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新生代晚期高海拔地区侵蚀加剧:来自格陵兰近海碎屑热年代学的证据。

Increased erosion of high-elevation land during late Cenozoic: evidence from detrital thermochronology off-shore Greenland.

机构信息

Department of Geosciences, University of Padova, Padua, Italy.

出版信息

Sci Rep. 2022 Jun 15;12(1):9932. doi: 10.1038/s41598-022-14129-6.

Abstract

Mountain regions at high altitudes show deeply incised glacial valleys that coexist with a high-standing low-relief landscape, whose origin is largely debated. Whether the plateaus contributed to sediment production during the late Cenozoic is a currently debated issue in glacial geomorphology and paleoclimatology. In this study, we used detrital apatite fission-track dating of marine sediments to trace provenance and spatial variation in focused erosion over the last 7 million years. The decomposition of age distributions into populations reveals that, moving upwards through the sections, two young populations get younger, while two older populations get progressively older. We interpreted these trends as the effect of glacial erosion on the valley floors and an increased sediment contribution from the high elevations. To test this hypothesis, we compared the measured ages with synthetic age distributions, which represented a change in the elevation of focused erosion. We conclude that the central-eastern Greenland region is the main source of sediments, and in addition to enhanced valley incision, sediments have also been sourced from progressively higher elevations since 7 Ma. The ageing trend provides an unusual case in detrital thermochronology and a strong evidence that intensified Quaternary glaciations amplify the erosional process both in valley bottoms and at high elevations.

摘要

高海拔山区显示出深深切入的冰川谷,与高海拔低起伏景观并存,其起源在很大程度上存在争议。高原是否在新生代晚期促进了沉积物的产生,这是冰川地貌学和古气候学中一个当前存在争议的问题。在这项研究中,我们使用海洋沉积物的碎屑磷灰石裂变径迹测年来追踪过去 700 万年以来侵蚀源和集中侵蚀的空间变化。年龄分布的分解为群体揭示了,从剖面向上移动,两个年轻的群体变得越来越年轻,而两个较老的群体则逐渐变老。我们将这些趋势解释为冰川侵蚀对谷底的影响以及来自高海拔地区的沉积物增加。为了验证这一假设,我们将测量的年龄与代表集中侵蚀海拔变化的合成年龄分布进行了比较。我们的结论是,格陵兰岛中东部地区是沉积物的主要来源,除了增强的河谷侵蚀之外,自 700 万年前以来,沉积物也来自海拔越来越高的地区。这种老化趋势在碎屑热年代学中是一个不寻常的案例,有力地证明了第四纪冰川的加剧增强了河谷底部和高海拔地区的侵蚀过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e784/9200846/13d60195d239/41598_2022_14129_Fig1_HTML.jpg

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