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Biolabile ferrous iron bearing nanoparticles in glacial sediments

机译:Biolabile铁轴承纳米粒子在冰川沉积物中

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Glaciers and ice sheets are a significant source of nanoparticulate Fe, which is potentially important in sustaining the high productivity observed in the near-coastal regions proximal to terrestrial ice cover. However, the bioavailability of particulate iron is poorly understood, despite its importance in the ocean Fe inventory. We combined high-resolution imaging and spectroscopy to investigate the abundance, morphology and valence state of particulate iron in glacial sediments. Our results document the widespread occurrence of amorphous and Fe(II)-rich and Fe(II)-bearing nanoparticles in Arctic glacial meltwaters and iceberg debris, compared to Fe(III)-rich dominated particulates in an aeolian dust sample. Fe(II) is thought to be highly biolabile in marine environments. Our work shows that glacially derived Fe is more labile than previously assumed, and consequently that glaciers and ice sheets are therefore able to export potentially bioavailable Fe(II)-containing nanoparticulate material to downstream ecosystems, including those in a marine setting. Our findings provide further evidence that Greenland Ice Sheet meltwaters may provide biolabile particulate Fe that may fuel the large summer phytoplankton bloom in the Labrador Sea, and that Fe(II)-rich particulates from a region of very high productivity downstream of a polar ice sheet may be glacial in origin. (C) 2018 The Author(s). Published by Elsevier B.V.
机译:冰川和冰盖是纳米颗粒Fe的重要来源,这对于维持在近端的近沿着陆地冰盖的高沿海地区观察到的高生产率可能是重要的。然而,尽管它在海洋FE库存中重要了,但颗粒铁的生物可爱性很差。我们组合高分辨率成像和光谱学,研究冰川沉积物中颗粒铁的丰度,形态和价态。我们的结果记录了北极冰川熔融水中的无定形和Fe(II)-RICH和Fe(ii) - 纳米颗粒的普遍发生,与Aeolian粉尘样品中的Fe(III)颗粒颗粒相比。 Fe(ii)被认为是海洋环境中高生物的。我们的工作表明,冰川衍生的Fe比以前假设的更加不稳定,因此冰川和冰盖能够将临时生物利用的Fe(II) - 纳米颗粒材料导出到下游生态系统,包括海洋环境中的那些。我们的调查结果提供了进一步的证据表明格陵兰冰板融化器可以提供生物颗粒颗粒Fe,这些FE可以促进拉布拉多般的大海的大型夏季浮游植物,并且Fe(ii) - 从极地冰盖下游的一个非常高生产率的区域颗粒可能是冰川起源。 (c)2018年作者。由elsevier b.v出版。

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