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Voltammetric Investigation of Hydrothermal Iron Speciation

机译:水热铁形态的伏安研究

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Hydrothermal vent fluids are highly enriched in iron (Fe) compared to ambient seawater, and organic ligands may play a role in facilitating the transport of some hydrothermal Fe into the open ocean. This is important since Fe is a limiting micronutrient for primary production in large parts of the world`s surface ocean. We have investigated the concentration and speciation of Fe in several vent fluid and plume samples from the Nifonea vent field, Coriolis Troughs, New Hebrides Island Arc, South Pacific Ocean using competitive ligand exchange - adsorptive cathodic stripping voltammetry (CLE - AdCSV) with salicylaldoxime (SA) as the artificial ligand. Our results for total dissolved Fe (dFe) in the buoyant hydrothermal plume samples showed concentrations up to 3.86 μM dFe with only a small fraction between 1.1% and 11.8% being chemically labile. Iron binding ligand concentrations ([L]) were found in μM level with strong conditional stability constants up to log K[L],Fe3+ of 22.9. Within the non-buoyant hydrothermal plume above the Nifonea vent field, up to 84.7% of the available Fe is chemically labile and [L] concentrations up to 97 nM were measured. [L] was consistently in excess of Felab, indicating that all available Fe is being complexed, which in combination with high Felab values in the non-buoyant plume, signifies that a high fraction of hydrothermal dFe is potentially being transported away from the plume into the surrounding waters, contributing to the global oceanic Fe budget.
机译:与周围的海水相比,热液排放液中的铁(Fe)含量很高,有机配体可能在促进某些热液Fe进入远洋的过程中发挥了作用。这一点很重要,因为铁是世界大部分表层海洋中初级生产的微量营养素。我们使用竞争性配体交换-带有水杨醛肟(CLE-AdCSV)的吸附阴极溶出伏安法(CLE-AdCSV),研究了来自南太平洋新海布里底群岛新罕布什尔州科里奥利海槽Nifonea通风田和Nifonea通风田的几种通风液和烟羽样品中Fe的浓度和形态。 SA)作为人工配体。我们对浮力热液羽流样品中总溶解Fe(dFe)的结果表明,其浓度高达3.86μMdFe,其中只有极小部分的化学稳定性介于1.1%和11.8%之间。发现铁结合配体浓度([L])为μM,具有很强的条件稳定性常数,最高log K [L],Fe3 +为22.9。在Nifonea喷口上方的非浮性热液羽流中,高达84.7%的可用Fe具有化学不稳定性,并且测量到的[L]浓度高达97 nM。 [L]始终超过Felab,表明所有可用的Fe正在被络合,再加上非浮力羽流中的Felab值高,表明大量的热液dFe可能从羽流中转移到周围水域,为全球海洋铁预算做出了贡献。

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