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Climatically sensitive transfer of iron to maritime Antarctic ecosystems by surface runoff

机译:地表径流对铁向海洋南极生态系统的气候敏感转移

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摘要

Iron supplied by glacial weathering results in pronounced hotspots of biological production in an otherwise iron-limited Southern Ocean Ecosystem. However, glacial iron inputs are thought to be dominated by icebergs. Here we show that surface runoff from three island groups of the maritime Antarctic exports more filterable (<0.45 μm) iron (6–81 kg km−2 a−1) than icebergs (0.0–1.2 kg km−2 a−1). Glacier-fed streams also export more acid-soluble iron (27.0–18,500 kg km−2 a−1) associated with suspended sediment than icebergs (0–241 kg km−2 a−1). Significant fluxes of filterable and sediment-derived iron (1–10 Gg a−1 and 100–1,000 Gg a−1, respectively) are therefore likely to be delivered by runoff from the Antarctic continent. Although estuarine removal processes will greatly reduce their availability to coastal ecosystems, our results clearly indicate that riverine iron fluxes need to be accounted for as the volume of Antarctic melt increases in response to 21st century climate change.
机译:冰川风化作用提供的铁导致了铁矿有限的南部海洋生态系统中明显的生物生产热点。但是,人们认为冰川铁的投入主要来自冰山。在这里,我们表明,来自南极海洋三岛群的地表径流比可过滤的(<0.45µm)铁(6-81µkg·km -2 a -1 )多冰山(0.0–1.2 kg km −2 a −1 )。与悬浮泥沙有关的冰川供给流也比冰山(0-241 kg km -2 a -1 )出口更多的酸溶铁(27.0–18,500 kg km -2 a -1 )。 sup> -2 a -1 )。因此,可能会通过径流输送大量可过滤和沉积物衍生的铁通量(分别为1–10 Gg a -1 和100–1,000 Gg a -1 )来自南极大陆。尽管河口的清除过程将大大减少其对沿海生态系统的利用,但我们的结果清楚地表明,随着21世纪气候变化,随着南极熔体量的增加,河道的铁通量需要加以考虑。

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