青藏高原中北部沱沱河盆地中、上新生代演替的订正年代学及其古高程意义

IF 3.9 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Geological Society of America Bulletin Pub Date : 2023-10-12 DOI:10.1130/b36965.1
Leyi Li, Hong Chang, Alex Farnsworth, Nathan A. Niemi, Peter D. Clift, Xiaoke Qiang, Chunsheng Jin, Jimin Sun, Chong Guan, Peng Zhang, Hongxuan Lu, Weiguo Liu, Balázs Bradák, Lu Peng, Yunfa Miao, Zhisheng An
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引用次数: 0

摘要

目前,与青藏高原新生代构造史和生长机制相关的气候意义缺乏共识,仍存在争议。这部分是由于年代学的不确定性和青藏高原中北部分布的古高程记录很少,我们在这里通过发展一个强大的年代学(利用磁地层学、生物地层学、碎屑锆石和区域放射性年代学)和沱沱河盆地(西藏中北部)的古高程重建来解决这个问题。对沱沱河组(37 ~ 33 Ma)、雅溪错组(33 ~ 23.6 Ma)和五道梁组(23.6 ~ 19.7 Ma)的年龄进行了细化。本文采用介形虫组合、腹足类、轮生类、支链甘油二烷基甘油四乙基分析、区域经验公式和气候模式模拟等方法,估算了沱沱河盆地早渐新世(约29 Ma)古温度值为11 ~ 16.1℃,相对湿度为64%时对应的古海拔高度为2.9 km(±0.4 km),相对湿度为75%时对应的古海拔高度为2.5 km(±0.5 km)。古高程资料和附近已有的地质证据表明,晚始新世至晚渐新世隆升与地壳上部缩短有关。中新世中期以来,可可西里盆地的隆升与岩石圈地幔的对流移除和(或)下地壳流动有关。
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Revised chronology of the middle−upper Cenozoic succession in the Tuotuohe Basin, central-northern Tibetan Plateau, and its paleoelevation implications
Currently, the climatic implications associated with the Cenozoic tectonic history and growth mechanisms of the Tibetan Plateau lack consensus and remain controversial. This is due in part to chronological uncertainties and few paleoelevation records distributed in the central to northern Tibetan Plateau, which we address here with the development of a robust chronology (using magnetostratigraphy, biostratigraphy, detrital zircons, and regional radiochronologic dating) and a paleoelevation reconstruction for the Tuotuohe Basin (central-northern Tibet). We refined the age of the Tuotuohe Formation (37−33 Ma), Yaxicuo Formation (33−23.6 Ma), and Wudaoliang Formation (23.6−19.7 Ma). We estimated early Oligocene (ca. 29 Ma) paleotemperatures of the Tuotuohe Basin from 11 °C to 16.1 °C, which correspond to paleoelevations of 2.9 km (±0.4 km) when the relative humidity is 64% and 2.5 km (±0.5 km) when this value is 75%, using various methods including ostracod assemblages, gastropods, charophytes, branched glycerol dialkyl glycerol tetraether analysis, regional empirical formulas, and climate model simulation. Paleoelevation data and existing geological evidence in the vicinity indicate that late Eocene to late Oligocene uplift was associated with upper-crustal shortening. Since the middle Miocene, uplift has been associated with convective removal of lithospheric mantle and/or lower-crustal flow beneath the Hoh Xil Basin.
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来源期刊
Geological Society of America Bulletin
Geological Society of America Bulletin 地学-地球科学综合
CiteScore
9.30
自引率
8.20%
发文量
159
审稿时长
4-8 weeks
期刊介绍: The GSA Bulletin is the Society''s premier scholarly journal, published continuously since 1890. Its first editor was William John (WJ) McGee, who was responsible for establishing much of its original style and format. Fully refereed, each bimonthly issue includes 16-20 papers focusing on the most definitive, timely, and classic-style research in all earth-science disciplines. The Bulletin welcomes most contributions that are data-rich, mature studies of broad interest (i.e., of interest to more than one sub-discipline of earth science) and of lasting, archival quality. These include (but are not limited to) studies related to tectonics, structural geology, geochemistry, geophysics, hydrogeology, marine geology, paleoclimatology, planetary geology, quaternary geology/geomorphology, sedimentary geology, stratigraphy, and volcanology. The journal is committed to further developing both the scope of its content and its international profile so that it publishes the most current earth science research that will be of wide interest to geoscientists.
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