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受一根年纹层石笋的限制,中国北方进入格陵兰间冰阶15.2和14的起始时间和持续时间

Onset and duration of transitions into Greenland Interstadials 15.2 and 14 in northern China constrained by an annually laminated stalagmite.

作者信息

Duan Wuhui, Cheng Hai, Tan Ming, Edwards R Lawrence

机构信息

Key laboratory of Cenozoic Geology and Environment, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, 100029, China.

Institute of Global Environmental Change, Xi'an Jiaotong University, Xi'an, 710049, China.

出版信息

Sci Rep. 2016 Feb 10;6:20844. doi: 10.1038/srep20844.

Abstract

The onset and duration of abrupt transitions into Dansgaard-Oeschger (DO) events can be studied in detail in Greenland ice cores given the excellent relative uncertainty of its lamina-counting chronology. For other geological archives, however, the shorter intervals are not determined accurately due to lack of clear annual lamina. Here, we present an oxygen isotope record of a stalagmite with well-developed annual lamina from Xinglong Cave, northern China, covering DO 15 and 14. Except for the absence of Greenland Interstadial (GIS) 15.1, the pattern of this record strongly resembles that of Greenland ice cores on millennial scales as well as the detailed centennial-scale cooling excursions within GIS 14. Additionally, the transitions into GIS 15.2 and 14, constrained by lamina counting, lasted 74 and 27 yr, respectively, both of which are in excellent agreement with that of the NGRIP record on the GICC05 timescales (100 ± 6 and 20 ± 1 yr, respectively). The close coupling of abrupt climatic oscillations on millennial to decadal scales between Greenland and northern China implies a rapid atmospheric teleconnection between the North Atlantic and the East Asian Summer Monsoon regions, probably via the westerlies.

摘要

鉴于格陵兰冰芯纹层计数年代学具有出色的相对不确定性,因此可以在格陵兰冰芯中详细研究丹斯加德-奥舍格(DO)事件突然转变的起始和持续时间。然而,对于其他地质档案而言,由于缺乏清晰的年纹层,较短的时间间隔无法准确确定。在此,我们展示了来自中国北方兴隆洞的一根具有发育良好年纹层的石笋的氧同位素记录,该记录涵盖了DO 15和14阶段。除了没有格陵兰间冰期(GIS)15.1之外,该记录的模式在千年尺度上与格陵兰冰芯的模式非常相似,在GIS 14阶段内的百年尺度详细降温波动方面也是如此。此外,通过纹层计数确定的向GIS 15.2和14阶段的转变分别持续了74年和27年,这两者在GICC05时间尺度上与NGRIP记录的时间(分别为100±6年和20±1年)高度一致。格陵兰和中国北方在千年至年代尺度上突然气候振荡的紧密耦合意味着北大西洋和东亚夏季风区域之间可能通过西风带存在快速的大气遥相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f89e/4748405/db7d28b125af/srep20844-f1.jpg

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