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Contrasting biogeochemical cycles of cobalt in the surface western Atlantic Ocean

机译:西部大西洋西部钴的生物地球化学循环的对比

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Dissolved cobalt (DCo; <0.2 mu m; 14 to 93 pM) and the apparent particulate cobalt (PCo; >0.2 mu m; <1 to 15 pM) were determined in the upper water column (<1000m) of the western Atlantic Ocean along the GEOTRACES-A02 section (64 degrees N to 50 degrees S). The lowest DCo concentrations, typical of a nutrient-type distribution were observed in surface waters of the subtropical domains. Strong linear relationships between DCo and phosphate (P) as well as meridional gradients of decreasing DCo from high latitudes were characterized and both linked to the Co biological requirement. External sources such as the Amazon and the atmospheric deposition were found to contribute significantly (>10%) to the DCo stock of the mixed layer in the equatorial and north subtropical domains. Biotic and abiotic processes as well as the physical terms involved in the biogeochemical cycle of Co were defined and estimated. This allowed establishing the first global budget of DCo for the upper 100m in the western Atlantic. The biological DCo uptake flux was the dominant sink along the section, as reflected by the overall nutrient-type behavior of DCo. The regeneration varied widely within the different biogeochemical domains, accounting for 10% of the DCo-uptake rate in the subarctic gyre and for up to 85% in southern subtropical domain. These findings demonstrated that the regeneration is likely the prevailing source of DCo in the surface waters of the western Atlantic, except in the subpolar domains where physically driven sources can sustain the DCo biological requirement.
机译:在西大西洋的上层水柱(<1000m)中确定了溶解钴(DCo; <0.2μm; 14至93 pM)和表观颗粒钴(PCo;> 0.2μm; <1至15 pM)沿着GEOTRACES-A02区域(北纬64度到南纬50度)。在亚热带地区的地表水中观察到最低的DCo浓度,这是典型的营养类型分布。表征了DCo和磷酸盐(P)之间的强线性关系以及高纬度递减的DCo的子午梯度,并且都与Co生物学需求相关。在赤道和北亚热带地区,诸如亚马逊河和大气沉积等外部来源对混合层的DCo储量有显着贡献(> 10%)。定义和估计了生物的和非生物的过程以及Co的生物地球化学循环中涉及的物理术语。这样就可以为西大西洋上层100m建立DCo的第一个全球预算。 DCo的总体养分类型行为反映了该生物的DCo吸收通量是该剖面的主要汇。在不同的生物地球化学范围内,再生变化很大,约占北极回旋区DCo吸收率的10%,而在南亚热带范围内高达85%。这些发现表明,再生可能是西大西洋地表水中DCo的主要来源,但在亚极域中,物理驱动源可以维持DCo的生物需求。

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