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Characteristics of sediment resuspension on a deep abyssal plain in the Eastern Tropical Pacific Ocean

机译:东热带太平洋深层复苏沉积物重悬的特征

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摘要

We examined the biogenic and lithogenic particle composition and radiocarbon content of sinking paniculate organic carbon to investigate sediment resuspension and its contribution to sinking particles on the deep abyssal plain of the Eastern Tropical Pacific Ocean. Samples were collected using sediment traps from August 2011 to July 2012 at depths of 4500 and 4950 m (50 m above the seafloor); above and within the benthic nepheloid layer (BNL), respectively. Biogenic particles derived from export production were the major source of sinking particles and their flux showed a unimodal temporal distribution, with larger values between February and April. At a depth of 4500 m, the lithogenic material flux was slightly greater than, or similar to, the flux of atmospheric dust deposition. In comparison, lithogenic material and excess Mn consistently showed a greater contribution to resuspended particles at 4950 m. The lithogenic material flux was proportional to the biogenic flux. These observations imply that resuspended particles exist at a background concentration in the BNL throughout the year, and are scavenged by sinking biogenic particles, especially during the high flux period.
机译:我们检查了生物和岩性颗粒组合物和沉没的含量的无碳粉鎓含量,以调查沉积物重悬,并对东部热带太平洋深层复苏的沉积物中占据粒子。使用沉积物陷阱从2011年8月到2012年7月,在4500和4950米的深度(海底50米)中收集样品;在底栖肾盂层(BNL)之上分别。源自出口产量的生物颗粒是下沉颗粒的主要来源,它们的助焊剂显示出一个单峰的时间分布,2月和4月之间的价值更大。在4500μm的深度下,型型型助焊剂略大于或类似的散热沉积的通量。相比之下,岩性材料和过量的Mn一致地显示出重组颗粒在4950μm的更大贡献。型岩性物质通量与生物通量成比例。这些观察结果意味着重悬的颗粒全年存在于BNL的背景浓度中,并且通过沉没生物颗粒而清除,特别是在高通量期间。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|1928-1928|共1页
  • 作者

    M. Kim; H. J. Kim; A. Ko;

  • 作者单位

    School of Earth and Environmental Sciences Seoul National University Seoul 151- 742 South Korea;

    School of Earth and Environmental Sciences Seoul National University Seoul 151- 742 South Korea;

    School of Earth and Environmental Sciences Seoul National University Seoul 151- 742 South Korea;

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