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首页> 外文期刊>Nature Communications >Large mass-independent sulphur isotope anomalies link stratospheric volcanism to the Late Ordovician mass extinction
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Large mass-independent sulphur isotope anomalies link stratospheric volcanism to the Late Ordovician mass extinction

机译:大型群众无关的硫同位素异常将平流层山脉连接到后期奥陶米亚群众灭绝

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Volcanic eruptions are thought to be a key driver of rapid climate perturbations over geological time, such as global cooling, global warming, and changes in ocean chemistry. However, identification of stratospheric volcanic eruptions in the geological record and their causal link to the mass extinction events during the past 540 million years remains challenging. Here we report unexpected, large mass-independent sulphur isotopic compositions of pyrite with Δ 33 S of up to 0.91‰ in Late Ordovician sedimentary rocks from South China. The magnitude of the Δ 33 S is similar to that discovered in ice core sulphate originating from stratospheric volcanism. The coincidence between the large Δ 33 S and the first pulse of the Late Ordovician mass extinction about 445 million years ago suggests that stratospheric volcanic eruptions may have contributed to synergetic environmental deteriorations such as prolonged climatic perturbations and oceanic anoxia, related to the mass extinction.
机译:火山喷发被认为是地质时间快速气候扰动的关键驱动力,如全球冷却,全球变暖和海洋化学的变化。然而,在过去5.4亿年期间,地质记录中的地质记录中的平流层火山爆发及其对大规模灭绝事件的因果关系仍然具有挑战性。在这里,我们报告了来自南方后期奥陶语沉积岩的δ33s的硫铁矿的意外,大型硫磺同位素组合物,δ33s高达0.91‰。 δ33s的幅度类似于源自平坦散岩硫酸盐的冰核硫酸盐。大约33秒和后期奥陶器大规模灭绝的第一脉冲之间的重合旨在提出平流层火山爆发可能导致协同环境恶化,例如延长气候扰动和海洋缺氧,与大规模灭绝有关。

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