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Eukaryotic phytoplankton decline due to ocean acidification could significantly impact global carbon cycle
Princeton University and Xiamen University researchers report that in tropical and subtropical oligotrophic waters, ocean acidification reduces primary production, the process of photosynthesis in ...
Hydrographic Survey Deep Western Atlantic At 26.5N. Credit: NOAA AOML and University of Miami Rosenstiel School of Marine, Atmospheric and Earth Science Hydrographic Survey Deep Western Atlantic At 26 ...
A new study analyzed nearly four decades of deep ocean observations to reveal significant cooling and freshening of deep water in the Subtropical North Atlantic. The results suggest that warmer, ...
Limnology and Oceanography, Vol. 66, No. 9 (September 2021), pp. 3255-3270 (16 pages) Sinking particulate organic matter controls the flux of carbon (C) from the surface ocean to the deep sea.
Nitrogen is essential for all life on Earth. In the global oceans, however, this element is scarce, and nitrogen availability is therefore critical for the growth of marine life. Some bacteria found ...
Eukaryotic phytoplankton drive a decrease in primary production under ocean acidification. Credit: Dalin Shi Princeton University and Xiamen University researchers report that in tropical and ...
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