青藏高原东北缘强烈变质生放射性Sr调控新生代水体Sr同位素演化:祁连造山带剥蚀与亚洲风成搬运的视角

GSA Bulletin Pub Date : 2022-12-20 DOI:10.1130/b36525.1
Yibo Yang, A. Galy, Rongsheng Yang, Yudong Liu, Weilin Zhang, X. Ruan, X. Fang, Zhangdong Jin, B. Song, M. Yan, Guibin Zhang, K. Cao, T. Shen, Ziqiang Mao, Fuli Wu, Fei Zhang
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引用次数: 1

摘要

印度-亚洲碰撞使早古生代祁连造山带重新活化,形成强烈的变质带,促使变质产生的放射性Sr释放到青藏高原东北部的水系中。这种变质作用对区域溶解Sr旋回的影响在近现代尺度上得到了很好的观察,但其发生和演化历史尚不清楚。通过分析西宁、临夏和天水盆地的河湖沉积物,首次获得了青藏高原东北缘52 ~ 5 Ma流域尺度的区域溶解Sr同位素记录。西宁盆地在25 Ma左右表现为盆地水87Sr/86Sr比值增大,沉积物εNd值减小。这种Sr-Nd同位素推断的物源变化与祁连造山带周围新生代沉积盆地最年轻峰的明显上升和碎屑磷灰石裂变径迹年龄的滞后表明的排水和侵蚀制度的重组相吻合。9 ~ 8 Ma祁连风沙显著提高了临夏盆地和天水盆地下风河湖水体87Sr/86Sr比值,这与亚洲沙尘系统的扩张相一致。研究结果表明,祁连造山带的大规模剥蚀是对晚渐新世开始的印亚碰撞的响应。考虑到祁连造山带新生代活化的显著水文影响,我们的研究强调了大陆碰撞形成的变质带在调节过去区域甚至海水Sr同位素演化中的潜在重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intense metamorphism-generated radiogenic Sr regulated Cenozoic water Sr isotope evolution on the NE Tibetan Plateau: A perspective on Qilian orogen denudation and Asian eolian transport
The India-Asia collision reactivated the early Paleozoic Qilian orogen with an intense metamorphic belt that promoted the release of metamorphism-generated radiogenic Sr into the drainage systems on the NE Tibetan Plateau. This metamorphic impact on the regional dissolved Sr cycle is well observed at the recent−modern scale, but its onset and evolutionary histories are unclear. We present the first basin-scale 52−5 Ma regional dissolved Sr isotopic record in water on the NE Tibetan Plateau by analyzing well-dated basin fluvial-lacustrine sediments in the Xining, Linxia, and Tianshui Basins. The Xining Basin displays an increase in basin water 87Sr/86Sr ratio and a decrease in the sediment εNd values at ca. 25 Ma. This Sr-Nd isotope-deduced provenance change coincides with the reorganization of drainage and erosion regimes that is suggested by an evident rise in the youngest peak and the lag time of detrital apatite fission-track ages from Cenozoic sedimentary basins surrounding the Qilian orogen. The Qilian-sourced eolian dust during ca. 9−8 Ma significantly elevated the river and lake water 87Sr/86Sr ratios in the downwind Linxia and Tianshui Basins, which is consistent with the expansion of the Asian dust system. Our results suggest that large-scale denudation of the Qilian orogen in response to the India-Asia collision initiated in the late Oligocene. Given the remarkable hydrological impact of the Cenozoic reactivation of the Qilian orogen, our study highlights the potentially important role of continental collision−formed metamorphic belts in regulating past regional and even seawater Sr isotope evolution.
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