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Pit lake oxygen and hydrogen isotopic composition in subarctic Sweden: A comparison to the local meteoric water line

机译:亚科尔湖氧气和氢同位素组合物在亚治疗瑞典:与局部流量水线的比较

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摘要

A local meteoric water line based on rainwater and snow core samples was developed for an area comprising parts of eastern Norrbotten and Va ?sterbotten in northern Sweden. The oxygen and hydrogen isotopic compo- sition of groundwater and water from four pit lakes was compared to the local meteoric water line by line - conditioned excess. The isotopic mass balance method was used to estimate the evaporation over inflow ratio and the residence time of the lakes. The results show that the local meteoric water line for the study area is: delta H-2 = (7.80 +/- 0.09) delta O-18 + (4.35 +/- 1.35) parts per thousand, which is close to the global meteoric water line. The surface water of the four pit lakes all have negative line -conditioned excess values which indicate that they have been affected by evaporation. The groundwater plots on the local meteoric water line making it hard to utilize in a mixing model for a lake where precipitation and groundwater are treated as two different sources. Two scenarios were used to estimate the starting composition of the lakes for the isotopic mass balance method. One was based on the intersection point of the local meteoric water line and the local evaporation line and gave evaporation over inflow ratios ranging from 0.23 to 0.74 and residence times ranging from 7.2 to 44.9 years. The second scenario was based on the weighted average composition of precipitation and gave evaporation over inflow ratios ranging from 0.07 to 0.32 and residence times ranging from 2.8 to 14.9 years.
机译:基于雨水和雪芯样品的局部陨石水线是为包括东部Norrbotten和VA的部分地区的区域开发了一个地区,瑞典北部的斯特氏顿斯特顿。通过线调节过量的局部陨石水系比较了来自四个坑湖的地下水和水的氧和氢同位素。同位素质量平衡方法用于估计流入比和湖泊停留时间的蒸发。结果表明,研究区的局部陨石水线是:Delta H-2 =(7.80 +/- 0.09)Delta O-18 +(4.35 +/- 1.35)‰,接近全球陨石水线。四个坑湖的地表水均具有负线 - 监管过量值,表明它们已受到蒸发的影响。局部流量水线上的地下水图难以利用湖泊的混合模型,其中沉淀和地下水被视为两个不同的来源。使用两种情况来估计同位素质量平衡法的湖泊的起始组成。一种基于局部流量水线的交叉点和局部蒸发线,并通过0.23至0.74的流入比,从7.2到44.9岁的停留时间产生蒸发。第二种情况基于沉淀的加权平均成分,并通过0.07至0.32的流入率蒸发,从2.8〜14.9岁的停留时间。

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