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The effects of dilution and mixed layer depth on deliberate ocean iron fertilization: 1-D simulations of the southern ocean iron experiment (SOFeX)

机译:稀释和混合层深度对有意海洋铁肥的影响:南方海洋铁实验(SOFeX)的一维模拟

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摘要

To better understand the role of iron in driving marine ecosystems, the Southern Ocean Iron Experiment (SOFeX) fertilized two surface water patches with iron north and south of the Antarctic Polar Front Zone (APFZ). Using 1 D coupled biological-physical simulations, we examine the biogeochemical dynamics that occurred both inside and outside of the fertilized patches during and shortly after the SOFeX field campaign. We focus, in particular, on three main issues governing the biological response to deliberate iron fertilization: the interaction among phytoplankton, light, macronutrient and iron limitation; dilution and lateral mixing between the fertilized patch and external, unfertilized waters; and the effect of varying mixed layer depth on the light field. At the patch south of the APFZ, sensitivity simulations with no dilution results in the maximum bloom magnitude, whereas dilution with external water extends the development of the north patch bloom by relieving silicon limitation. In model sensitivity studies for both sites, maximum chlorophyll concentration and dissolved inorganic carbon depletion inside the fertilized patches are inversely related to mixed layer depth, similar to the patterns observed across a number of iron fertilization field experiments. Our results suggest that Southern Ocean phytoplankton blooms resulting from natural or deliberate iron fertilization will tend to become iron-light co-limited unless the mixed layer depth is quite shallow. (c) 2007 Elsevier B.V. All rights reserved.
机译:为了更好地了解铁在驱动海洋生态系统中的作用,南大洋铁实验(SOFeX)用南极极地带(APFZ)南北两处的铁为两个地表水块施肥。使用一维耦合生物物理模拟,我们研究了在SOFeX野战期间和之后不久在受精斑块内部和外部发生的生物地球化学动力学。我们特别关注于控制对故意施肥的生物反应的三个主要问题:浮游植物,光照,大量养分和铁限制之间的相互作用;稀释并在施肥斑块与外部未施肥水之间进行横向混合;以及改变混合层深度对光场的影响。在APFZ以南的斑块处,不进行稀释而进行的灵敏度模拟将导致最大水华数量,而用外部水进行稀释则可以减轻硅的限制,从而扩展了北斑水华的发展。在两个站点的模型敏感性研究中,受精斑块内最大叶绿素浓度和溶解的无机碳消耗与混合层深度成反比,类似于在许多铁肥田间实验中观察到的模式。我们的研究结果表明,除非混合层深度很浅,否则自然或故意施肥导致的南大洋浮游植物开花将趋向于轻铁共限。 (c)2007 Elsevier B.V.保留所有权利。

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