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Palaeoclimate evidence of vulnerable permafrost during times of low sea ice 期刊论文
NATURE, 2020, 577 (7789) : 221-+
作者:  Vaks, A.;  Mason, A. J.;  Breitenbach, S. F. M.;  Kononov, A. M.;  Osinzev, A. V.;  Rosensaft, M.;  Borshevsky, A.;  Gutareva, O. S.;  Henderson, G. M.
收藏  |  浏览/下载:10/0  |  提交时间:2020/05/13

Climate change in the Arctic is occurring rapidly, and projections suggest the complete loss of summer sea ice by the middle of this century(1). The sensitivity of permanently frozen ground (permafrost) in the Northern Hemisphere to warming is less clear, and its long-term trends are harder to monitor than those of sea ice. Here we use palaeoclimate data to show that Siberian permafrost is robust to warming when Arctic sea ice is present, but vulnerable when it is absent. Uranium-lead chronology of carbonate deposits (speleothems) in a Siberian cave located at the southern edge of continuous permafrost reveals periods in which the overlying ground was not permanently frozen. The speleothem record starts 1.5 million years ago (Ma), a time when greater equator-to-pole heat transport led to a warmer Northern Hemisphere(2). The growth of the speleothems indicates that permafrost at the cave site was absent at that time, becoming more frequent from about 1.35 Ma, as the Northern Hemisphere cooled, and permanent after about 0.4 Ma. This history mirrors that of year-round sea ice in the Arctic Ocean, which was largely absent before about 0.4 Ma (ref.(3)), but continuously present since that date. The robustness of permafrost when sea ice is present, as well as the increased permafrost vulnerability when sea ice is absent, can be explained by changes in both heat and moisture transport. Reduced sea ice may contribute to warming of Arctic air(4-6), which can lead to warming far inland(7). Open Arctic waters also increase the source of moisture and increase autumn snowfall over Siberia, insulating the ground from low winter temperatures(8-10). These processes explain the relationship between an ice-free Arctic and permafrost thawing before 0.4 Ma. If these processes continue during modern climate change, future loss of summer Arctic sea ice will accelerate the thawing of Siberian permafrost.


  
Sixty Years of Widespread Warming in the Southern Middle and High Latitudes (1957-2016) 期刊论文
JOURNAL OF CLIMATE, 2019, 32 (20) : 6875-6898
作者:  Jones, Megan E.;  Bromvvich, David H.;  Nicolas, Julien P.;  Carrasco, Jorge;  Plavcova, Eva;  Zou, Xun;  Wang, Sheng-Hung
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Atmosphere  Antarctica  Southern Hemisphere  Antarctic Oscillation  Climate change  Climate variability  
Projections of southern hemisphere tropical cyclone track density using CMIP5 models 期刊论文
CLIMATE DYNAMICS, 2019, 52: 6065-6079
作者:  Bell, Samuel S.;  Chand, Savin S.;  Tory, Kevin J.;  Dowdy, Andrew J.;  Turville, Chris;  Ye, Harvey
收藏  |  浏览/下载:6/0  |  提交时间:2019/11/26
Tropical cyclone  Track  Southern hemisphere  Model projection  Climate change  
Teleconnection stationarity, variability and trends of the Southern Annular Mode (SAM) during the last millennium 期刊论文
CLIMATE DYNAMICS, 2018, 51: 2321-2339
作者:  Datwyler, Christoph;  Neukom, Raphael;  Abram, Nerilie J.;  Gallant, Ailie J. E.;  Grosjean, Martin;  Jacques-Coper, Martin;  Karoly, David J.;  Villalba, Ricardo
收藏  |  浏览/下载:6/0  |  提交时间:2019/04/09
Climate change  Climate reconstruction  Paleoclimate  Southern Hemisphere  Holocene  
Climate Change Amplifications of Climate-Fire Teleconnections in the Southern Hemisphere 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2018, 45 (10) : 5071-5081
作者:  Mariani, Michela;  Holz, Andres;  Veblen, Thomas T.;  Williamson, Grant;  Fletcher, Michael-Shawn;  Bowman, David M. J. S.
收藏  |  浏览/下载:7/0  |  提交时间:2019/04/09
climate  teleconnections  SAM  climate change  wildfires  Southern Hemisphere  
Stratosphere-resolving CMIP5 models simulate different changes in the Southern Hemisphere 期刊论文
CLIMATE DYNAMICS, 2018, 50: 2239-2255
作者:  Rea, Gloria;  Riccio, Angelo;  Fierli, Federico;  Cairo, Francesco;  Cagnazzo, Chiara
收藏  |  浏览/下载:4/0  |  提交时间:2019/04/09
Stratosphere  Southern Hemisphere change  CMIP5 models  
Projections of Southern Hemisphere atmospheric circulation interannual variability 期刊论文
CLIMATE DYNAMICS, 2017, 48
作者:  Grainger, Simon;  Frederiksen, Carsten S.;  Zheng, Xiaogu
收藏  |  浏览/下载:4/0  |  提交时间:2019/04/09
Modes of variability  Atmospheric circulation  Southern Hemisphere  CMIP5 models  Climate change