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Warm saline intermediate waters in the Cretaceous tropical Atlantic Ocean

机译:白垩纪热带大西洋中温暖的盐水中间水域

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During the mid-Cretaceous period, the global subsurface oceans were relatively warm, but the origins of the high temperatures are debated. One hypothesis suggests that high sea levels and the continental configuration allowed high-salinity waters in low-latitude epicontinental shelf seas to sink and form deep-water masses(1-3). In another scenario, surface waters in high-latitude regions, the modern area of deep-water formation, were warmed through greenhouse forcing(4), which then propagated through deep-water circulation. Here, we use oxygen isotopes and Mg/Ca ratios from benthic foraminifera to reconstruct intermediate-water conditions in the tropical proto-Atlantic Ocean from 97 to 92Myr ago. According to our reconstruction, intermediate-water temperatures ranged between 20 and 25 degrees C, the warmest ever documented for depths of 500-1,000 m. Our record also reveals intervals of high-salinity conditions, which we suggest reflect an influx of saline water derived from epicontinental seas around the tropical proto-North Atlantic Ocean. Although derived from only one site, our data indicate the existence of warm, saline intermediate waters in this silled basin. This combination of warm saline intermediate waters and restricted palaeogeography probably acted as preconditioning factors for the prolonged period of anoxia and black-shale formation in the equatorial proto-North Atlantic Ocean during the Cretaceous period.
机译:在白垩纪中期,全球表层海洋相对温暖,但对高温的起源尚有争议。一种假设表明,高海平面和大陆构造使低纬度陆陆大陆架海中的高盐度水沉下并形成深水团块(1-3)。在另一种情况下,高温室地区(现代深水形成区)的地表水通过温室强迫(4)变暖,然后通过深水循环传播。在这里,我们利用底栖有孔虫的氧同位素和Mg / Ca比值来重建97至92年前热带原始大西洋中的中间水条件。根据我们的重建,中间水温介于20到25摄氏度之间,这是有记录以来最深的500-1,000 m深度。我们的记录还揭示了高盐度条件的时间间隔,我们建议这反映了源于热带原始北大西洋周围上陆海域的咸水的涌入。尽管仅来自一个地点,但我们的数据表明该矽谷盆地中存在温暖的含盐中间水。在白垩纪,赤道北大西洋长期缺氧和黑页岩形成的延长,温暖的盐水中间水和受限制的古地理的这种组合可能充当了预适应因素。

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