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Fossil black smoker yields oxygen isotopic composition of Neoproterozoic seawater

机译:化石黑烟民产生新元古代海水的氧同位素组成

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The evolution of the seawater oxygen isotopic composition (δ18O) through geological time remains controversial. Yet, the past δ18Oseawater is key to assess past seawater temperatures, providing insights into past climate change and life evolution. Here we provide a new and unprecedentedly precise δ18O value of ?1.33?±?0.98‰ for the Neoproterozoic bottom seawater supporting a constant oxygen isotope composition through time. We demonstrate that the A?t Ahmane ultramafic unit of the ca. 760?Ma Bou Azzer ophiolite (Morocco) host a fossil black smoker-type hydrothermal system. In this system we analyzed an untapped archive for the ocean oxygen isotopic composition consisting in pure magnetite veins directly precipitated from a Neoproterozoic seawater-derived fluid. Our results suggest that, while δ18Oseawater and submarine hydrothermal processes were likely similar to present day, Neoproterozoic oceans were 15–30?°C warmer on the eve of the Sturtian glaciation and the major life diversification that followed.
机译:整个地质时期内海水氧同位素组成(δ18O)的演变仍存在争议。然而,过去的δ18O海水是评估过去的海水温度的关键,可提供有关过去的气候变化和生命演化的见解。在这里,我们为新元古代底部海水提供了一个新的,前所未有的精确δ18O值,为1.33?±?0.98‰,该氧支持随时间变化的恒定氧同位素组成。我们证明了CA的A?t Ahmane超镁铁质单元。 760?Ma Bou Azzer蛇绿岩(摩洛哥)拥有一个化石黑烟熏型热液系统。在这个系统中,我们分析了一个未开发的档案,其中的海洋氧同位素组成由直接从新元古代海水衍生的流体中沉淀出的纯磁铁矿脉组成。我们的结果表明,尽管δ18O海水和海底热液过程可能与当今相似,但在Sturtian冰川化及其后的主要生物多样化前夕,新元古代海洋的温度升高了15-30°C。

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