\pm$ 7%, on average, whereas that for hydrogen ion concentration [H$^+$ ] was amplified by 81 $\pm$ 16%. Simultaneously, the seasonal ampli...
The oceans are acidifying in response to the oceanic uptake of anthropogenic carbon dioxide (CO2) fr...
Since the beginning of the Industrial Revolution humans have released-1/4500 billion metric tons of ...
Eastern boundary upwelling systems (EBUS) are naturally more acidic than most of the rest of the sur...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
Ocean acidification is a predictable consequence of rising atmospheric carbon dioxide (CO2), and is ...
Ocean acidification is a predictable consequence of rising atmospheric carbon dioxide (CO<sub>2</sub...
The increase of atmospheric CO2 (ref. 1 ) has been predicted to impact the seasonal cycle of inorgan...
Uptake of anthropogenic carbon dioxide (CO2) from the atmosphere has resulted in a range of changes ...
It has become clear that anthropogenic carbon invasion into the surface ocean drives changes in the ...
The increase of atmospheric CO2 (ref. 1 ) has been predicted to impact the seasonal cycle of inorgan...
The increase of atmospheric CO2 (ref. 1) has been predicted to impact the seasonal cycle of inorgani...
Since the beginning of the Industrial Revolution humans have released ~500 billion metric tons of ca...
The oceans are acidifying in response to the oceanic uptake of anthropogenic carbon dioxide (CO2) fr...
Since the beginning of the Industrial Revolution humans have released-1/4500 billion metric tons of ...
Eastern boundary upwelling systems (EBUS) are naturally more acidic than most of the rest of the sur...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
International audienceHow ocean acidification will affect marine organisms depends on changes in bot...
Ocean acidification is a predictable consequence of rising atmospheric carbon dioxide (CO2), and is ...
Ocean acidification is a predictable consequence of rising atmospheric carbon dioxide (CO<sub>2</sub...
The increase of atmospheric CO2 (ref. 1 ) has been predicted to impact the seasonal cycle of inorgan...
Uptake of anthropogenic carbon dioxide (CO2) from the atmosphere has resulted in a range of changes ...
It has become clear that anthropogenic carbon invasion into the surface ocean drives changes in the ...
The increase of atmospheric CO2 (ref. 1 ) has been predicted to impact the seasonal cycle of inorgan...
The increase of atmospheric CO2 (ref. 1) has been predicted to impact the seasonal cycle of inorgani...
Since the beginning of the Industrial Revolution humans have released ~500 billion metric tons of ca...
The oceans are acidifying in response to the oceanic uptake of anthropogenic carbon dioxide (CO2) fr...
Since the beginning of the Industrial Revolution humans have released-1/4500 billion metric tons of ...
Eastern boundary upwelling systems (EBUS) are naturally more acidic than most of the rest of the sur...