Research so far has provided little evidence that benthic biogeochemical cycling is affected by ocean acidification under realistic climate change scenarios. We measured nutrient exchange and sediment community oxygen consumption (SCOC) rates to estimate nitrification in natural coastal permeable and fine sandy sediments under pre-phytoplankton bloom and bloom conditions. Ocean acidification, as mimicked in the laboratory by a realistic pH decrease of 0.3, significantly reduced SCOC on average by 60% and benthic nitrification rates on average by 94% in both sediment types in February (pre-bloom period), but not in April (bloom period). No changes in macrofauna functional community (density, structural and functional diversity) were observed...
Ocean acidification may alter the cycling of nitrogen in coastal sediment and so the sediment-seawat...
Ocean acidification could influence nitrogen cycling in coastal soft sediments, which are moderated ...
Ocean acidification (OA), caused by the dissolution of increasing concentrations of atmospheric carb...
Research so far has provided little evidence that benthic biogeochemical cycling is affected by ocea...
<div><p>Research so far has provided little evidence that benthic biogeochemical cycling is affected...
Research so far has provided little evidence that benthic biogeochemical cycling is affected by ocea...
Ocean acidification produced by dissolution of anthropogenic carbon dioxide (CO2) emissions in seawa...
Ocean acidification (OA) is predicted to alter benthic marine community structure and function, howe...
Coastal ocean acidification research is dominated by laboratory-based studies that cannot necessaril...
Coastal marine systems are currently subject to a variety of anthropogenic and climate-change-induce...
Naturally occurring microbial decomposition of organic matter (OM) in coastal marine environments ca...
Ocean acidification (OA), caused by the dissolution of increasing concentrations of atmospheric carb...
International audienceAlongside climate change, anthropogenic emissions of CO2 will cause ocean acid...
Global climate change involves an increase in oceanic CO2 concentrations as well as thermal stratifi...
Marine waters are often nitrogen (N) limited. Denitrification, the microbial conversion of nitrate t...
Ocean acidification may alter the cycling of nitrogen in coastal sediment and so the sediment-seawat...
Ocean acidification could influence nitrogen cycling in coastal soft sediments, which are moderated ...
Ocean acidification (OA), caused by the dissolution of increasing concentrations of atmospheric carb...
Research so far has provided little evidence that benthic biogeochemical cycling is affected by ocea...
<div><p>Research so far has provided little evidence that benthic biogeochemical cycling is affected...
Research so far has provided little evidence that benthic biogeochemical cycling is affected by ocea...
Ocean acidification produced by dissolution of anthropogenic carbon dioxide (CO2) emissions in seawa...
Ocean acidification (OA) is predicted to alter benthic marine community structure and function, howe...
Coastal ocean acidification research is dominated by laboratory-based studies that cannot necessaril...
Coastal marine systems are currently subject to a variety of anthropogenic and climate-change-induce...
Naturally occurring microbial decomposition of organic matter (OM) in coastal marine environments ca...
Ocean acidification (OA), caused by the dissolution of increasing concentrations of atmospheric carb...
International audienceAlongside climate change, anthropogenic emissions of CO2 will cause ocean acid...
Global climate change involves an increase in oceanic CO2 concentrations as well as thermal stratifi...
Marine waters are often nitrogen (N) limited. Denitrification, the microbial conversion of nitrate t...
Ocean acidification may alter the cycling of nitrogen in coastal sediment and so the sediment-seawat...
Ocean acidification could influence nitrogen cycling in coastal soft sediments, which are moderated ...
Ocean acidification (OA), caused by the dissolution of increasing concentrations of atmospheric carb...