Clay mineral factory and atmospheric-oceanic oxygenation in the early Ediacaran
编号:305 访问权限:仅限参会人 更新:2026-08-31 15:36:44 浏览:0次 张贴报告

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摘要
The early Ediacaran Period (ca. 635–580 Ma) records a profound reorganization of  ecosystem complexity and the earliest diversification of multicellular  life following the Marinoan glaciation. Accumulating evidence points to episodic atmospheric–oceanic oxygenation as a plausible catalyst for this ecological revolution, given its role in ameliorating shallow-marine habitats. However, the fundamental drivers underlying these oxidation events remain largely unconstrained from a quantitative perspective. Here, we present high-resolution mineralogical and geochemical data, including iron speciation, phosphorus speciation, and potassium isotopes compositions from the Doushantuo Formation Member II on the Yangtze Platform, South China. Our results reveal a pronounced increase in both detrital and authigenic clay minerals within early Ediacaran shallow-water continental shelf deposits, a trend that likely reflects intensified continental weathering and consequent reverse weathering effects. Integrating these observations with a global biogeochemical model, we propose that enhanced clay mineral abundances accelerated the aggregation and sedimentation of organic carbon while simultaneously suppressing its remineralization, thereby increasing organic carbon burial efficiency on continental shelves. This cascade of processes,, in turn, promoted the accumulation of atmospheric oxygen, ultimately driving a sustained improvement in shallow-marine ecological conditions and facilitating the radiation of early metazoans.
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报告人
Qin Huang
student Chengdu University of Technology

稿件作者
Qin Huang Chengdu University of Technology
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重要日期
  • 会议日期

    01月12日

    2027

    01月15日

    2027

  • 07月21日 2026

    初稿截稿日期

  • 01月15日 2027

    注册截止日期

主办单位
State Key Laboratory of Marine Environmental Science, Xiamen University (MEL)
Department of Earth Sciences, National Natural Science Foundation of China (NSFC)
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