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Silicic acid limitation drives bloom termination and potential carbon sequestration in an Arctic bloom

机译:硅酸的限制导致北极大方坯终止大方坯终止和潜在的碳固存

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摘要

The spring diatom bloom in the Arctic Ocean accounts for significant annual primary production leading to the most rapid annual drawdown of water-column pCO2. Late-winter waters in the Atlantic Arctic & Subarctic Provinces (AASP) have lower silicic acid concentrations than nitrate, which suggests diatom blooms may deplete Si before N. Here we test a facet of the hypothesis that silicic acid limitation terminates the spring diatom bloom in the AASP and the sinking of the senescent and dead diatoms helps drive carbon sequestration. During a 6-week study, diatoms bloomed and progressively consumed silicic acid to where it limited their growth. The onset of growth limitation was concurrent with the minimum pCO2 in the surface waters and increases in both the proportion of dead diatoms and the diatom assemblage sedimentation rate. Data reanalysis within the AASP shows a highly significant and positive correlation between silicic acid and pCO2 in the surface waters, but no significant relationship with nitrate and pCO2 was observed unless data were smoothed. Therefore, understanding the future of the AASP spring diatom bloom requires models that explicitly consider changes in silicic acid supply as a driver of this process.
机译:北冰洋春季硅藻的开花占每年主要初级产品的量,从而导致水柱pCO2的年度下降最快。大西洋北极和亚北极省(AASP)的冬末水硅酸浓度低于硝酸盐,这表明硅藻绽放可能会耗尽N之前的硅。在这里,我们检验硅酸限制终止了硅藻春季绽放的假说的一个方面。 AASP以及衰老的硅藻和沉没的硅藻沉没有助于推动碳固存。在为期6周的研究中,硅藻开花并逐渐消耗硅酸,从而限制了硅酸的生长。生长限制的开始与地表水中的最低pCO2同时出现,并且死硅藻的比例和硅藻组合物的沉降速率均增加。 AASP内的数据重新分析显示,地表水中硅酸和pCO2之间具有高度显着的正相关关系,但除非对数据进行平滑处理,否则未观察到与硝酸盐和pCO2的显着关系。因此,了解AASP春季硅藻绽放的未来需要模型明确地考虑硅酸供应的变化作为该过程的驱动力。

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