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Tibetan plateau aridification linked to global cooling at the Eocene-Oligocene transition

机译:始新世-渐新世过渡期青藏高原干旱与全球降温有关

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Continental aridification and the intensification of the monsoons in Asia are generally attributed to uplift of the Tibetan plateau and to the land-sea redistributions associated with the continental collision of India and Asia, whereas some studies suggest that past changes in Asian environments are mainly governed by global climate. The most dramatic climate event since the onset of the collision of India and Asia is the Eocene-Oligocene transition, an abrupt cooling step associated with the onset of glaciation in Antarctica 34 million years ago. However, the influence of this global event on Asian environments is poorly understood. Here we use magnetostratigraphy and cyclostratigraphy to show that aridification, which is indicated by the disappearance of playa lake deposits in the northeastern Tibetan plateau, occurred precisely at the time of the Eocene-Oligocene transition. Our findings suggest that this global transition is linked to significant aridification and cooling in continental Asia recorded by palaeontological and palaeoenvironmental changes, and thus support the idea that global cooling is associated with the Eocene-Oligocene transition. We show that, with sufficient age control on the sedimentary records, global climate can be distinguished from tectonism and recognized as a major contributor to continental Asian environments.
机译:亚洲大陆的干旱化和季风的加剧通常归因于青藏高原的隆升以及与印度和亚洲的大陆碰撞有关的陆海再分配,而一些研究表明,过去亚洲环境的变化主要受制于全球气候。自印度和亚洲发生碰撞以来最剧烈的气候事件是始新世-渐新世过渡,这是与3400万年前南极洲冰期开始有关的突然降温步骤。但是,人们对这一全球性事件对亚洲环境的影响知之甚少。在这里,我们使用地磁和旋回地层学来表明干旱化,这是由青藏高原东北部普拉亚湖沉积物的消失所表明的,而干旱恰恰发生在始新世-渐新世过渡时期。我们的发现表明,这种全球变迁与古生物学和古环境变化所记录的亚洲大陆重要的干旱化和降温有关,因此支持了全球降温与始新世-渐新世过渡有关的观点。我们表明,只要对沉积记录进行年龄控制,就可以将全球气候与构造运动区分开来,并被认为是亚洲大陆环境的主要贡献者。

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