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A new high-resolution chronology for the late Maastrichtian warming event: establishing robust temporal links with the onset of Deccan volcanism

机译:马斯特里赫特晚期变暖事件的新高分辨率年代表:与德干火山活动的开始建立强大的时间联系

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摘要

The late Maastrichtian warming event was defined by a global temperature increase of ∼2.5–5 °C that occurred ∼150–300 k.y. before the Cretaceous-Paleogene (K-Pg) mass extinction. This transient warming event has traditionally been associated with a major pulse of Deccan Traps (west-central India) volcanism; however, large uncertainties associated with radiogenic dating methods have long hampered a definitive correlation. Here we present a new high-resolution, single species, benthic stable isotope record from the South Atlantic, calibrated to an updated orbitally tuned age model, to provide a revised chronology of the event, which we then correlate to the latest radiogenic dates of the main Deccan Traps eruption phases. Our data reveal that the initiation of deep-sea warming coincides, within uncertainty, with the onset of the main phase of Deccan volcanism, strongly suggesting a causal link. The onset of deep-sea warming is synchronous with a 405 k.y. eccentricity minimum, excluding a control by orbital forcing alone, although amplified carbon cycle sensitivity to orbital precession is evident during the greenhouse warming. A more precise understanding of Deccan-induced climate change paves the way for future work focusing on the fundamental role of these precursor climate shifts in the K-Pg mass extinction.
机译:马斯特里赫特晚期变暖事件的定义是全球温度升高约2.5-5°C,发生约150-300k.y。在白垩纪-古近纪(K-Pg)大灭绝之前。传统上,这种短暂的变暖事件与Deccan Traps(印度中西部)的火山活动有关。然而,与放射定年方法相关的巨大不确定性长期以来一直困扰着确定的相关性。在这里,我们介绍了一个新的高分辨率,单一物种,来自南大西洋的底栖稳定同位素记录,并根据更新的轨道调谐年龄模型进行了校准,以提供该事件的经修订的时间顺序,然后将其与该卫星的最新放射源日期相关联。 Deccan陷阱的主要喷发阶段。我们的数据表明,在不确定性范围内,深海变暖的开始与Deccan火山作用的主要阶段的发生同时发生,这强烈表明存在因果关系。深海变暖的开始与405 k.y是同步的。偏心率最小值,不包括单独通过轨道强迫进行的控制,尽管在温室变暖过程中明显增加了碳循环对轨道进动的敏感性。对Deccan引起的气候变化的更精确理解为今后的工作铺平了道路,重点是这些前兆气候变化在K-Pg灭绝中的基本作用。

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