Dynamic environment but no temperature change since the late Paleogene at Lühe Basin (Yunnan, China)

IF 2.6 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Caitlyn R. Witkowski , Vittoria Lauretano , Alex Farnsworth , Shu-Feng Li , Shi-Hu Li , Jan Peter Mayser , B. David A. Naafs , Jingyi Wei , Robert A. Spicer , Tao Su , He Tang , Zhe-Kun Zhou , Paul J. Valdes , Richard D. Pancost
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Abstract

The complex tectonic evolution in the Tibetan region has impacted climate, the Asian monsoon system, and the development of major biodiversity hotspots, especially since the onset of the India-Eurasia continental collision during the early Paleogene. Untangling the links between the geologic, climatic, and ecological history of the broader region provides insights into key Earth system mechanisms, relevant for understanding our rapidly changing planet. Notably around this time, the Eocene-Oligocene transition (EOT; ∼34 million years ago, Ma) marked a critical shift from a greenhouse to an icehouse climate. Whereas temperatures derived from benthic marine records show ubiquitous global cooling of 4 °C, there is an emerging picture that sea surface temperatures and the terrestrial realm experienced a heterogenous response across this interval. Here, we reconstruct a terrestrial temperature record from ∼35–27 Ma at a tectonically unresolved location at the margins of the Tibetan Plateau, Lühe Basin (Yunnan, China). Our multi-proxy organic geochemistry approach across a 340-m long section, complemented by sedimentological interpretations, climate model results, and palaeobotany-based estimates at a nearby site, shows that Lühe Basin hosted a dynamic fluvial environment that maintained relatively stable average temperatures across this 8-million-year interval. The lack of cooling at Lühe Basin supports evidence that sea surface temperatures and terrestrial sections had a complex and heterogenous response across the EOT despite the ubiquitous 4 °C cooling trends seen in the benthic marine record. Furthermore, these palaeotemperature estimates match present-day values at this location, suggesting that this area has not undergone significant temperature change – and possibly no significant uplift – since the late Paleogene.
云南河盆地晚古近纪以来的动力环境而非温度变化
西藏地区复杂的构造演化影响了气候、亚洲季风系统和主要生物多样性热点地区的发展,特别是早古近纪印度-欧亚大陆碰撞开始以来。解开更广泛地区的地质、气候和生态历史之间的联系,提供了对关键地球系统机制的见解,与理解我们快速变化的星球有关。特别是在这个时期,始新世-渐新世转变(EOT;距今约3400万年前,这标志着从温室气候到冰窖气候的重大转变。尽管从底栖海洋记录中得出的温度显示全球普遍下降了4°C,但有一种新出现的图景表明,海洋表面温度和陆地领域在这段时间内经历了不均匀的响应。在这里,我们重建了青藏高原边缘一个构造未确定位置的~ 35-27 Ma的陆地温度记录,河盆地(中国云南)。我们在340米长的剖面上采用多代理有机地球化学方法,辅以沉积学解释、气候模型结果和附近地点基于古植物学的估计,表明l河盆地拥有一个动态的河流环境,在这800万年的间隔中保持相对稳定的平均温度。尽管底栖海洋记录中普遍存在4°C的冷却趋势,但l河盆地缺乏冷却支持了海洋表面温度和陆地剖面在整个东第三纪具有复杂和非均质响应的证据。此外,这些古温度估计与该地点的当前值相符,这表明该地区自古近纪晚期以来没有经历过显著的温度变化,也可能没有显著的隆升。
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来源期刊
CiteScore
5.90
自引率
10.00%
发文量
398
审稿时长
3.8 months
期刊介绍: Palaeogeography, Palaeoclimatology, Palaeoecology is an international medium for the publication of high quality and multidisciplinary, original studies and comprehensive reviews in the field of palaeo-environmental geology. The journal aims at bringing together data with global implications from research in the many different disciplines involved in palaeo-environmental investigations. By cutting across the boundaries of established sciences, it provides an interdisciplinary forum where issues of general interest can be discussed.
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