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Large difference in carbon emission – burial balances between boreal and arctic lakes

机译:碳排放差异很大–北方湖泊和北极湖泊之间的埋葬平衡

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摘要

Lakes play an important role in the global carbon (C) cycle by burying C in sediments and emitting CO2 and CH4 to the atmosphere. The strengths and control of these fundamentally different pathways are therefore of interest when assessing the continental C balance and its response to environmental change. In this study, based on new high-resolution estimates in combination with literature data, we show that annual emission:burial ratios are generally ten times higher in boreal compared to subarctic – arctic lakes. These results suggest major differences in lake C cycling between biomes, as lakes in warmer boreal regions emit more and store relatively less C than lakes in colder arctic regions. Such effects are of major importance for understanding climatic feedbacks on the continental C sink – source function at high latitudes. If predictions of global warming and northward expansion of the boreal biome are correct, it is likely that increasing C emissions from high latitude lakes will partly counteract the presumed increasing terrestrial C sink capacity at high latitudes.
机译:湖泊通过将C埋在沉积物中并将CO2和CH4排放到大气中,在全球碳(C)循环中发挥重要作用。因此,在评估大陆C平衡及其对环境变化的响应时,需要关注这些根本不同的途径的优势和控制力。在这项研究中,基于新的高分辨率估算并结合文献数据,我们表明,与北极-北极湖相比,北方的年排放量与埋葬率通常要高十倍。这些结果表明,生物群落之间湖泊碳循环的主要差异,因为与较寒冷的北极地区的湖泊相比,温暖的北方地区的湖泊排放更多的碳,并且储存的碳相对较少。这样的影响对于了解高纬度大陆C汇-源函数的气候反馈至关重要。如果对全球变暖和北方生物群落向北扩张的预测是正确的,那么高纬度湖泊碳排放量的增加很可能会部分抵消高纬度地区陆地碳汇的增加。

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