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Shelf-derived iron inputs drive biological productivity in the southern Drake Passage

机译:货架铁输入驱动南部德雷克海峡的生物生产力

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摘要

In the Southern Ocean near the Antarctic Peninsula, Antarctic Circumpolar Current (ACC) fronts interact with shelf waters facilitating lateral transport of shelf-derived components such as iron into high-nutrient offshore regions. To trace these shelf-derived components and estimate lateral mixing rates of shelf water, we used naturally occurring radium isotopes. Short-lived radium isotopes were used to quantify the rates of shelf water entrainment while Fe/~(228)Ra ratios were used to calculate the Fe flux. In the summer of 2006 we found rapid mixing and significant lateral iron export, namely, a dissolved iron flux of 1.1 x 10 mol d~(-1) and total acid leachable iron flux of 1.1 x 10~6 mol d~(-1) all of which is transported in the mixed layer from the shelf region offshore. This dissolved iron flux is significant, especially considering that the bloom observed in the offshore region (0.5-2 mg chl a m~(-3)) had an iron demand of 1.1 to 4 x 10~5 mol Fe. Net vertical export fluxes of particulate Fe derived from ~( 234)Th/~(238)U disequilibrium and Fe/~(234)Th ratios accounted for only about 25% of the dissolved iron flux. On the other hand, vertical upward mixing of iron rich deeper waters provided only 7% of the lateral dissolved iron flux. We found that similarly to other studies in iron-fertilized regions of the Southern Ocean, lateral fluxes overwhelm vertical inputs and vertical export from the water column and support significant phytoplankton blooms in the offshore regions of the Drake Passage.
机译:在南极半岛附近的南大洋中,南极绕极洋流(ACC)前沿与陆架水相互作用,促进了诸如铁等陆架源性成分向高营养近海地区的横向运输。为了追踪这些来自架子的成分并估计架子水的横向混合速率,我们使用了天然存在的镭同位素。短寿命的镭同位素被用来量化架水的夹带率,而Fe /〜(228)Ra比被用来计算铁的通量。在2006年夏季,我们发现快速混合和大量的横向铁输出,即1.1 x 10 mol d〜(-1)的溶解铁通量和1.1 x 10〜6 mol d〜(-1)的可酸浸出的铁通量。 )所有这些都是从离岸货架区域以混合层运输的。该溶解的铁通量是显着的,特别是考虑到在近海区域(0.5-2 mg chl a m〜(-3))观察到的大华具有1.1至4 x 10〜5 mol铁的铁需求。由〜(234)Th /〜(238)U不平衡和Fe /〜(234)Th之比得出的颗粒状Fe的垂直净出口通量仅占溶解铁通量的25%左右。另一方面,富铁深水的垂直向上混合仅提供了横向溶解铁通量的7%。我们发现,与在南大洋的铁肥地区进行的其他研究类似,横向通量淹没了水柱的垂直输入和垂直输出,并支持了德雷克海峡近海区域的大量浮游植物开花。

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