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DOI10.1038/s43017-022-00362-0
Warming-driven erosion and sediment transport in cold regions
Zhang, Ting; Li, Dongfeng; East, Amy E.; Walling, Desmond E.; Lane, Stuart; Overeem, Irina; Beylich, Achim A.; Koppes, Michele; Lu, Xixi
发表日期2022
EISSN2662-138X
起始页码832
结束页码851
卷号3期号:12
英文摘要Rapid atmospheric warming since the mid-twentieth century has increased temperature-dependent erosion and sediment-transport processes in cold environments, affecting food, energy and water security. In this Review, we summarize landscape changes in cold environments and provide a global inventory of increases in erosion and sediment yield driven by cryosphere degradation. Anthropogenic climate change, deglaciation, and thermokarst disturbances are causing increased sediment mobilization and transport processes in glacierized and periglacierized basins. With continuous cryosphere degradation, sediment transport will continue to increase until reaching a maximum (peak sediment). Thereafter, transport is likely to shift from a temperature-dependent regime toward a rainfall-dependent regime roughly between 2100-2200. The timing of the regime shift would be regulated by changes in meltwater, erosive rainfall and landscape erodibility, and complicated by geomorphic feedbacks and connectivity. Further progress in integrating multisource sediment observations, developing physics-based sediment-transport models, and enhancing interdisciplinary and international scientific collaboration is needed to predict sediment dynamics in a warming world. Anthropogenic warming is causing cryosphere degradation, which is increasing erosion and sediment transport. This Review describes changes in sediment fluxes and explains how peak sediment will be reached as a result of deglaciation and permafrost thaw.
语种英语
WOS研究方向Environmental Sciences ; Geosciences, Multidisciplinary
WOS类目Science Citation Index Expanded (SCI-EXPANDED)
WOS记录号WOS:000877421800001
来源期刊NATURE REVIEWS EARTH & ENVIRONMENT
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/280535
作者单位National University of Singapore; United States Department of the Interior; United States Geological Survey; University of Exeter; University of Lausanne; University of Colorado System; University of Colorado Boulder; University of British Columbia
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GB/T 7714
Zhang, Ting,Li, Dongfeng,East, Amy E.,et al. Warming-driven erosion and sediment transport in cold regions[J],2022,3(12).
APA Zhang, Ting.,Li, Dongfeng.,East, Amy E..,Walling, Desmond E..,Lane, Stuart.,...&Lu, Xixi.(2022).Warming-driven erosion and sediment transport in cold regions.NATURE REVIEWS EARTH & ENVIRONMENT,3(12).
MLA Zhang, Ting,et al."Warming-driven erosion and sediment transport in cold regions".NATURE REVIEWS EARTH & ENVIRONMENT 3.12(2022).
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