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Circumpolar distribution and carbon storage of thermokarst landscapes

机译:热岩溶景观的极极分布和碳储量

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摘要

Thermokarst is the process whereby the thawing of ice-rich permafrost ground causes land subsidence, resulting in development of distinctive landforms. Accelerated thermokarst due to climate change will damage infrastructure, but also impact hydrology, ecology and biogeochemistry. Here, we present a circumpolar assessment of the distribution of thermokarst landscapes, defined as landscapes comprised of current thermokarst landforms and areas susceptible to future thermokarst development. At 3.6 × 106 km2, thermokarst landscapes are estimated to cover ∼20% of the northern permafrost region, with approximately equal contributions from three landscape types where characteristic wetland, lake and hillslope thermokarst landforms occur. We estimate that approximately half of the below-ground organic carbon within the study region is stored in thermokarst landscapes. Our results highlight the importance of explicitly considering thermokarst when assessing impacts of climate change, including future landscape greenhouse gas emissions, and provide a means for assessing such impacts at the circumpolar scale.
机译:热喀斯特是一个过程,在该过程中,富含冰的多年冻土层的融化会导致地面沉降,从而形成独特的地貌。由于气候变化而加速的喀斯特地貌会破坏基础设施,但也会影响水文,生态和生物地球化学。在这里,我们对热岩溶景观的分布进行了极地评估,定义为由当前的热岩溶地貌和易受未来热岩溶发展影响的区域组成的景观。据估计,在3.6×10 6 km 2 ,喀斯特地貌景观覆盖了北部多年冻土区的〜20%,其中三种景观类型的贡献大致相等,这三种类型的特征是湿地,湖泊并且出现了斜坡热岩溶地貌。我们估计研究区域内大约一半的地下有机碳存储在热岩溶景观中。我们的结果凸显了在评估气候变化的影响(包括未来的景观温室气体排放)时明确考虑热岩溶的重要性,并提供了一种在极极尺度上评估此类影响的方法。

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