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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Independent tephrochronological evidence for rapid and synchronous oceanic and atmospheric temperature rises over the Greenland stadial-interstadial transitions between ca. 32 and 40 ka b2k
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Independent tephrochronological evidence for rapid and synchronous oceanic and atmospheric temperature rises over the Greenland stadial-interstadial transitions between ca. 32 and 40 ka b2k

机译:独立的Tephorchronological证据,用于快速和同步海洋和大气温度的依据在CA之间的格陵兰体育壁垒过渡升高。 32和40 ka b2k

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Understanding the dynamics that drove past abrupt climate changes, such as the Dansgaard-Oeschger (DO) events, depends on combined proxy evidence from disparate archives. To identify leads, lags and synchronicity between different climate system components, independent and robust chronologies are required. Cryptotephrochronology is a key geochronological tool as cryptotephra horizons can act as isochrons linking disparate and/or distant records. Here, we investigated marine sediment core MD99-2284 from the Norwegian Sea to look for previously identified Greenland ice core cryptotephra horizons and define time-parallel markers between the archives. We explored potential secondary transport and depositional mechanisms that could hamper the isochronous integrity of such horizons. We identified six cryptotephra layers of which four correlate to previously known Greenland ice core horizons. None of those were identified in other marine cores and thus, this study contributes greatly to the North Atlantic tephra framework tripling the original amount of existing isochrons between ca. 25 and 60 ka b2k. The latter allow a synchronization between MD99-2284 and the Greenland ice cores between ca. 32-40 ka b2k, which is, in the North Atlantic, the shortest time-interval during the Last Glacial Period to be constrained by four independent tephra isochrons. These findings provide essential tephra-based evidence for synchronous and rapid oceanic and atmospheric temperature rises during the Greenland Stadial-Interstadial transitions. Furthermore, it enables us to estimate the average peak-duration of interstadial temperature overshoots at approximately 136 years. As such, this well-targeted high-resolution investigation successfully demonstrates the use of cryptotephra for geochronological purposes in the marine realm. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:了解推动过突然气候变化的动态,例如Dansgaard-Oeschger(DO)事件,取决于来自不同档案的组合代理证据。为了识别不同气候系统组件之间的引线,滞后和同步性,需要独立和强大的时间顺​​序。 CryptoteProbronologrology是一个关键的地形工具,因为Cryptotephra Horizo​​ ns可以充当同种剪影不同的和/或遥远记录。在这里,我们调查了挪威海的海洋沉积物核心MD99-2284,寻找以前识别的格陵兰冰核Cryptotephra视野,并在档案之间定义时间平行的标记。我们探讨了可能妨碍此类视野的同步诚信的潜在二级运输和沉积机制。我们确定了六个Cryptotephra层,其中四个与以前已知的格陵兰冰核视野相关。这些研究没有那些在其他海洋核心中确定的,因此,这项研究对于北大西洋Tepharra框架有两大贡献,这是加利福尼亚州之间的原始等货物的原始数量。 25和60 ka b2k。后者允许在CA之间的MD99-2284和格陵兰冰核之间同步。 32-40 ka b2k,即在北大西洋,在最后的冰川期间是最短的时间间隔,被四个独立的tephra等氯受害。这些发现提供了基于Tephra的基于Tephra的基础证据,以便在格陵兰大楼间过渡期间同步和快速的海洋和大气温度上升。此外,它使我们能够在大约136年的大约约136年的壁间温度过冲的平均峰持续时间。因此,这种有针对性的高分辨率调查成功地证明了在海洋境界中使用Cryptotephra进行地形学中的使用。 (c)2020提交人。 elsevier有限公司出版

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