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High temperatures in the Late Cretaceous Arctic Ocean

机译:晚白垩纪北冰洋的高温

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To understand the climate dynamics of the warm, equable greenhouse world of the Late Cretaceous period, it is important to determine polar palaeotemperatures. The early palaeoceanographic history of the Arctic Ocean has, however, remained largely unknown, because the sea floor and underlying deposits are usually inaccessible beneath a cover of floating ice. A shallow piston core taken from a drifting ice island in 1970 fortuitously retrieved unconsolidated Upper Cretaceous organic-rich sediment from Alpha ridge(1-4), a submarine elevated feature of probable oceanic origin(5). A lack of carbonate in the sediments from this core has prevented the use of traditional oxygenisotope palaeothermometry. Here we determine Arctic palaeotemperatures from these Upper Cretaceous deposits using TEX86, a new palaeothermometer that is based on the composition of membrane lipids derived from a ubiquitous component of marine plankton, Crenarchaeota(6). From these analyses we infer an average sea surface temperature of similar to15 degreesC for the Arctic Ocean about 70 million years ago(7). This calibration point implies an Equator-to-pole gradient in sea surface temperatures of similar to15degreesC during this interval and, by extrapolation, we suggest that polar waters were generally warmer than 20 degreesC during the middle Cretaceous (similar to90 million years ago).
机译:要了解白垩纪晚期温暖,平等的温室世界的气候动态,确定极地古温度很重要。但是,北冰洋的早期古海洋学历史仍然基本上是未知的,因为通常在浮冰层之下无法到达海床和下伏的沉积物。 1970年从浮冰岛上取下的浅活塞芯偶然地从Alpha脊(1-4)回收了未固结的上白垩统富含有机质的沉积物(Alpha ridge)(1-4),这可能是海洋起源的海底升高特征(5)。该岩心沉积物中碳酸盐的缺乏阻止了传统的氧同位素古温度计的使用。在这里,我们使用TEX86来确定这些上白垩统沉积层的北极古温度,TEX86是一种新的古温度计,其基于源自海洋浮游生物Crenarchaeota(6)普遍存在的膜脂的成分。从这些分析中我们可以推断出大约7000万年前,北冰洋的平均海表温度接近15摄氏度(7)。这个校准点意味着在此间隔内海表温度的赤道极间梯度接近15摄氏度,并且通过推断,我们建议在白垩纪中期(大约9000万年前),极性水通常比20摄氏度温暖。

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