A profound global climate shift took place at the Eocene-Oligocene transition ( approximately 33.5 million years ago) when Cretaceous/early Palaeogene greenhouse conditions gave way to icehouse conditions. During this interval, changes in the Earth's orbit and a long-term drop in atmospheric carbon dioxide concentrations resulted in both the growth of Antarctic ice sheets to approximately their modern size and the appearance of Northern Hemisphere glacial ice. However, palaeoclimatic studies of this interval are contradictory: although some analyses indicate no major climatic changes, others imply cooler temperatures, increased seasonality and/or aridity. Climatic conditions in high northern latitudes over this interval are particularly poorly known. Here we present northern high-latitude terrestrial climate estimates for the Eocene to Oligocene interval, based on bioclimatic analysis of terrestrially derived spore and pollen assemblages preserved in marine sediments from the Norwegian-Greenland Sea. Our data indicate a cooling of approximately 5 degrees C in cold-month (winter) mean temperatures to 0-2 degrees C, and a concomitant increased seasonality before the Oi-1 glaciation event. These data indicate that a cooling component is indeed incorporated in the delta(18)O isotope shift across the Eocene-Oligocene transition. However, the relatively warm summer temperatures at that time mean that continental ice on East Greenland was probably restricted to alpine outlet glaciers.

译文

:始新世-渐新世过渡(大约3350万年前)发生了深刻的全球性气候变化,当时白垩纪/古近纪早期的温室条件被冰室条件所取代。在这段时间间隔内,地球轨道的变化和大气中二氧化碳浓度的长期下降导致南极冰盖的生长达到其近乎现代的大小,并导致北半球冰川冰的出现。但是,此间隔的古气候研究是相互矛盾的:尽管一些分析表明没有重大的气候变化,但其他分析则暗示温度较低,季节性和/或干旱增加。在此期间,北部高纬度地区的气候条件特别不为人所知。在此,我们根据挪威-格陵兰海洋沉积物中保存的陆生孢子和花粉组合的生物气候分析,介绍了始新世至渐新世区间的北部高纬度陆地气候估算。我们的数据表明,在寒冷的月份(冬季)平均温度降至0-2摄氏度左右时,温度降低了大约5摄氏度,并且在Oi-1冰川事件发生之前,季节性也随之增加。这些数据表明冷却成分确实并入了始新世-渐新世过渡带的δ(18)O同位素位移中。但是,当时相对温暖的夏季温度意味着东格陵兰岛的大陆冰可能仅限于高山出口冰川。

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