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21世纪初欧洲山地永久冻土的加速变暖。

Enhanced warming of European mountain permafrost in the early 21st century.

作者信息

Noetzli Jeannette, Isaksen Ketil, Barnett Jamie, Christiansen Hanne H, Delaloye Reynald, Etzelmüller Bernd, Farinotti Daniel, Gallemann Thomas, Guglielmin Mauro, Hauck Christian, Hilbich Christin, Hoelzle Martin, Lambiel Christophe, Magnin Florence, Oliva Marc, Paro Luca, Pogliotti Paolo, Riedl Claudia, Schoeneich Philippe, Valt Mauro, Vieli Andreas, Phillips Marcia

机构信息

WSL Institute for Snow and Avalanche Research SLF, Davos Dorf, Switzerland.

Climate Change, Extremes and Natural Hazards in Alpine Regions Research Centre CERC, Davos Dorf, Switzerland.

出版信息

Nat Commun. 2024 Dec 10;15(1):10508. doi: 10.1038/s41467-024-54831-9.

Abstract

Mountain permafrost, constituting 30% of the global permafrost area, is sensitive to climate change and strongly impacts mountain ecosystems and communities. This study examines 21st century permafrost warming in European mountains using decadal ground temperature data from sixty-four boreholes in the Alps, Scandinavia, Iceland, Sierra Nevada and Svalbard. During 2013-2022, warming rates at 10 metres depth exceed 1 °C dec in cases, generally surpassing previous estimates because of accelerated warming and the use of a comprehensive data set. Substantial permafrost warming occurred at cold and ice-poor bedrock sites at high elevations and latitudes, at rates comparable to surface air temperature increase. In contrast, latent heat effects in ice-rich ground near 0 °C reduce warming rates and mask important changes of mountain permafrost substrates. The warming patterns observed are consistent across all sites, depths and time periods. For the coming decades, the propagation of permafrost warming to greater depths is largely predetermined already.

摘要

山地多年冻土占全球多年冻土面积的30%,对气候变化敏感,对山地生态系统和社区有强烈影响。本研究利用阿尔卑斯山、斯堪的纳维亚半岛、冰岛、内华达山脉和斯瓦尔巴群岛64个钻孔的年代际地温数据,研究了21世纪欧洲山区多年冻土的变暖情况。在2013 - 2022年期间,10米深度处的升温速率在某些情况下超过1℃/十年,由于变暖加速和使用了综合数据集,总体上超过了先前的估计。在高海拔和高纬度的寒冷且贫冰基岩地区,多年冻土出现了显著变暖,升温速率与地表气温升高相当。相比之下,接近0℃的富冰地面的潜热效应降低了升温速率,并掩盖了山地多年冻土基质的重要变化。在所有地点、深度和时间段观察到的变暖模式都是一致的。在未来几十年里,多年冻土变暖向更深层的传播在很大程度上已经预先确定了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0454/11631975/8cff7e68a46f/41467_2024_54831_Fig1_HTML.jpg

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