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The subtropical nutrient spiral

机译:亚热带营养螺旋

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摘要

[1] We present an extended series of observations and more comprehensive analysis of a tracer-based measure of new production in the Sargasso Sea near Bermuda using the ~3He flux gauge technique. The estimated annually averaged nitrate flux of 0.84 ± 0.26 mol m~(-2) yr~(-1) constitutes only that nitrate physically transported to the euphotic zone, not nitrogen from biological sources (e.g., nitrogen fixation or zooplankton migration). We show that the flux estimate is quantitatively consistent with other observations, including decade timescale evolution of the ~3H + ~3He inventory in the main thermocline and export production estimates. However, we argue that the flux cannot be supplied in the long term by local diapycnal or isopycnal processes. These considerations lead us to propose a three-dimensional pathway whereby nutrients remineralized within the main thermocline are returned to the seasonally accessible layers within the subtropical gyre. We describe this mechanism, which we call “the nutrient spiral,” as a sequence of steps where (1) nutrient-rich thermocline waters are entrained into the Gulf Stream, (2) enhanced diapycnal mixing moves nutrients upward onto lighter densities, (3) detrainment and enhanced isopycnal mixing injects these waters into the seasonally accessible layer of the gyre recirculation region, and (4) the nutrients become available to biota via eddy heaving and wintertime convection. The spiral is closed when nutrients are utilized, exported, and then remineralized within the thermocline. We present evidence regarding the characteristics of the spiral and discuss some implications of its operation within the biogeochemical cycle of the subtropical ocean.
机译:[1]我们使用〜3He通量计技术,对百慕大附近的Sargasso海中基于示踪剂的新生产进行了一系列观测,并进行了更全面的分析。估计的年平均硝酸盐通量为0.84±0.26 mol m〜(-2)yr〜(-1),仅表示硝酸盐以物理方式运输到富营养区,而不是来自生物来源的氮(例如固氮或浮游动物迁移)。我们显示通量估算值与其他观测值在数量上是一致的,包括主要温跃层中〜3H +〜3He库存的十年时间尺度演变和出口产量估算值。但是,我们认为,长期不能通过局部二叠氮或异戊二烯过程提供通量。这些考虑使我们提出了一个三维途径,通过该途径,主温跃层中再矿化的营养物质返回到亚热带回旋区内的季节性可进入层。我们将这种机制称为“养分螺旋”,将其描述为以下步骤的顺序:(1)将富含养分的温跃层水夹带到墨西哥湾流中;(2)加强二苯并混合将养分向上移动到较轻的密度,(3 )减水和增强的等量混合将这些水注入旋流再循环区域的季节性可及层中,(4)通过涡流升沉和冬季对流可将营养物提供给生物群。当营养物质被利用,输出然后在温跃层中重新矿化时,螺旋是闭合的。我们提供了有关螺旋形特征的证据,并讨论了其在亚热带海洋生物地球化学循环中运行的某些含义。

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