Upper ocean cycling of dissolved and particulate iron was investigated within an eddy during a study of the annual subtropical phytoplankton bloom east of New Zealand in the austral spring of 2008. During this GEOTRACES process study, dissolved iron surface mixed layer concentrations were initially high at ~0.6nmolkg-1 and declined to ~0.03nmolkg-1 due to biological consumption during a diatom-dominated bloom. The consequent iron limitation of the phytoplankton assemblage resulted in the decline and downward export of the bloom. Particulate iron concentrations were high in the surface mixed layer and varied between 3.9nmolL-1 and 12.1nmolL-1 during the onset and export of the bloom, respectively. The particulate iron and manganese results, ...
Despite a large macronutrient reservoir, the Southern Ocean has low levels of chlorophyll, primarily...
An in situ iron enrichment experiment was carried out in the Southern Ocean Polar Frontal Zone and f...
In HNLC oceanic regions, iron (Fe) controls phytoplankton productivity yet large gaps remain in our ...
During austral summer 2003, we tracked a patch of surface water infused with the tracer sulfur hexaf...
Highlights • Dissolved iron limits primary production in offshore South Pacific surface waters...
The supply and bioavailability of dissolved iron sets the magnitude of surface productivity for ∼40%...
International audienceThe FeCycle experiment provided an SF6 labeled mesoscale patch of high-nitrate...
The first Southern Ocean Iron RElease Experiment (SOIREE) was performed during February 1999 in Anta...
Boyd, P.W. et al.An improved knowledge of iron biogeochemistry is needed to better understand key co...
The first Southern Ocean Iron RElease Experiment (SOIREE) was performed during February 1999 in Anta...
The role of heterotrophic bacteria in iron recycling, the influence of complexation on iron reminera...
An in situ iron enrichment experiment was carried out in the Southern Ocean Polar Frontal Zone and f...
The Southern Ocean is the largest high nutrient low chlorophyll (HNLC) oceanic region, where iron li...
An in situ iron enrichment experiment was carried out in the Southern Ocean Polar Frontal Zone and f...
Iron is known to be the limiting nutrient for the phytoplankton growth over similar to 40% of the gl...
Despite a large macronutrient reservoir, the Southern Ocean has low levels of chlorophyll, primarily...
An in situ iron enrichment experiment was carried out in the Southern Ocean Polar Frontal Zone and f...
In HNLC oceanic regions, iron (Fe) controls phytoplankton productivity yet large gaps remain in our ...
During austral summer 2003, we tracked a patch of surface water infused with the tracer sulfur hexaf...
Highlights • Dissolved iron limits primary production in offshore South Pacific surface waters...
The supply and bioavailability of dissolved iron sets the magnitude of surface productivity for ∼40%...
International audienceThe FeCycle experiment provided an SF6 labeled mesoscale patch of high-nitrate...
The first Southern Ocean Iron RElease Experiment (SOIREE) was performed during February 1999 in Anta...
Boyd, P.W. et al.An improved knowledge of iron biogeochemistry is needed to better understand key co...
The first Southern Ocean Iron RElease Experiment (SOIREE) was performed during February 1999 in Anta...
The role of heterotrophic bacteria in iron recycling, the influence of complexation on iron reminera...
An in situ iron enrichment experiment was carried out in the Southern Ocean Polar Frontal Zone and f...
The Southern Ocean is the largest high nutrient low chlorophyll (HNLC) oceanic region, where iron li...
An in situ iron enrichment experiment was carried out in the Southern Ocean Polar Frontal Zone and f...
Iron is known to be the limiting nutrient for the phytoplankton growth over similar to 40% of the gl...
Despite a large macronutrient reservoir, the Southern Ocean has low levels of chlorophyll, primarily...
An in situ iron enrichment experiment was carried out in the Southern Ocean Polar Frontal Zone and f...
In HNLC oceanic regions, iron (Fe) controls phytoplankton productivity yet large gaps remain in our ...