Increasing atmospheric carbon dioxide (CO2) is changing seawater chemistry towards reduced pH, which consequently affects various properties of marine organisms. Coastal and brackish water communities are expected to be less affected by ocean acidification (OA) as these communities are typically adapted to high fluctuations in CO2 and pH. Here we investigate the response of a coastal brackish water plankton community to increasing CO2 levels as projected for the coming decades and the end of this century in terms of community and biochemical fatty acid (FA) composition. A Baltic Sea plankton community was enclosed in a set of off-shore mesocosms and subjected to a CO2 gradient ranging from natural concentrations (~347 µatm fCO2) up to value...
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...
Ocean acidification is expected to influence plankton community structure and biogeochemical element...
Increasing atmospheric carbon dioxide (CO2) is changing seawater chemistry towards reduced pH, which...
Community approaches investigating ocean acidification (OA) effects suggest a high tolerance of micr...
Community approaches to investigating ocean acidification (OA) effects suggest a high tolerance of m...
Anthropogenic carbon dioxide (CO2) emissions are reducing the pH in the world's oceans. The plankton...
Community approaches to investigating ocean acidification (OA) effects suggest a high tolerance of m...
Ocean acidification is expected to influence plankton community structure and biogeochemical element...
Ocean acidification is expected to influence plankton community structure and biogeochemical element...
The oceans' uptake of anthropogenic carbon dioxide (CO2) decreases seawater pH and alters the inorga...
Ocean acidification resulting from the uptake of anthropogenic carbon dioxide (CO2) by the ocean is ...
Ocean acidification resulting from the uptake of anthropogenic carbon dioxide (CO2) by the ocean is ...
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...
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...
Ocean acidification is expected to influence plankton community structure and biogeochemical element...
Increasing atmospheric carbon dioxide (CO2) is changing seawater chemistry towards reduced pH, which...
Community approaches investigating ocean acidification (OA) effects suggest a high tolerance of micr...
Community approaches to investigating ocean acidification (OA) effects suggest a high tolerance of m...
Anthropogenic carbon dioxide (CO2) emissions are reducing the pH in the world's oceans. The plankton...
Community approaches to investigating ocean acidification (OA) effects suggest a high tolerance of m...
Ocean acidification is expected to influence plankton community structure and biogeochemical element...
Ocean acidification is expected to influence plankton community structure and biogeochemical element...
The oceans' uptake of anthropogenic carbon dioxide (CO2) decreases seawater pH and alters the inorga...
Ocean acidification resulting from the uptake of anthropogenic carbon dioxide (CO2) by the ocean is ...
Ocean acidification resulting from the uptake of anthropogenic carbon dioxide (CO2) by the ocean is ...
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...
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...
Ocean acidification is expected to influence plankton community structure and biogeochemical element...