The primary impacts of anthropogenic CO2 emissions on marine biogeochemical cycles predicted so far include ocean acidification, global warming induced shifts in biogeographical provinces, and a possible negative feedback on atmospheric CO2 levels by CO2-fertilized biological production. Here we report a new potentially significant impact on the oxygen-minimum zones of the tropical oceans. Using a model of global climate, ocean circulation, and biogeochemical cycling, we extrapolate mesocosm-derived experimental findings of a pCO2-sensitive increase in biotic carbon-to-nitrogen drawdown to the global ocean. For a simulation run from the onset of the industrial revolution until A.D. 2100 under a “business-as-usual” scenario for anthropogenic...
The formation of calcareous skeletons by marine biota in the upper ocean causes a reduction in alkal...
Most future projections forecast significant and ongoing climate change during the 21st century, but...
A low-order physical-biogeochemical climate model was used to project at-mospheric carbon dioxide an...
The primary impacts of anthropogenic CO2 emissions on marine biogeochemical cycles predicted so far ...
The primary impacts of anthropogenic CO2 emissions on marine biogeochemical cycles predicted so far ...
Oxygen minimum zones (OMZs) in the ocean are expanding. This expansion is attributed to global warmi...
The implications of climate change and other human perturbations on the oceanic carbon cycle are sti...
Global warming simulations are performed with a coupled climate model of reduced complexity to inves...
[1] A new model of global climate, ocean circulation, ecosystems, and biogeochemical cycling, includ...
Dissolved oxygen (DO) concentration in the ocean is an important component of marine biogeochemical ...
Emissions of carbon dioxide from fossil fuel combustion are reducing the ratio 13C/12C, δ13C, in atm...
Global warming simulations are performed with a coupled climate model of reduced complexity to inves...
Changing atmospheric composition due to human activities, primarily carbon dioxide (CO2) emissions f...
Under future scenarios of business-as-usual emissions, the ocean storage of anthropogenic carbon is ...
We discuss the potential variations of the biological pump that can be expected from a change in the...
The formation of calcareous skeletons by marine biota in the upper ocean causes a reduction in alkal...
Most future projections forecast significant and ongoing climate change during the 21st century, but...
A low-order physical-biogeochemical climate model was used to project at-mospheric carbon dioxide an...
The primary impacts of anthropogenic CO2 emissions on marine biogeochemical cycles predicted so far ...
The primary impacts of anthropogenic CO2 emissions on marine biogeochemical cycles predicted so far ...
Oxygen minimum zones (OMZs) in the ocean are expanding. This expansion is attributed to global warmi...
The implications of climate change and other human perturbations on the oceanic carbon cycle are sti...
Global warming simulations are performed with a coupled climate model of reduced complexity to inves...
[1] A new model of global climate, ocean circulation, ecosystems, and biogeochemical cycling, includ...
Dissolved oxygen (DO) concentration in the ocean is an important component of marine biogeochemical ...
Emissions of carbon dioxide from fossil fuel combustion are reducing the ratio 13C/12C, δ13C, in atm...
Global warming simulations are performed with a coupled climate model of reduced complexity to inves...
Changing atmospheric composition due to human activities, primarily carbon dioxide (CO2) emissions f...
Under future scenarios of business-as-usual emissions, the ocean storage of anthropogenic carbon is ...
We discuss the potential variations of the biological pump that can be expected from a change in the...
The formation of calcareous skeletons by marine biota in the upper ocean causes a reduction in alkal...
Most future projections forecast significant and ongoing climate change during the 21st century, but...
A low-order physical-biogeochemical climate model was used to project at-mospheric carbon dioxide an...