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Conceptual model of recharge to southeastern Badain Jaran Desert groundwater and lakes from environmental tracers

机译:从环境示踪剂到东南部巴丹吉林沙漠地下水和湖泊补给的概念模型

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摘要

Sources of groundwater recharge to the Badain Jaran Desert in China have been investigated using geochemical and isotopic techniques. Stable isotope compositions (δ18O and δ2H) of shallow groundwater and surface water from oasis lakes evolve from a starting composition considerably depleted compared to local unsaturated zone moisture, confirming inferences from chloride mass balance that direct infiltration of precipitation is not a volumetrically important source of recharge to the shallow aquifer in the study area. Shallow phreatic and deeper confined groundwater bodies appear unconnected based on chemical composition and radiocarbon activities. Hydrogeologic evidence points toward a bordering mountain range (Yabulai) as a likely recharge zone, which is consistent with tracer results. A mean residence time in the range of 1–2 ka for the desert’s southeastern margin is inferred from radiocarbon. These results reveal that some replenishment to the desert aquifer is occurring but at a rate much lower than previously suggested, which is relevant for water resources planning in this ecologically sensitive area.udud
机译:已经使用地球化学和同位素技术研究了中国巴丹吉林沙漠的地下水补给源。来自绿洲湖的浅层地下水和地表水的稳定同位素组成(δ18O和δ2H)从与局部非饱和区水分相比明显减少的初始组成演化而来,这证实了氯化物质量平衡的推论,即直接渗透降水不是体积上重要的补给源到研究区域的浅层含水层。根据化学成分和放射性碳的活动,浅潜水和较深的受限地下水体似乎没有联系。水文地质证据表明,可能的补给区是临近的山脉(亚布赖),这与示踪剂的结果是一致的。沙漠东南边缘的平均停留时间为1-2 ka,这是根据放射性碳得出的。这些结果表明,正在对沙漠含水层进行一些补给,但是补给的速度比以前建议的要低得多,这与该生态敏感地区的水资源规划有关。

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