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Subsurface release and transport of dissolved carbon in a discontinuous permafrost region

机译:在不连续的多年冻土区域中地下碳的释放和溶解碳的运输

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Subsurface hydrological flow pathways and advection rates through the landscape affect the quantity and timing of hydrological transport of dissolved carbon. This study investigates hydrological carbon transport through the subsurface to streams and how it is affected by the distribution of subsurface hydrological pathways and travel times through the landscape. We develop a consistent mechanistic, pathway- and travel time-based modeling approach for release and transport of dissolved organic carbon (DOC) and dissolved inorganic carbon (DIC). The model implications are tested against observations in the subarctic Abiskojokken catchment in northernmost Sweden (68 21' N, 18 49' E) as a field case example of a discontinuous permafrost region. The results show: (a) For DOC, both concentration and load are essentially flow-independent because their dynamics are instead dominated by the annual renewal and depletion. Specifically, the flow independence is the result of the small characteristic DOC respiration-dissolution time scale, in the range of 1 yr, relative to the average travel time of water through the subsurface to the stream. (b) For DIC, the load is highly flow-dependent due to the large characteristic weathering-dissolution time, much larger than 1 yr, relative to the average subsurface water travel time to the stream. This rate relation keeps the DIC concentration essentially flow-independent, and thereby less fluctuating in time than the DIC load.
机译:穿过景观的地下水文流动路径和对流速率会影响溶解碳的水文传输的数量和时间。这项研究调查了通过地下到河流的水文碳传输,以及地下水文水文路径的分布和穿越景观的时间如何对其影响。我们为溶解有机碳(DOC)和溶解无机碳(DIC)的释放和运输开发了一种基于机理,路径和行程时间的一致建模方法。该模型的含义已针对瑞典最北端(68 21'N,18 49'E)的北极亚比斯科约克肯流域的观测值进行了测试,作为不连续多年冻土地区的现场案例。结果表明:(a)对于DOC,浓度和负荷基本上与流量无关,因为它们的动力主要由年度更新和消耗控制。具体而言,流量独立性是相对于水通过地下到达水流的平均行程时间在1 yr范围内的小特征DOC呼吸溶解时间尺度的结果。 (b)对于DIC,由于特征性的风化溶解时间长,相对于地下水流的平均地下传播时间要长于1年,因此负载高度依赖于流量。该速率关系使DIC浓度基本独立于流量,因此与DIC负载相比,时间波动较小。

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