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On the effects of circulation, sediment resuspension and biological incorporation by diatoms in an ocean model of aluminium

机译:关于铝海洋模型中硅藻的循环,沉积物再悬浮和生物掺入的影响

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摘要

The distribution of dissolved aluminium in the West Atlantic Ocean shows a mirror image with that of dissolved silicic acid, hinting at intricate interactions between the ocean cycling of Al and Si. The marine biogeochemistry of Al is of interest because of its potential impact on diatom opal remineralisation, hence Si availability. Furthermore, the dissolved Al concentration at the surface ocean has been used as a tracer for dust input, dust being the most important source of the bio-essential trace element iron to the ocean. Previously, the dissolved concentration of Al was simulated reasonably well with only a dust source, and scavenging by adsorption on settling biogenic debris as the only removal process. Here we explore the impacts of (i) a sediment source of Al in the Northern Hemisphere (especially north of ~40° N), (ii) the imposed velocity field, and (iii) biological incorporation of Al on the modelled Al distribution in the ocean. The sediment source clearly improves the model results, and using a different velocity field shows the importance of advection on the simulated Al distribution. Biological incorporation appears to be a potentially important removal process. However, conclusive independent data to constrain the Al / Si incorporation ratio by growing diatoms are missing. Therefore, this study does not provide a definitive answer to the question of the relative importance of Al removal by incorporation compared to removal by adsorptive scavenging.
机译:西大西洋中溶解铝的分布与溶解硅酸呈镜像关系,暗示了铝和硅的海洋循环之间存在复杂的相互作用。 Al的海洋生物地球化学之所以令人关注,是因为其对硅藻蛋白石再矿化的潜在影响,因此可提供Si。此外,在表层海洋中溶解的Al浓度已被用作示踪剂输入尘埃,粉尘是海洋中生物必需的微量元素铁的最重要来源。以前,仅通过粉尘源就可以很好地模拟Al的溶解浓度,并且通过吸附在沉降的生物残骸上进行吸附清除是唯一的去除过程。在这里,我们探讨(i)北半球(特别是〜40°N以北)的Al沉积物来源,(ii)施加的速度场,以及(iii)Al的生物掺入对模拟的Al分布的影响。海洋。沉积物来源明显改善了模型结果,并且使用不同的速度场显示了平流对模拟铝分布的重要性。生物掺入似乎是潜在的重要去除过程。但是,缺少通过生长硅藻来限制Al / Si掺入比的结论性独立数据。因此,本研究没有提供关于通过吸附去除铝与通过吸附清除去除铝的相对重要性的确切答案。

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