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Slowly Sinking Particles Underlie Dissolved Iron Transport Across the Pacific Ocean

机译:慢慢沉没颗粒底层溶解在太平洋上的铁运输

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摘要

Continental shelf sediments are an important source of iron (Fe) in the oceans. Observational data suggest that basin-scale transport of sedimentary sourced Fe accompanies the ventilation of the intermediate layer in the North Pacific. Here we use a marine biogeochemical model to explore the Fe transport mechanism with a focus on the role of sinking particles. The lateral penetration of sedimentary sourced Fe was best simulated when we assumed a short desorption and disaggregation length scale of Fe from sinking particles. The simulation results indicated that Fe is laterally transported mainly through interactions with particles with sinking velocities of 180-460 m yr~(-1); these velocities are two orders of magnitude slower than typical sinking rates of marine aggregates determined from mass flux measurements. Slowly sinking particles drive the basin-scale transport of Fe by prolonging its residence time and by injecting sedimentary sourced Fe supplied originally to less dense waters into the intermediate layer water across isopycnal surfaces. A large amount of Fe from shelf sediments of the Okhotsk and Bering Seas is exported to the North Pacific through this particle interaction. These results highlight a biogeochemical linkage between the marginal seas and ocean basins that has been overlooked in global ocean models.
机译:大陆架子沉积物是海洋中铁(Fe)的重要来源。观测数据表明,沉积源Fe的盆地级传输伴随着北太平洋中间层的通风。在这里,我们使用海洋生物地球化学模型来探索FE运输机制,重点关注沉没颗粒的作用。当我们假设从下沉颗粒的短路解吸和分解长度尺度时,最佳模拟沉积源Fe的横向渗透。仿真结果表明Fe主要通过与180-460米Yr〜(-1)的沉降速度的颗粒相互作用来运输。这些速度是从质量磁通测量确定的海洋骨料的典型沉降速率慢的两个数量级。慢慢沉降粒子通过延长其停留时间并通过将最初的沉积水源注入较少的水分进入跨越等体表面的中间层水中来驱动Fe的盆地传输。来自Okhotsk和Bering Seas的架子沉积物的大量Fe通过这种粒子相互作用出口到北太平洋。这些结果突出了在全球海洋模型中被忽视的边缘海域和海洋盆地之间的生物地球化学联系。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1243-1243|共1页
  • 作者

    K. Misumi; J. Nishioka; H. Obata;

  • 作者单位

    Environmental Science Research Laboratory Central Research Institute of Electric Power Industry Abiko Japan;

    Environmental Science Research Laboratory Central Research Institute of Electric Power Industry Abiko Japan;

    Environmental Science Research Laboratory Central Research Institute of Electric Power Industry Abiko Japan;

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