Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. This, in turn, could change the composition of sinking organic matter and the efficiency of the biological carbon pump. So far, most OA experiments involving entire plankton communities have been conducted in meso- to eutrophic environments. However, recent studies suggest that OA effects may be more pronounced during prolonged periods of nutrient limitation. In this study, we investigated how OA-induced changes in low-nutrient adapted plankton communities of the subtropical North Atlantic Ocean may affect particulate organic matter (POM) standing stocks, POM fluxes, and POM stoichiometry. More specifically, we compared the elemental composition ...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
The subtropical oceans are home to the largest phytoplankton biome on the planet. Yet, little is kno...
Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. This...
Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. This...
<p>Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. T...
<p>Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. T...
<p>Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. T...
The oceans’ uptake of anthropogenic carbon dioxide (CO2) decreases seawater pH and alters the inorga...
Oceanic uptake of anthropogenic carbon dioxide (CO2) causes pronounced shifts in marine carbonate ch...
Oceanic uptake of anthropogenic carbon dioxide (CO2) causes pronounced shifts in marine carbonate ch...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
The oceans absorb ~25% of the annual anthropogenic CO2 emissions. This causes a shift in the marine ...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
The subtropical oceans are home to the largest phytoplankton biome on the planet. Yet, little is kno...
Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. This...
Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. This...
<p>Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. T...
<p>Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. T...
<p>Ocean acidification (OA) is expected to alter plankton community structure in the future ocean. T...
The oceans’ uptake of anthropogenic carbon dioxide (CO2) decreases seawater pH and alters the inorga...
Oceanic uptake of anthropogenic carbon dioxide (CO2) causes pronounced shifts in marine carbonate ch...
Oceanic uptake of anthropogenic carbon dioxide (CO2) causes pronounced shifts in marine carbonate ch...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
The oceans absorb ~25% of the annual anthropogenic CO2 emissions. This causes a shift in the marine ...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
Every year, the oceans absorb about 30% of anthropogenic carbon dioxide (CO2) leading to a re-equili...
The subtropical oceans are home to the largest phytoplankton biome on the planet. Yet, little is kno...