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The world’s largest High Arctic lake responds rapidly to climate warming

机译:世界上最大的高北极湖对气候变暖做出快速反应

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摘要

Using a whole-watershed approach and a combination of historical, contemporary, modeled and paleolimnological datasets, we show that the High Arctic’s largest lake by volume (Lake Hazen) has succumbed to climate warming with only a ~1 °C relative increase in summer air temperatures. This warming deepened the soil active layer and triggered large mass losses from the watershed’s glaciers, resulting in a ~10 times increase in delivery of glacial meltwaters, sediment, organic carbon and legacy contaminants to Lake Hazen, a >70% decrease in lake water residence time, and near certainty of summer ice-free conditions. Concomitantly, the community assemblage of diatom primary producers in the lake shifted dramatically with declining ice cover, from shoreline benthic to open-water planktonic species, and the physiological condition of the only fish species in the lake, Arctic Char, declined significantly. Collectively, these changes place Lake Hazen in a biogeochemical, limnological and ecological regime unprecedented within the past ~300 years.
机译:使用整体流域方法,结合历史,现代,建模和古湖泊学数据集,我们显示,按体积计,北极高地最大的湖泊(哈森湖)已屈服于气候变暖,夏季空气相对仅增加了约1°C温度。这种变暖加深了土壤活性层并引发了流域冰川的大量质量损失,导致冰川融水,沉积物,有机碳和遗留污染物向黑岑湖的输送量增加了约10倍,湖水驻地减少了70%以上时间和夏季无冰条件的确定性。随之而来的是,湖泊中的硅藻初级生产者的群落组成随着冰盖的减少而发生了急剧变化,从海岸线底栖生物到开阔水域的浮游生物,湖泊中唯一的鱼类北极炭的生理状况显着下降。总的来说,这些变化使Hazen湖处于过去300年来前所未有的生物地球化学,森林学和生态环境中。

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