地质学
构造盆地
轨道强迫
磁性地层学
纬度
低纬度
古生物学
火山
新生代
冰期
气候学
古气候学
米兰科维奇循环
气候变化
进动
自然地理学
海洋学
地理
物理
大地测量学
天文
作者
Xu Ke,David B. Kemp,Jianye Ren,Wendao Qian
摘要
Across the late Eocene to early Oligocene, Earth’s climate underwent a dramatic shift from Greenhouse to Icehouse, known as the Eocene−Oligocene transition (EOT). This globally synchronous climatic event is well-documented in marine records. However, there is a relative paucity of terrestrial records, particularly at low latitudes. In this study, we present a continuous and high-resolution terrestrial record across the EOT from the low-latitude Lühe Basin, Yunnan Province, South China. Combined with published magnetostratigraphy and 40Ar/39Ar dating of volcanic ashes in the Lühe Basin, we have constrained this record with a robust astronomical timescale. Our results, combined with previously published data from the region, reveal that the Lühe Basin experienced significant environmental and climate changes, from humid/warm to semi-humid/cool conditions, across the EOT. Cyclostratigraphic analysis of high-resolution elemental data reveal a significant switch in orbital forcing, from dominant eccentricity before ca. 34 Ma to combined eccentricity-obliquity-precession cycles after ca. 34 Ma. Atmospheric CO2 decline and subsequent Antarctic glaciation may have been a contributing factor in driving this orbital transition.
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