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Iron-binding ligand production and copper speciation in an incubation experiment of Antarctic Peninsula shelf waters from the Bransfleld Strait, Southern Ocean

机译:南大洋布兰斯菲尔德海峡南极半岛陆架水域孵化实验中的铁结合配体生产和铜形态分析

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摘要

The evolution of dissolved iron (Fe) and copper (Cu) speciation was followed through a simulated spring bloom event in a 15-day incubation experiment of natural seawater collected during austral winter from high macronutrient high Fe waters of Bransfield Strait in the Southern Ocean. The incubation experiment included unamended bottles as well as Fe additions using the stable isotope of Fe, ~(57)Fe, as inorganic (~(57)FeCI_3) and organic (~(57))Fe-aerobactin, ~(57)Fe-desferrioxamine B) amendments. Exposure to summer light conditions resulted in substantial growth for all treatments, mimicking the initiation of a spring bloom. The addition of Fe resulted in a 30% increase in phytoplankton biomass over unamended controls by day 15, indicating that the unamended waters became Fe limited despite initially elevated dissolved Fe concentrations. Dissolved Cu and Cu speciation remained largely unchanged for all treatments of the incubation, with Cu speciation dominated by exceedingly strong Cu-binding ligands (log K_(cuL_1)~(cond),Cu~2~16 and low resultant Cu~(2+) concentrations (10~(-16.3±0.3) mol I~(-1)). In only the unamended light bottles, strong Fe-binding ligands were produced over the course of the experiment. The observed production of strong Fe-binding ligands in the control bottles that became Fe-limited supports the important role of biologically produced siderophore-type natural ligands in the marine Fe cycle.
机译:在一个为期15天的温育实验中,通过模拟的春季开花事件追踪了溶解铁(Fe)和铜(Cu)形态的演变,该实验在南方冬季从南洋布兰斯菲尔德海峡的高营养素高铁水收集的天然海水中进行。孵育实验包括未修饰的瓶以及使用稳定同位素的Fe,〜(57)Fe,无机(〜(57)FeCl_3)和有机(〜(57))Fe-aerobactin,〜(57)Fe的稳定同位素添加的Fe -去铁胺B)修正案。暴露于夏季光照条件下,所有处理均大量生长,模仿了春季开花的开始。到第15天,铁的添加使浮游植物的生物量比未经修正的对照增加了30%,这表明尽管最初溶解的铁浓度升高,未经修正的水域中的铁仍有限。在所有温育处理中,溶解的铜和铜的形态基本保持不变,铜的形态主要由超强的铜结合配体(log K_(cuL_1)〜(cond),Cu〜2〜16和低的Cu〜(2+浓度(10〜(-16.3±0.3)mol I〜(-1))。在整个实验过程中,仅在未修正的轻瓶中产生了强铁结合配体。限制铁含量的对照瓶中的碳,支持了海洋产生的铁循环中生物产生的铁载体型天然配体的重要作用。

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  • 来源
    《Marine Chemistry》 |2010年第4期|p.148-159|共12页
  • 作者单位

    Scripps Institution of Oceanography, University of California San Diego, Lajolla, California 92093-0218, USA,Bermuda Institute of Ocean Sciences, 17 Biological Station, Ferry Reach, St. George's CE 01, Bermuda;

    Department of Oceanography, University of Hawaii at Manoa, 1000 Pope Road, Honolulu, Hawaii 96822, USA;

    Bermuda Institute of Ocean Sciences, 17 Biological Station, Ferry Reach, St. George's CE 01, Bermuda;

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

    chemical speciation; iron; copper; seawater; incubation; southern ocean;

    机译:化学形态铁;铜;海水;孵化;南部海洋;

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