The rise in anthropogenic CO2 and the associated ocean acidification (OA) will change trace metal solubility and speciation, potentially altering Southern Ocean (SO) phytoplankton productivity and species composition. As iron (Fe) sources are important determinants of Fe bioavailability, we assessed the effect of Fe-laden dust versus inorganic Fe (FeCl3) enrichment under ambient and high pCO2 levels (390 and 900 μatm) in a naturally Fe-limited SO phytoplankton community. Despite similar Fe chemical speciation and net particulate organic carbon (POC) production rates, CO2-dependent species shifts were controlled by Fe sources. Final phytoplankton communities of both control and dust treatments were dominated by the same species, with an OA-d...
Phytoplankton production controls the transfer of carbon dioxide from the atmosphere into the ocean ...
Contrasting models predict two different climate change scenarios for the Southern Ocean (SO), forec...
Changes in iron supply to oceanic plankton are thought to have a significant effect on concentration...
The potential interactive effects of iron (Fe) limitation and Ocean Acidification in the Southern Oc...
The potential interactive effects of iron (Fe) limitation and Ocean Acidification in the Southern Oc...
The potential interactive effects of iron (Fe) limitation and Ocean Acidification in the Southern Oc...
The ongoing rise in atmospheric CO2 concentration is causing rapid increases in seawater pCO2levels....
Long-term phytoplankton monitoring studies, specifically in the coastal areas of the Western Antarct...
In many regions of the Southern Ocean, surface concentrations of the trace metal iron are very low. ...
The Southern Ocean is responsible for approximately 40% of oceanic carbon uptake through biological ...
Previous field studies in the Southern Ocean (SO) indicated an increased occurrence and dominance of...
Contrasting models predict two different climate change scenarios for the Southern Ocean (SO), forec...
We report results of laboratory studies examining the effect of low levels of iron (Fe) availability...
Southern Ocean Island systems sustain phytoplankton blooms induced by natural iron fertilization tha...
Particulate iron (PFe) usually is not considered as a bioavailable iron fraction to phytoplankton. I...
Phytoplankton production controls the transfer of carbon dioxide from the atmosphere into the ocean ...
Contrasting models predict two different climate change scenarios for the Southern Ocean (SO), forec...
Changes in iron supply to oceanic plankton are thought to have a significant effect on concentration...
The potential interactive effects of iron (Fe) limitation and Ocean Acidification in the Southern Oc...
The potential interactive effects of iron (Fe) limitation and Ocean Acidification in the Southern Oc...
The potential interactive effects of iron (Fe) limitation and Ocean Acidification in the Southern Oc...
The ongoing rise in atmospheric CO2 concentration is causing rapid increases in seawater pCO2levels....
Long-term phytoplankton monitoring studies, specifically in the coastal areas of the Western Antarct...
In many regions of the Southern Ocean, surface concentrations of the trace metal iron are very low. ...
The Southern Ocean is responsible for approximately 40% of oceanic carbon uptake through biological ...
Previous field studies in the Southern Ocean (SO) indicated an increased occurrence and dominance of...
Contrasting models predict two different climate change scenarios for the Southern Ocean (SO), forec...
We report results of laboratory studies examining the effect of low levels of iron (Fe) availability...
Southern Ocean Island systems sustain phytoplankton blooms induced by natural iron fertilization tha...
Particulate iron (PFe) usually is not considered as a bioavailable iron fraction to phytoplankton. I...
Phytoplankton production controls the transfer of carbon dioxide from the atmosphere into the ocean ...
Contrasting models predict two different climate change scenarios for the Southern Ocean (SO), forec...
Changes in iron supply to oceanic plankton are thought to have a significant effect on concentration...