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Antarctic glacio-eustatic contributions to late Miocene Mediterranean desiccation and reflooding

机译:南极中冰期促成中新世晚期地中海干化和驱替

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摘要

The Messinian Salinity Crisis (MSC) was a marked late Neogene oceanographic event during which the Mediterranean Sea evaporated. Its causes remain unresolved, with tectonic restrictions to the Atlantic Ocean or glacio-eustatic restriction of flow during sea-level lowstands, or a mixture of the two mechanisms, being proposed. Here we present the first direct geological evidence of Antarctic ice-sheet (AIS) expansion at the MSC onset and use a delta O-18 record to model relative sea-level changes. Antarctic sedimentary successions indicate AIS expansion at 6Ma coincident with major MSC desiccation; relative sea-level modelling indicates a prolonged similar to 50m lowstand at the Strait of Gibraltar, which resulted from AIS expansion and local evaporation of sea water in concert with evaporite precipitation that caused lithospheric deformation. Our results reconcile MSC events and demonstrate that desiccation and refilling were timed by the interplay between glacio-eustatic sea-level variations, glacial isostatic adjustment and mantle deformation in response to changing water and evaporite loads.
机译:墨西拿盐度危机(MSC)是新近纪后期海洋学事件,地中海在此期间蒸发。其原因仍未得到解决,提出了对大西洋的构造限制或在海平面低位期间冰川-冰川对流量的限制,或提出了两种机制的混合。在这里,我们介绍了MSC爆发时南极冰盖(AIS)扩展的第一个直接地质证据,并使用了O-18记录来模拟相对海平面变化。南极沉积演替表明AIS在6Ma扩张,与主要的MSC干燥相吻合。相对海平面模型表明,直布罗陀海峡的低潮期延长了大约50m,这是由于AIS膨胀和海水的局部蒸发,以及引起岩石圈变形的蒸发盐沉淀所致。我们的结果调和了MSC事件,并证明了冰川消沉和海平面变化,冰川等静压调整和响应于不断变化的水和蒸发气负荷的地幔变形之间的相互作用,使得干燥和重新充填的时间得以计时。

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