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Pliocene cooling enhanced by flow of low-salinity Bering Sea water to the Arctic Ocean

机译:通过低盐度的流量达到北冰洋的流量增强了全烯冷却

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摘要

Warming of high northern latitudes in the Pliocene (5.33-2.58 Myr ago) has been linked to the closure of the Central American Seaway and intensification of North Atlantic Deep Water. Subsequent cooling in the late Pliocene may be related to the effects of freshwater input from the Arctic Ocean via the Bering Strait, disrupting North Atlantic Deep Water formation and enhancing sea ice formation. However, the timing of Arctic freshening has not been defined. Here we present neodymium and lead isotope records of detrital sediment from the Bering Sea for the past 4.3 million years. Isotopic data suggest the presence of Alaskan glaciers as far back as 4.2 Myr ago, while diatom and C-37:4 alkenone records show a long-term trend towards colder and fresher water in the Bering Sea beginning with the M2 glaciation (3.3 Myr ago). We argue that the introduction of low-salinity Bering Sea water to the Arctic Ocean by 3.3 Myr ago preconditioned the climate system for global cooling.
机译:在庞大岛的高北纬纬度(5.33-2.58 MYR前)的变暖已与中美洲海滨的关闭和北大西洋深水的集约化。 后期全茂的后续冷却可能与北冰海洋的淡水投入通过白垩海峡,扰乱北大西洋深水形成和增强海冰形成。 然而,尚未确定北极清新的时序。 在这里,我们在过去430万年中展示了来自Bering Sea的滴乳沉积物的钕和铅同位素记录。 同位素数据表明,对于4.2 myr以前,Alaskan冰川的存在,而硅藻和C-37:4链烯酮记录表现出较冷,令人沮丧的海水中的长期趋势,从M2冰川开始(3.3 my r以前 )。 我们认为将低盐度的呼吸海水引入北冰洋3.3 Myr ay前预处理全球冷却的气候系统。

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