Biogeochemical controls of surface ocean phosphate
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Date
Authors
Martiny, Adam C.
Lomas, Michael
Fu, Weiwei
Boyd, Phillip
Chen, Yuh-ling
Cutter, Gregory A.
Ellwood, Michael
Furuya, Ken
Hashihama, Fuminori
Kanda, Jota
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American Association for the Advancement of Science
Abstract
Surface ocean phosphate is commonly below the standard analytical detection limits, leading to an incomplete
picture of the global variation and biogeochemical role of phosphate. A global compilation of phosphate measured
using high-sensitivity methods revealed several previously unrecognized low-phosphate areas and clear
regional differences. Both observational climatologies and Earth system models (ESMs) systematically overestimated
surface phosphate. Furthermore, ESMs misrepresented the relationships between phosphate, phytoplankton
biomass, and primary productivity. Atmospheric iron input and nitrogen fixation are known important controls
on surface phosphate, but model simulations showed that differences in the iron-to-macronutrient ratio in the
vertical nutrient supply and surface lateral transport are additional drivers of phosphate concentrations. Our
study demonstrates the importance of accurately quantifying nutrients for understanding the regulation of ocean
ecosystems and biogeochemistry now and under future climate conditions.
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Science Advances
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Open Access
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Creative Commons Attribution-NonCommercial license
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