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Sources of iron in the Ross Sea Polynya in early summer

机译:初夏罗斯海波利尼亚的铁源

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摘要

Dissolved Fe (DFe) was measured in the Ross Sea Polynya (RSP), Antarctica, during a GEOTRACES cruise between 20 December 2013 and 5 January 2014. DFe was measured over the full water column with special emphasis on samples near the seafloor. In the upper mixed layer, DFe was very low everywhere (<0.10 nM). DFe increased with depth to values between 0.60 and 2.76 nM near the seafloor. The highest DFE concentrations were found at stations where a bottom nepheloid layer (BNL) was present (28 out of 32 stations). Deep DFe was lower (0.24-0.38 nM) at stations with no BNL The main DFe supply to the upper mixed layer was vertical diffusive transport from the seafloor sediments, with a mean flux of 33 x 10(-8) mol DFe m(-2) day(-1). DFe fluxes showed large spatial variability of three orders of magnitude and were positively correlated to DFe concentrations near the sediment and vertical turbulent eddy diffusivity (k(z)) and negatively correlated to water depth. The greatest fluxes were observed above the shallow banks such as Ross and Pennell Banks, and sediments with a BNL. We studied the horizontal diffusive transport from Franklin Island as an example of horizontal DFe transport from landmasses. No DFe transport was detected in the upper 100 m of the water column, probably due to uptake by phytoplankton. However, at 200 and 300 m depth, the DFe transport at distances between 50 and 100 km from Franklin Island was as large as the mean diffusive upward transport, indicating the potential importance of landmasses as a local source of DFe. Conversely, no horizontal transport of DFe from banks was detected. In addition, the Ross Ice Shelf (RIS) was a negligible source of DFe. Only the Ice Shelf Water (ISW), a water mass formed under the RIS, contained slightly elevated DFe (0.18-0.26 nM) compared to the surrounding waters. However, this elevated DFe did not reach into the RSP. Icebergs were not encountered and were not evaluated as a DFe source. Overall, we conclude that DFe from the seafloor and land mass sediments are the main DFe sources of DFe that support phytoplankton in the upper mixed layer of the Ross Sea Polynya in early summer. (C) 2015 Elsevier B.V. All rights reserved.
机译:在2013年12月20日至2014年1月5日的GEOTRACES航行期间,在南极洲的罗斯海波利尼亚(RSP)中测量了溶解的Fe(DFe)。在整个水柱上测量了DFe,特别着重于海床附近的样品。在上层混合层中,各处的DFe都很低(<0.10 nM)。 DFe随着海底深度的增加而增加到0.60至2.76 nM之间的值。 DFE浓度最高的是存在底部星状胶体层(BNL)的站点(32个站点中的28个站点)。在没有BNL的站点,深层DFe较低(0.24-0.38 nM)。上层混合层的主要DFe供应是来自海床沉积物的垂直扩散输送,平均通量为33 x 10(-8)mol DFe m(- 2)天(-1)。 DFe通量显示出三个数量级的较大空间变异性,并且与沉积物附近的DFe浓度呈正相关,垂直湍流涡流扩散率(k(z))与水深呈负相关。在诸如罗斯和佩内尔河岸之类的浅河岸以及具有BNL的沉积物上方观察到了最大的通量。我们以富兰克林岛的水平扩散运输为例,研究了来自陆地的水平DFe运输。在水柱上部100 m处未检测到DFe迁移,可能是由于浮游植物吸收了DFe。然而,在深度为200和300 m时,距富兰克林岛50至100 km的距离处的DFe传输量与向上扩散的平均传播量一样大,表明陆地物质作为本地DFe来源的潜在重要性。相反,未检测到来自堤岸的DFe水平输送。此外,罗斯冰架(RIS)是DFe的微不足道的来源。与周围水域相比,只有RIS下方形成的水块冰架水(ISW)含有较高的DFe(0.18-0.26 nM)。但是,这种升高的DFe并未进入RSP。没有遇到冰山,也没有将其作为DFe来源进行评估。总的来说,我们得出的结论是,在初夏时分,海底和陆地沉积物中的DFe是DFe的主要DFe来源,这些DFe支持罗斯海波利亚尼亚上层混合层中的浮游植物。 (C)2015 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Marine Chemistry》 |2015年第3期|447-459|共13页
  • 作者单位

    Royal Netherlands Inst Sea Res NIOZ, NL-1790 AB Den Burg, Netherlands;

    Royal Netherlands Inst Sea Res NIOZ, NL-1790 AB Den Burg, Netherlands;

    Stanford Univ, Dept Earth Syst Sci, Stanford, CA 94305 USA;

    Royal Netherlands Inst Sea Res NIOZ, NL-1790 AB Den Burg, Netherlands;

    Royal Netherlands Inst Sea Res NIOZ, NL-1790 AB Den Burg, Netherlands|Univ Groningen, Dept Ocean Ecosyst, Energy & Sustainabil Res Inst Groningen, Groningen, Netherlands;

    Stanford Univ, Dept Earth Syst Sci, Stanford, CA 94305 USA;

    Stanford Univ, Dept Earth Syst Sci, Stanford, CA 94305 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ross Sea; Fe; Dissolved Fe; Fe fluxes; Antarctica; GEOTRACES;

    机译:罗斯海;铁;溶解的铁;铁通量;南极洲;GEOTRACES;
  • 入库时间 2022-08-18 03:35:51

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