Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many areas around the world. It plays an important role in both the global sulfur and carbon cycles, by the production of dimethylsulfide (DMS) and the drawdown of inorganic carbon. Phaeocystis globosa has a polymorphic life cycle and is considered to be a harmful algal bloom (HAB) forming species. All these aspects make this an interesting species to study the effects of increasing carbon dioxide (CO2) concentrations, due to anthropogenic carbon emissions. Here, the combined effects of three different dissolved carbon dioxide concentrations (CO2(aq)) (low: 4 µmol/kg, intermediate: 6-10 µmol/kg and high CO2(aq): 21-24 µmol/kg) and two different lig...
Recent investigations into the role of carbon dioxide on phytoplankton growth and composition have c...
Recent investigations into the role of carbon dioxide on phytoplankton growth and composition have c...
Elevated CO2 is leading to a decrease in pH in marine environments (ocean acidification [OA]), alter...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
The combined effects of different light and aqueous CO2 conditions were assessed for the Southern Oc...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
The potential impacts of seawater acidification on the concentrations of dimethylsulfide (DMS), dime...
Increasing anthropogenic carbon dioxide is causing changes to ocean chemistry, which will continue i...
Light affects iron (Fe) growth requirements in marine phytoplankton while CO2 can influence energy a...
Recent investigations into the role of carbon dioxide on phytoplankton growth and composition have c...
Recent investigations into the role of carbon dioxide on phytoplankton growth and composition have c...
Elevated CO2 is leading to a decrease in pH in marine environments (ocean acidification [OA]), alter...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
Phaeocystis globosa (Prymnesiophyceae) is an ecologically dominating phytoplankton species in many a...
The combined effects of different light and aqueous CO2 conditions were assessed for the Southern Oc...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
Abstract: The combined effects of different light and aqueous CO2 conditions were assessed for the S...
The potential impacts of seawater acidification on the concentrations of dimethylsulfide (DMS), dime...
Increasing anthropogenic carbon dioxide is causing changes to ocean chemistry, which will continue i...
Light affects iron (Fe) growth requirements in marine phytoplankton while CO2 can influence energy a...
Recent investigations into the role of carbon dioxide on phytoplankton growth and composition have c...
Recent investigations into the role of carbon dioxide on phytoplankton growth and composition have c...
Elevated CO2 is leading to a decrease in pH in marine environments (ocean acidification [OA]), alter...