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Pyrogenic iron: The missing link to high iron solubility in aerosols

机译:热解铁:气溶胶中铁的高溶解度的缺失环节

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Atmospheric deposition is a source of potentially bioavailable iron (Fe) and thus can partially control biological productivity in large parts of the ocean. However, the explanation of observed high aerosol Fe solubility compared to that in soil particles is still controversial, as several hypotheses have been proposed to explain this observation. Here, a statistical analysis of aerosol Fe solubility estimated from four models and observations compiled from multiple field campaigns suggests that pyrogenic aerosols are the main sources of aerosols with high Fe solubility at low concentration. Additionally, we find that field data over the Southern Ocean display a much wider range in aerosol Fe solubility compared to the models, which indicate an underestimation of labile Fe concentrations by a factor of 15. These findings suggest that pyrogenic Fe-containing aerosols are important sources of atmospheric bioavailable Fe to the open ocean and crucial for predicting anthropogenic perturbations to marine productivity.
机译:大气沉积是潜在的生物可利用铁(Fe)的来源,因此可以部分控制海洋大部分地区的生物生产力。然而,由于有人提出了几种假说来解释这一发现,因此关于在土壤颗粒中观察到的高气溶胶铁溶解度的解释仍存在争议。在这里,根据四个模型估算的气溶胶铁溶解度的统计分析和多次野战收集的观察结果表明,热解气溶胶是低浓度下具有高铁溶解度的气溶胶的主要来源。此外,我们发现,与模型相比,南大洋上的现场数据显示气溶胶中铁的溶解度范围更广,这表明不稳定的Fe浓度低估了15倍。这些发现表明,含热原的Fe气溶胶很重要大气中可生物利用的铁的来源,它是对开阔海洋的重要来源,对于预测人为扰动海洋生产力至关重要。

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