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Basin-wide sedimentation changes and deglacial lake-level rise in the Hovsgol basin, NW Mongolia

机译:蒙古西北部Hovsgol盆地的全盆地沉积变化和冰期湖面上升

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A study of 15 gravity cores reveals consistent patterns of lithologic change throughout the Lake Hovsgol basin. Sediments of the last glacial are composed of calcareous clayey silt with an admixture of coarse material from sand to gravel. During the last deglaciation, a basin-wide deposition of finely laminated carbonate mud took place and was ultimately succeeded by the deposition of diatomaceous clayey ooze during the entire Holocene interval. Diatom productivity in Lake Hovsgol during the early Holocene was higher than today, but declined by ca. 6.6 cal ka BP. Sedimentation rate estimates for post-glacial section range from 1.5 to over 6.7 cm/ka for different parts of Lake Hovsgol. Rates appear to have decreased in the late Holocene. The last glacial maximum (LGM) corresponded to a dramatic low stand of Lake Hovsgol on the order of 100 m below today's level, as reflected by littoral facies retrieved in cores from intermediate depths. Age dating of plant fragments in these sediments suggests that lake level started rising no later than 15.4 cal ka BP. By the beginning of the Holocene, Lake Hovsgol evolved from a low-level closed basin lake to an overflowing freshwater lake. The observed dramatic lithologic change and evidence for lake-level change suggest that Lake Hovsgol may in fact serve as a sensitive 'water gauge' in continental interior Asia and that the Hovsgol sedimentary record preserves reliable proxies for past changes in effective moisture balance in the Lake Baikal catchment area.
机译:对15个重力岩心的研究揭示了整个Hovsgol湖盆地的岩性变化规律。最后一个冰川的沉积物是由钙质粘土质粉砂和从沙子到砾石的粗物质混合而成。在最后一次冰消作用期间,发生了盆地范围内精细层压的碳酸盐泥的沉积,并最终在整个全新世时间段内沉积了硅藻土黏土。全新世早期,霍夫斯高尔湖的硅藻生产力高于今天,但下降了约5%。 6.6cal ka BP。 Hovsgol湖不同地区的冰川后断面沉积速率估计范围为1.5至6.7 cm / ka。全新世晚期的速率似乎有所下降。最后一次冰期最大值(LGM)对应于霍夫斯高尔湖的戏剧性低点,比今天的水平低了100 m左右,这反映在岩心从中间深度取回的滨海相中。这些沉积物中植物碎片的年龄测定表明湖泊水位不迟于15.4 cal ka BP开始上升。到全新世初期,霍夫斯高尔湖已从低水平的封闭盆地湖演变为溢流的淡水湖。观察到的剧烈的岩性变化和湖面变化的证据表明,霍夫斯科尔湖实际上可能是亚洲大陆内部敏感的“水位”,并且霍夫斯科尔的沉积记录保留了过去湖泊中有效水分平衡变化的可靠代表。贝加尔湖集水区。

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