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Resilience of the Asian atmospheric circulation shown by Paleogene dust provenance

机译:古近纪粉尘源显示的亚洲大气环流的复原力

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摘要

The onset of modern central Asian atmospheric circulation is traditionally linked to the interplay of surface uplift of the Mongolian and Tibetan-Himalayan orogens, retreat of the Paratethys sea from central Asia and Cenozoic global cooling. Although the role of these players has not yet been unravelled, the vast dust deposits of central China support the presence of arid conditions and modern atmospheric pathways for the last 25 million years (Myr). Here, we present provenance data from older (42–33 Myr) dust deposits, at a time when the Tibetan Plateau was less developed, the Paratethys sea still present in central Asia and atmospheric pCO2 much higher. Our results show that dust sources and near-surface atmospheric circulation have changed little since at least 42 Myr. Our findings indicate that the locus of central Asian high pressures and concurrent aridity is a resilient feature only modulated by mountain building, global cooling and sea retreat.
机译:传统上,现代中亚大气环流的发生与蒙古和西藏-喜马拉雅造山带的表面抬升,中亚的帕拉提海退缩以及新生代全球冷却之间的相互作用有关。尽管尚未阐明这些角色的作用,但在过去的2500万年中,中国中部的大量尘埃沉积支持干旱条件和现代大气通道的存在(米尔)。在这里,我们提供了来自较旧(42-33 Myr)尘埃沉积物的物源数据,当时青藏高原欠发达,帕拉提斯海仍存在于中亚,大气pCO2更高。我们的结果表明,自至少42 Myr以来,尘埃源和近地表大气环流几乎没有变化。我们的发现表明,中亚高压和同时发生的干旱是只有通过山区建设,全球降温和海退才能调节的弹性特征。

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