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通过对斯瓦尔巴德火山灰层的 U-Pb 测年来约束古新世北大西洋板块运动的变化。

Constraining shifts in North Atlantic plate motions during the Palaeocene by U-Pb dating of Svalbard tephra layers.

机构信息

Centre for Earth Evolution and Dynamics (CEED), University of Oslo, PO Box 1028 Blindern, 0315, Oslo, Norway.

Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139-4307, USA.

出版信息

Sci Rep. 2017 Jul 28;7(1):6822. doi: 10.1038/s41598-017-06170-7.

Abstract

Radioisotopic dating of volcanic minerals is a powerful method for establishing absolute time constraints in sedimentary basins, which improves our understanding of the chronostratigraphy and evolution of basin processes. The relative plate motions of Greenland, North America, and Eurasia changed several times during the Palaeogene. However, the timing of a key part of this sequence, namely the initiation of compression between Greenland and Svalbard, is currently poorly constrained. The formation of the Central Basin in Spitsbergen is inherently linked to changes in regional plate motions, so an improved chronostratigraphy of the sedimentary sequence is warranted. Here we present U-Pb zircon dates from tephra layers close to the basal unconformity, which yield a weighted-mean Pb/U age of 61.596 ± 0.028 Ma (2σ). We calculate that sustained sedimentation began at ~61.8 Ma in the eastern Central Basin based on a sediment accumulation rate of 71.6 ± 7.6 m/Myr. The timing of basin formation is broadly coeval with depositional changes at the Danian-Selandian boundary around the other margins of Greenland, including the North Sea, implying a common tectonic driving force. Furthermore, these stratigraphic tie points place age constraints on regional plate reorganization events, such as the onset of seafloor spreading in the Labrador Sea.

摘要

火山矿物的放射性同位素测年是在沉积盆地中建立绝对时间约束的有力方法,它提高了我们对盆地过程的年代地层学和演化的理解。在古近纪期间,格陵兰、北美和欧亚大陆的相对板块运动多次发生变化。然而,这一序列的一个关键部分的时间,即格陵兰和斯瓦尔巴之间压缩的开始,目前受到的限制很差。斯匹次卑尔根中央盆地的形成与区域板块运动的变化密切相关,因此需要对沉积序列进行更精确的年代地层学研究。在这里,我们展示了接近基底不整合面的火山灰层中的 U-Pb 锆石年代数据,得到加权平均 Pb/U 年龄为 61.596 ± 0.028 Ma(2σ)。我们计算出,基于 71.6 ± 7.6 m/Myr 的沉积堆积速率,在东部中央盆地的持续沉积始于约 61.8 Ma。盆地形成的时间与格陵兰其他边缘,包括北海的丹麦-塞兰阶界线附近的沉积变化大致同时发生,这表明存在共同的构造驱动力。此外,这些地层学联系点为区域板块重组事件(如拉布拉多海海底扩张的开始)提供了年龄限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c316/5533774/b55da89ba09b/41598_2017_6170_Fig1_HTML.jpg

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