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Iron solubility driven by speciation in dust sources to the ocean

机译:铁的溶解度是由海洋中的粉尘来源形成的物种驱动的

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Although abundant in the Earth's crust, iron is present at trace concentrations in sea water and is a limiting nutrient for phytoplankton in approximately 40% of the ocean(1,2). Current literature suggests that aerosols are the primary external source of iron to offshore waters, yet controls on iron aerosol solubility remain unclear(3,4). Here we demonstrate that iron speciation (oxidation state and bonding environment) drives iron solubility in arid region soils, glacial weathering products (flour) and oil combustion products (oil fly ash). Iron speciation varies by aerosol source, with soils in arid regions dominated by ferric (oxy) hydroxides, glacial flour by primary and secondary ferrous silicates and oil fly ash by ferric sulphate salts. Variation in iron speciation produces systematic differences in iron solubility: less than 1% of the iron in arid soils was soluble, compared with 2-3% in glacial products and 77-81% in oil combustion products, which is directly linked to fractions of more soluble phases. We conclude that spatial and temporal variations in aerosol iron speciation, driven by the distribution of deserts, glaciers and fossil-fuel combustion, could have a pronounced effect on aerosol iron solubility and therefore on biological productivity and the carbon cycle in the ocean.
机译:尽管铁在地壳中含量很高,但在海水中仍以痕量浓度存在,铁是大约40%的海洋中浮游植物的限制性营养素(1,2)。目前的文献表明,气溶胶是铁的主要外部来源,但对铁气溶胶溶解度的控制仍不清楚(3,4)。在这里,我们证明了铁的形态(氧化态和结合环境)驱动着铁在干旱地区的土壤,冰川风化产物(面粉)和燃油燃烧产物(粉煤灰)中的溶解度。铁的形态因气溶胶来源而异,干旱地区的土壤以氢氧化铁(氧)为主,冰粉为主要和次要硅酸亚铁,粉煤灰为硫酸铁盐。铁形态的变化产生铁溶解度的系统性差异:在干旱土壤中,铁的可溶性低于1%,而冰川产品的铁含量为2-3%,燃油燃烧产品的含量为77-81%,这直接与铁的组成有关。更易溶的相我们得出的结论是,由沙漠,冰川和化石燃料燃烧的分布驱动的气溶胶铁形态的时空变化可能会对气溶胶铁的溶解度产生显着影响,从而对海洋中的生物生产力和碳循环产生显着影响。

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