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Widespread loss of lake ice around the Northern Hemisphere in a warming world

机译:广泛的湖冰在北部的损失半球在一个变暖的世界

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摘要

Ice provides a range of ecosystem services—including fish harvest, cultural traditions, transportation, recreation and regulation of the hydrological cycle—to more than half of the world's 117 million lakes. One of the earliest observed impacts of climatic warming has been the loss of freshwater ice, with corresponding climatic and ecological consequences. However, while trends in ice cover phenology have been widely documented, a comprehensive large-scale assessment of lake ice loss is absent. Here, using observations from 513 lakes around the Northern Hemisphere, we identify lakes vulnerable to ice-free winters. Our analyses reveal the importance of air temperature, lake depth, elevation and shoreline complexity in governing ice cover. We estimate that 14,800 lakes currently experience intermittent winter ice cover, increasing to 35,300 and 230,400 at 2 and 8 °C, respectively, and impacting up to 394 and 656 million people. Our study illustrates that an extensive loss of lake ice will occur within the next generation,'stressing the importance of climate mitigation strategies to preserve ecosystem structure and function, as well as local winter cultural heritage.
机译:冰提供了一系列的生态系统服务包括鱼丰收,文化传统、交通、娱乐和监管的水文周期超过世界上一半的1.17亿个湖泊。最早观察到气候变暖的影响淡水冰的损失,相应的气候和生态的后果。物候学广泛记录,全面的大规模评估湖冰损失是缺席。湖泊在北半球,我们确定湖泊容易无冰的冬天。分析揭示空气的重要性温度、深度、湖海拔和海岸线复杂性管理冰层覆盖。14800个湖泊目前经验断断续续的冬季冰雪覆盖,增加35300年和230400年在2和8°C,分别,影响到394和6.56亿人。我们的研究说明了一个广泛的损失湖冰会发生在未来代”,强调环境的重要性缓解策略保护生态系统结构和功能,以及当地的冬季文化遗产。

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