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Large-scale fluctuations in Precambrian atmospheric and oceanic oxygen levels from the record of U in shales

机译:从页岩中的U记录看,前寒武纪大气和海洋中的氧气水平发生了大规模的波动

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摘要

The atmosphere-ocean system experienced a progressive change from anoxic to more oxidizing conditions through time. This oxidation is traditionally envisaged to have occurred as two stepwise increases in atmospheric oxygen at the beginning and end of the Proterozoic Eon. Here, we present a study of the redox-sensitive element, uranium, in organic-rich shales to track the history of Earth's surface oxidation at an unprecedented temporal resolution. Fluctuations in the degree of uranium enrichment in organic-rich shales suggest that the initial rise of atmospheric oxygen ~2.4. billion. yr ago was followed by a decline to less oxidizing conditions during the mid-Proterozoic. This redox state persisted for almost 1. billion. yr, ending with a second oxygenation event in the latest Neoproterozoic. The U record tracks major fluctuations in surface oxygen level and challenges conventional models that suggest the Earth underwent a unidirectional rise in atmospheric oxygen during the Precambrian.
机译:随着时间的推移,大气-海洋系统经历了从缺氧到更多氧化的逐渐变化。传统上,这种氧化反应是在元古代离子开始和结束时大气中的氧气逐步增加两次时发生的。在这里,我们对富含有机物的页岩中的氧化还原敏感元素铀进行了研究,以前所未有的时间分辨率跟踪了地球表面的氧化历史。富含有机物的页岩中铀富集程度的波动表明,大气氧的初始升高约为2.4。十亿。年前,在元古代中期,氧化条件下降。这种氧化还原状态持续了将近10亿。年,最后一次是新元古代的第二次充氧事件。 U记录跟踪表面氧含量的主要波动,并挑战传统模型,该模型表明地球在前寒武纪期间经历了大气氧的单向上升。

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