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      Hydrothermal vents trigger massive phytoplankton blooms in the Southern Ocean

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          Abstract

          Hydrothermal activity is significant in regulating the dynamics of trace elements in the ocean. Biogeochemical models suggest that hydrothermal iron might play an important role in the iron-depleted Southern Ocean by enhancing the biological pump. However, the ability of this mechanism to affect large-scale biogeochemistry and the pathways by which hydrothermal iron reach the surface layer have not been observationally constrained. Here we present the first observational evidence of upwelled hydrothermally influenced deep waters stimulating massive phytoplankton blooms in the Southern Ocean. Captured by profiling floats, two blooms were observed in the vicinity of the Antarctic Circumpolar Current, downstream of active hydrothermal vents along the Southwest Indian Ridge. These hotspots of biological activity are supported by mixing of hydrothermally sourced iron stimulated by flow-topography interactions. Such findings reveal the important role of hydrothermal vents on surface biogeochemistry, potentially fueling local hotspot sinks for atmospheric CO2 by enhancing the biological pump.

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          The biogeochemical cycle of iron in the ocean

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            The integral role of iron in ocean biogeochemistry

            The micronutrient iron is now recognized to be important in regulating the magnitude and dynamics of ocean primary productivity, making it an integral component of the ocean’s biogeochemical cycles. In this Review, we discuss how a recent increase in observational data for this trace metal
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              Iron cycling and nutrient-limitation patterns in surface waters of the World Ocean

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                Author and article information

                Journal
                Nature Communications
                Nat Commun
                Springer Science and Business Media LLC
                2041-1723
                December 2019
                June 5 2019
                December 2019
                : 10
                : 1
                Article
                10.1038/s41467-019-09973-6
                de8cee21-31ab-4bfb-af6e-be5023c6d278
                © 2019

                https://creativecommons.org/licenses/by/4.0

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