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The kaolinite shuttle links the Great Oxidation and Lomagundi events

机译:高岭土班车链接了巨大的氧化和洛马尼迪活动

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摘要

The ~2.22-2.06 Ga Lomagundi Event was the longest positive carbon isotope excursion in Earth's history and is commonly interpreted to reflect perturbations in continental weathering and the phosphorous cycle. Previous models have focused on mechanisms of increasing phosphorous solubilization during weathering without focusing on transport to the oceans and its dispersion in seawater. Building from new experimental results, here we report kaolinite readily absorbs phosphorous under acidic freshwater conditions, but quantitatively releases phosphorous under seawater conditions where it becomes bioavailable to phy-toplankton. The strong likelihood of high weathering intensities and associated high kaolinite content in post-Great-Oxidation-Event paleosols suggests there would have been enhanced phosphorus shuttling from the continents into marine environments. A kaolinite phosphorous shuttle introduces the potential for non-linearity in the fluxes of phosphorous to the oceans with increases in chemical weathering intensity.
机译:〜2.22-2.06 Ga Lomagundi事件是地球历史中最长的正碳同位素游览,通常被解释为反映欧陆风化和磷循环的扰动。以前的模型集中于在风化期间增加磷增溶化的机制,而不关注运输到海洋和其在海水中的分散。从新实验结果中建立,在这里,我们在酸性淡水条件下举报高岭石容易吸收磷,但定量地在海水条件下释放磷,在那里它变成了Phy-toplankton的生物利用。高氧化事件古醇中高风化强度和相关高高高岭石含量的强烈可能性表明,从大陆将磷穿梭于海洋环境中。高岭石磷穿梭介绍了在海洋中磷的助熔剂中的非线性的可能性,随着化学风化强度的增加。

著录项

  • 来源
    《Oceanographic Literature Review》 |2021年第7期|1463-1463|共1页
  • 作者

    W. Hao; K. Maend; Y. Li;

  • 作者单位

    Department of Earth and Atmospheric Sciences University of Alberta Edmonton Canada;

    Department of Earth and Atmospheric Sciences University of Alberta Edmonton Canada;

    Department of Earth and Atmospheric Sciences University of Alberta Edmonton Canada;

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  • 正文语种 eng
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