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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Sources of methane to an Arctic lake in Alaska: An isotopic investigation
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Sources of methane to an Arctic lake in Alaska: An isotopic investigation

机译:阿拉斯加北极湖的甲烷来源:同位素调查

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Sources of dissolved methane (CH_4) at Toolik Lake, Alaska, include both diffusion from lake sediments and groundwater entering the lake from its perimeter. Here we use hydrogen and oxygen isotopes in water (H_2O), carbon and hydrogen isotopes in CH_4, and carbon isotopes in dissolved inorganic carbon (DIC) to calculate the relative importance of lake sediment and groundwater discharge as sources of dissolved CH_4 to Toolik Lake. We also resolve the relative importance of the source contribution spatially within the lake and determine the processes controlling CH_4 concentrations in groundwater surrounding the lake. Our findings, from a mixing model based on isotopes in CH_4, suggest that groundwater is a more important source of CH_4 at the perimeter of the lake where the water-to-air flux is high. Additionally, we find on the local scale that high groundwater methane concentrations may be better linked to areas around the lake where rain is the dominant source of water to the active layer, indicating that changes in precipitation and active layer thaw depth will impact methane concentrations in the active layer and, ultimately, the groundwater associated flux to Toolik Lake. Plain Language Summary This project investigates the cycling of methane, a green house gas, at an Arctic Lake in Alaska. The study shows that increases in rain could cause an increase in the amount of methane transported to Arctic lakes.
机译:在阿拉斯加工具湖(CH_4)的溶解甲烷(CH_4)的来源包括从沉积物和地下水的扩散从其周边进入湖泊。在这里,我们在CH_4中使用氢气和氧同位素,CH_4中的碳和氢同位素和溶解的无机碳(DIC)中的碳同位素,以计算湖泊沉积物和地下水排放的相对重要性作为溶解的CH_4至Toolik湖泊。我们还解决了湖泊内空间的源贡献的相对重要性,并确定控制湖泊地下水中CH_4浓度的过程。我们从基于CH_4的同位素的混合模型的研究结果表明,地下水是湖泊周边的CH_4的更重要来源,水通量高。此外,我们发现局部规模,高地下水甲烷浓度可能更好地与湖周围的区域相连,其中雨是活性层的主要水源,表明沉淀和活性层解冻深度的变化会影响甲烷浓度有源层,最终,地下水相关的通量到Toolik湖。简单语言摘要该项目调查了阿拉斯加的北极湖的绿色房屋气体的甲烷。该研究表明,雨中的增加可能导致运输到北极湖泊的甲烷量的增加。

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