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The decline and fate of an iron-induced subarctic phytoplankton bloom

机译:铁引起的北极浮游植物绽放的衰落与命运

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Iron supply has a key role in stimulating phytoplankton blooms in high-nitrate low-chlorophyll oceanic waters. However, the fate of the carbon fixed by these blooms, and how efficiently it is exported into the ocean's interior, remains largely unknown. Here we report on the decline and fate of an iron-stimulated diatom bloom in the Gulf of Alaska. The bloom terminated on day 18, following the depletion of iron and then silicic acid, after which mixed-layer particulate organic carbon (POC) concentrations declined over six days. Increased particulate silica export via sinking diatoms was recorded in sediment traps at depths between 50 and 125 m from day 21, yet increased POC export was not evident until day 24. Only a small proportion of the mixed-layer POC was intercepted by the traps, with more than half of the mixed-layer POC deficit attributable to bacterial remineralization and mesozooplankton grazing. The depletion of silicic acid and the inefficient transfer of iron-increased POC below the permanent thermocline have major implications both for the biogeochemical interpretation of times of greater iron supply in the geological past, and also for proposed geoengineering schemes to increase oceanic carbon sequestration.
机译:铁的供应在刺激高硝酸盐含量低的叶绿素海洋水域中的浮游植物开花中起关键作用。然而,这些花所决定的碳的命运以及如何有效地将其输出到海洋内部,仍然是未知之数。在这里,我们报道了铁刺激的硅藻绽放在阿拉斯加湾的衰落和命运。继铁和硅酸枯竭后,开花在第18天结束,此后混合层颗粒有机碳(POC)浓度在六天内下降。从第21天起,在深度为50至125 m的沉积物捕集阱中,通过下沉的硅藻增加的颗粒状二氧化硅出口量有所记录,但直到第24天,POC的出口量才明显增加。只有一小部分混合层POC被捕集器截获,混合层POC缺陷的一半以上归因于细菌再矿化和中层浮游生物放牧。硅酸的枯竭和铁含量升高的POC在永久性热跃层以下的转移效率低下,不仅对地质时代过去铁供应量增加的时代的生物地球化学解释,而且对提议的增加海洋碳固存的地球工程方案都有重要意义。

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