International audienceThe areal exposure of continental shelves during glacial sea level lowering enhanced the transfer of erodible reactive organic matter to the open ocean. Sea level fall also activated submarine canyons thereby allowing large rivers to deposit their particulate load, via gravity flows, directly in the deep-sea. Here, we analyze the effects of shelf erosion and particulate matter rerouting to the open ocean during inter-glacial to glacial transitions, using a coupled model of the marine phosphorus, organic carbon and oxygen cycles. The results indicate that shelf erosion and submarine canyon formation may significantly lower deep-sea oxygen levels, by up to 25%, during sea level low stands, mainly due to the supply of new...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean-atmosphere po...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean-atmosphere po...
Increased storage of carbon in the oceans has been proposed as a mechanism to explain lower concentr...
International audienceThe areal exposure of continental shelves during glacial sea level lowering en...
International audienceThe areal exposure of continental shelves during glacial sea level lowering en...
International audienceThe areal exposure of continental shelves during glacial sea level lowering en...
The areal exposure of continental shelves during glacial sea level lowering enhanced the transfer of...
Abstract. The areal exposure of continental shelves during glacial sea level lowering enhanced the t...
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 ...
This thesis focuses on the marine phosphorus (P) cycle and its response to changing environmental co...
Abstract The burial of organic carbon in marine sediments removes carbon dioxide from the ocean–atmo...
Abstract The burial of organic carbon in marine sediments removes carbon dioxide from the ocean–atmo...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean–atmosphere po...
Using a box model of organic carbon (C) and phosphorus (P) cycling in the global ocean, we assess th...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean-atmosphere po...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean-atmosphere po...
Increased storage of carbon in the oceans has been proposed as a mechanism to explain lower concentr...
International audienceThe areal exposure of continental shelves during glacial sea level lowering en...
International audienceThe areal exposure of continental shelves during glacial sea level lowering en...
International audienceThe areal exposure of continental shelves during glacial sea level lowering en...
The areal exposure of continental shelves during glacial sea level lowering enhanced the transfer of...
Abstract. The areal exposure of continental shelves during glacial sea level lowering enhanced the t...
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 ...
This thesis focuses on the marine phosphorus (P) cycle and its response to changing environmental co...
Abstract The burial of organic carbon in marine sediments removes carbon dioxide from the ocean–atmo...
Abstract The burial of organic carbon in marine sediments removes carbon dioxide from the ocean–atmo...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean–atmosphere po...
Using a box model of organic carbon (C) and phosphorus (P) cycling in the global ocean, we assess th...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean-atmosphere po...
The burial of organic carbon in marine sediments removes carbon dioxide from the ocean-atmosphere po...
Increased storage of carbon in the oceans has been proposed as a mechanism to explain lower concentr...