Here we analyze the impact of projected climate change on plankton ecology in all major ocean biomes over the 21st century, using a multidecade (1880–2090) experiment conducted with the Community Climate System Model (CCSM-3.1) coupled ocean-atmosphere-land-sea ice model. The climate response differs fundamentally in the Northern and Southern Hemispheres for diatom and small phytoplankton biomass and consequently for total biomass, primary, and export production. Increasing vertical stratification in the Northern Hemisphere oceans decreases the nutrient supply to the ocean surface. Resulting decreases in diatom and small phytoplankton biomass together with a relative shift from diatoms to small phytoplankton in the Northern Hemisphere resul...
Phytoplankton forms the base of the marine food web by transforming CO2 into organic carbon via phot...
The microscopic plants and animals of our oceans known as plankton fix 100 million tons of CO2 per d...
Ocean warming can modify the ecophysiology and distribution of marine organisms, and relationships b...
Author Posting. © American Geophysical Union, 2013. This article is posted here by permission of ...
International audienceWe examine six different coupled climate model simulations to determine the oc...
International audienceWe examine six different coupled climate model simulations to determine the oc...
International audienceWe examine six different coupled climate model simulations to determine the oc...
[1] We employ a marine ecosystem model, with diverse and flexible phytoplankton communities, coupled...
none25siOcean warming can modify the ecophysiology and distribution of marine organisms, and relatio...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
none25siOcean warming can modify the ecophysiology and distribution of marine organisms, and relatio...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
Phytoplankton forms the base of the marine food web by transforming CO2 into organic carbon via phot...
The microscopic plants and animals of our oceans known as plankton fix 100 million tons of CO2 per d...
Ocean warming can modify the ecophysiology and distribution of marine organisms, and relationships b...
Author Posting. © American Geophysical Union, 2013. This article is posted here by permission of ...
International audienceWe examine six different coupled climate model simulations to determine the oc...
International audienceWe examine six different coupled climate model simulations to determine the oc...
International audienceWe examine six different coupled climate model simulations to determine the oc...
[1] We employ a marine ecosystem model, with diverse and flexible phytoplankton communities, coupled...
none25siOcean warming can modify the ecophysiology and distribution of marine organisms, and relatio...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
none25siOcean warming can modify the ecophysiology and distribution of marine organisms, and relatio...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
Phytoplankton forms the base of the marine food web by transforming CO2 into organic carbon via phot...
The microscopic plants and animals of our oceans known as plankton fix 100 million tons of CO2 per d...
Ocean warming can modify the ecophysiology and distribution of marine organisms, and relationships b...