The ongoing increase in anthropogenic carbon dioxide (CO<sub>2</sub>) emissions is changing the global marine environment and is causing warming and acidification of the oceans. Reduction of CO<sub>2</sub> to a sustainable level is required to avoid further marine change. Many studies investigate the potential of marine carbon sinks (e.g. seagrass) to mitigate anthropogenic emissions, however, information on storage by coralline algae and the beds they create is scant. Calcifying photosynthetic organisms, including coralline algae, can act as a CO<sub>2</sub> sink via photosynthesis and CaCO<sub>3</sub> dissolution and act as a CO<sub>2</sub> source during respiration and CaCO<sub>3</sub> production on short-term timescales. Long-term carbo...
Crustose coralline algae (CCA) are key organisms in coral reef ecosystems, where they contribute to ...
A simple expression enables prediction of the effect of photosynthetic and calcifying systems on air...
Owing to anthropogenic emissions, atmospheric concentrations of carbon dioxide could almost double b...
The ongoing increase in anthropogenic carbon dioxide (CO2) emissions is changing the global marine e...
The ongoing increase in anthropogenic carbon dioxide (CO2) emissions is changing the global marine e...
Marine vegetated ecosystems such as seagrass meadows are increasingly acknowledged as important carb...
Includes bibliographical references (p. 36-42).Future levels of atmospheric carbon dioxide, currentl...
Abstract: Increased plant biomass is observed in terrestrial systems due to rising levels of atmosph...
Vegetated coastal habitats, including seagrass and macroalgal beds, mangrove forests and salt marshe...
Increasing dissolved inorganic carbon (DIC) concentrations associated with ocean acidifi-cation can ...
Ocean acidification is the lowering of oceanic pH that has resulted from the increase of CO2 in the ...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
International audienceIn combination with drastic emission reduction cuts, limiting global warming b...
Predictions of increasing levels of anthropogenic carbon dioxide (CO{sub 2}) and the specter of glob...
Abstract. Ocean acidification caused by rising atmo-spheric CO2 is predicted to negatively impact gr...
Crustose coralline algae (CCA) are key organisms in coral reef ecosystems, where they contribute to ...
A simple expression enables prediction of the effect of photosynthetic and calcifying systems on air...
Owing to anthropogenic emissions, atmospheric concentrations of carbon dioxide could almost double b...
The ongoing increase in anthropogenic carbon dioxide (CO2) emissions is changing the global marine e...
The ongoing increase in anthropogenic carbon dioxide (CO2) emissions is changing the global marine e...
Marine vegetated ecosystems such as seagrass meadows are increasingly acknowledged as important carb...
Includes bibliographical references (p. 36-42).Future levels of atmospheric carbon dioxide, currentl...
Abstract: Increased plant biomass is observed in terrestrial systems due to rising levels of atmosph...
Vegetated coastal habitats, including seagrass and macroalgal beds, mangrove forests and salt marshe...
Increasing dissolved inorganic carbon (DIC) concentrations associated with ocean acidifi-cation can ...
Ocean acidification is the lowering of oceanic pH that has resulted from the increase of CO2 in the ...
Future atmospheric CO2 levels will most likely have complex consequences for marine organisms, parti...
International audienceIn combination with drastic emission reduction cuts, limiting global warming b...
Predictions of increasing levels of anthropogenic carbon dioxide (CO{sub 2}) and the specter of glob...
Abstract. Ocean acidification caused by rising atmo-spheric CO2 is predicted to negatively impact gr...
Crustose coralline algae (CCA) are key organisms in coral reef ecosystems, where they contribute to ...
A simple expression enables prediction of the effect of photosynthetic and calcifying systems on air...
Owing to anthropogenic emissions, atmospheric concentrations of carbon dioxide could almost double b...