Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next decades to centuries in response to climate change and altered ocean circulation. Hence, the future ocean may experience major shifts in nutrient cycling triggered by the expansion and intensification of tropical oxygen minimum zones (OMZs), which are connected to the most productive upwelling systems in the ocean. There are numerous feedbacks among oxygen concentrations, nutrient cycling and biological productivity; however, existing knowledge is insufficient to understand physical, chemical and biological interactions in order to adequately assess past and potential future changes. <br><br> In the following, we summarize one decade of rese...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
We must understand the drivers of primary producer community composition in the open ocean in order ...
While oxygen minimum zones (OMZ) are frequently referred to as ‘dead zones’ from a biological standp...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Organic matter (OM) plays a significant role in the formation of oxygen minimum zones (OMZs) and ass...
In order to understand the causes of the observed expansion of tropical ocean's oxygen minimum zones...
International audienceIn the modern ocean, oxygen minimum zones (OMZs) are potential traces of a pri...
In Oxygen Deficient Zones (ODZs) in the ocean, anaerobic respiratory processes remove fixed nitroge...
The tropical South East Pacific is characterized by strong coastal upwelling on the narrow continent...
Dissolved oxygen (DO) concentration in the ocean is an important component of marine biogeochemical ...
Dissolved oxygen in the mid-depth tropical Pacific Ocean has declined in the past several decades. T...
Biological oceanic processes, principally the surface production, sinking and interior remineralizat...
Photosynthetic O2 production can be an important source of oxygen in sub-surface ocean waters especi...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
We must understand the drivers of primary producer community composition in the open ocean in order ...
While oxygen minimum zones (OMZ) are frequently referred to as ‘dead zones’ from a biological standp...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Recent modeling results suggest that oceanic oxygen levels will decrease significantly over the next...
Organic matter (OM) plays a significant role in the formation of oxygen minimum zones (OMZs) and ass...
In order to understand the causes of the observed expansion of tropical ocean's oxygen minimum zones...
International audienceIn the modern ocean, oxygen minimum zones (OMZs) are potential traces of a pri...
In Oxygen Deficient Zones (ODZs) in the ocean, anaerobic respiratory processes remove fixed nitroge...
The tropical South East Pacific is characterized by strong coastal upwelling on the narrow continent...
Dissolved oxygen (DO) concentration in the ocean is an important component of marine biogeochemical ...
Dissolved oxygen in the mid-depth tropical Pacific Ocean has declined in the past several decades. T...
Biological oceanic processes, principally the surface production, sinking and interior remineralizat...
Photosynthetic O2 production can be an important source of oxygen in sub-surface ocean waters especi...
Oxygen-deficient waters in the ocean, generally referred to as oxygen minimum zones (OMZ), are expec...
We must understand the drivers of primary producer community composition in the open ocean in order ...
While oxygen minimum zones (OMZ) are frequently referred to as ‘dead zones’ from a biological standp...