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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >What was the surface temperature in central Antarctica during the last glacial maximum?
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What was the surface temperature in central Antarctica during the last glacial maximum?

机译:在最后一次冰川最高峰期间,南极中部的表面温度是多少?

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The temperature increase at Vostok (Antarctica) from the last glacial maximum to the present warm period is about 8 ℃ based on the deuterium isotope profile. The bore hole temperature (temperature profile in the ice sheet) indicates that the temperature difference may have been much larger, about 15 ℃. The temperature dependent gas occlusion process is the key to evaluate the two scenarios. Atmospheric air penetrates the porous firn layer of the ice sheet and gets trapped at the firn ice boundary. Consequently the air is younger than the surrounding ice when it gets enclosed in bubbles. This age difference (△age) between ice and enclosed gas is temperature and accumulation rate dependent. Therefore it is possible to estimate paleotemperatures from a known △age. We use the linkage between chronologies of CH_4 and water isotopes from Byrd station and Vostok to obtain an experimental △age for Vostok. This experimental △age is then compared to modeled △age for the two temperature scenarios. Our results indicate that the temperature reconstruction deduced from the water isotopic composition is the more probable one.
机译:根据氘的同位素分布,从最后一次冰期到现在的暖期,南极沃斯托克的温度升高约为8℃。钻孔温度(冰盖中的温度曲线)表明温度差可能更大,约为15℃。温度相关的气体吸留过程是评估这两种情况的关键。大气穿透冰盖的多孔烧结层,并被困在烧结冰的边界。因此,当空气被气泡包围时,它比周围的冰还年轻。冰和封闭气体之间的年龄差异(△age)取决于温度和累积速率。因此,可以根据已知的△age估算古温度。我们使用CH_4年代学与来自伯德站和沃斯托克的水同位素之间的联系来获得沃斯托克的实验△age。然后将此实验的△age与两种温度情况下的模拟△age进行比较。我们的结果表明,由水同位素组成推断出的温度重构是更可能的一种。

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