Using a box model of organic carbon (C) and phosphorus (P) cycling in the global ocean, we assess the effects of changes in the continental supply of reactive P, oceanic mixing, and sea level on the marine P cycle on glacial-interglacial timescales. Our model results suggest that mixing is a dominant forcing during early glaciation, causing retention of P in the deep ocean, thereby lowering primary production and associated organic C and P burial. Sea level fall is the dominant forcing during late glaciation, when reduced coastal trapping of reactive P enhances its transfer to the open ocean, restoring primary production and P burial. During postglacial periods, changes in circulation and weathering dominate open ocean processes and oceanic...
A new mass balance model for the coupled marine cycles of phosphorus (P) and carbon (C) is used to e...
International audienceA new mass balance model for the coupled marine cycles of phosphorus (P) and c...
Over geological time, photosynthetic carbon fixation in the oceans has exceeded respiratory oxidatio...
This thesis focuses on the marine phosphorus (P) cycle and its response to changing environmental co...
The role of nutrients, such as phosphorus (P), and their impact on primary productivity and the fluc...
The role of nutrients and their impact on primary productivity and the fluctuations in atmospheric ...
The role of nutrients, such as phosphorus (P), and their impact on primary productivity and the fluc...
The role of nutrients, such as phosphorus (P), and their impact on primary productivity and the fluc...
Increased transfer of particulate matter from continental shelves to the open ocean during glacials ...
Increased transfer of particulate matter from continental shelves to the open ocean during glacials ...
During the four most recent glacial maxima, atmospheric CO2 has been lowered by about 90-100 ppm wit...
A new mass balance model for the coupled marine cycles of phosphorus (P) and carbon (C) is used to e...
During the four most recent glacial maxima, atmospheric CO2 has been lowered by about 90–100 ppm wit...
International audienceThe oceanic phosphorus cycle describes how phosphorus moves through the ocean,...
International audienceThe oceanic phosphorus cycle describes how phosphorus moves through the ocean,...
A new mass balance model for the coupled marine cycles of phosphorus (P) and carbon (C) is used to e...
International audienceA new mass balance model for the coupled marine cycles of phosphorus (P) and c...
Over geological time, photosynthetic carbon fixation in the oceans has exceeded respiratory oxidatio...
This thesis focuses on the marine phosphorus (P) cycle and its response to changing environmental co...
The role of nutrients, such as phosphorus (P), and their impact on primary productivity and the fluc...
The role of nutrients and their impact on primary productivity and the fluctuations in atmospheric ...
The role of nutrients, such as phosphorus (P), and their impact on primary productivity and the fluc...
The role of nutrients, such as phosphorus (P), and their impact on primary productivity and the fluc...
Increased transfer of particulate matter from continental shelves to the open ocean during glacials ...
Increased transfer of particulate matter from continental shelves to the open ocean during glacials ...
During the four most recent glacial maxima, atmospheric CO2 has been lowered by about 90-100 ppm wit...
A new mass balance model for the coupled marine cycles of phosphorus (P) and carbon (C) is used to e...
During the four most recent glacial maxima, atmospheric CO2 has been lowered by about 90–100 ppm wit...
International audienceThe oceanic phosphorus cycle describes how phosphorus moves through the ocean,...
International audienceThe oceanic phosphorus cycle describes how phosphorus moves through the ocean,...
A new mass balance model for the coupled marine cycles of phosphorus (P) and carbon (C) is used to e...
International audienceA new mass balance model for the coupled marine cycles of phosphorus (P) and c...
Over geological time, photosynthetic carbon fixation in the oceans has exceeded respiratory oxidatio...