This title includes a number of Open Access chapters. This valuable compendium provides an overview of the variables and consequences of oceanic carbon cycling in the context of climate change. The chapters highlight the importance of marine plankton in carbon processing as well as the effects of rising CO2 and
This title includes a number of Open Access chapters. This valuable compendium provides an overview of the variables and consequences of oceanic carbon cycling in the context of climate change. The chapters highlight the importance of marine plankton in carbon processing as well as the effects of rising CO2 andHinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dr. Isabel Ferrera holds a PhD from the Autonomous University of Barcelona since 2004. After a long postdoctoral stay in the USA, she joined the Marine Sciences Institute in Barcelona where she carries out research on the ecology of marine bacteria. In the last years she has specialized in the study of photoheterotrophic bacteria and on how their diversity and activity influence biogeochemical cycling in the ocean. She is author of more than 30 publications and has a large experience in teaching in the field of microbiology.
Inhaltsangabe
Grand Challenges in Marine Biogeochemistry. A Statistical Gap-Filling Method to Interpolate Global Monthly Surface Ocean Carbon Dioxide Data. The Seasonal Sea-Ice Zone in the Glacial Southern Ocean as a Carbon Sink. On the Influence of Interseasonal Sea Surface Temperature on Surface Water pCO2 at 49.0°N/16.5°W and 56.5°N/52.6°W in the North Atlantic Ocean. Carbon Export by Small Particles in the Norwegian Sea. Ubiquitous Healthy Diatoms in the Deep Sea Confirm Deep Carbon Injection by the Biological Pump. Carbon Export Efficiency and Phytoplankton Community Composition in the Atlantic Sector of the Arctic Ocean. Ocean Warming-Acidification Synergism Undermines Dissolved Organic Matter Assembly. Ocean Acidification with (De)Eutrophication Will Alter Future Phytoplankton Growth and Succession. Coccolithophore Calcification Response to Past Ocean Acidification and Climate Change. Near-Shore Antarctic pH Variability has Implications for the Design of Ocean Acidification Experiments.
Grand Challenges in Marine Biogeochemistry. A Statistical Gap-Filling Method to Interpolate Global Monthly Surface Ocean Carbon Dioxide Data. The Seasonal Sea-Ice Zone in the Glacial Southern Ocean as a Carbon Sink. On the Influence of Interseasonal Sea Surface Temperature on Surface Water pCO2 at 49.0°N/16.5°W and 56.5°N/52.6°W in the North Atlantic Ocean. Carbon Export by Small Particles in the Norwegian Sea. Ubiquitous Healthy Diatoms in the Deep Sea Confirm Deep Carbon Injection by the Biological Pump. Carbon Export Efficiency and Phytoplankton Community Composition in the Atlantic Sector of the Arctic Ocean. Ocean Warming-Acidification Synergism Undermines Dissolved Organic Matter Assembly. Ocean Acidification with (De)Eutrophication Will Alter Future Phytoplankton Growth and Succession. Coccolithophore Calcification Response to Past Ocean Acidification and Climate Change. Near-Shore Antarctic pH Variability has Implications for the Design of Ocean Acidification Experiments.
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