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Groundwater replenishment analysis by using natural isotopes in Ejina Basin, Northwestern China

机译:西北额济纳盆地天然同位素对地下水的补给分析

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The Ejina Basin underlying complex aquifers is located in the lower reaches of the Heihe River with an arid climate and 40 mm mean annual precipitation. As the balance of the natural ecosystem in the Ejina Basin is fragile and easily upset, it is very important to estimate and rationally use the limited groundwater resources to maintain the balance. Water samples were collected from the Heihe River and wells for chemical and isotopic measurements across the basin. The Piper diagram gives two main types of hydrochemical features. Against the background of the regional geology, combining isotope δ~(18)O, tritium, and chemical analysis with groundwater flows indicated by a shallow groundwater level contour map, different kinds of groundwater sources and ways to replenish groundwater were discovered. North of the study area are artesian wells that are replenished by the mountainous area at the boundary between China and Mongolia. Replenishment for most of the groundwater resources of the Guri-nai oasis comes from the Heihe River seepage flow of the highly conductive paleochannel, not from the Badain Jaran Desert as indicated by TDS and tritium analysis. The different groundwater ages which are younger than 35 years were approximately estimated by radioactive isotope tritium (T). By such efforts, groundwater resources can be effectively evaluated with the engineering impact of the Heihe River Project.
机译:额济纳盆地位于复杂的含水层之下,位于黑河下游,气候干旱,年平均降水量40毫米。由于额济纳盆地自然生态系统的平衡脆弱且容易被破坏,因此估算和合理利用有限的地下水资源来维持平衡非常重要。从黑河和水井收集水样,用于整个盆地的化学和同位素测量。 Piper图给出了两种主要类型的水化学特征。在区域地质背景下,结合同位素δ〜(18)O,tri和化学分析,并结合浅水位等高线图所示的地下水流,发现了各种地下水源和补充地下水的方法。研究区以北是自流井,由中蒙边界的山区补充。古里奈绿洲大部分地下水的补给来自高传导性古河道的黑河渗流,而不是TDS和tri分析表明来自巴丹吉林沙漠。放射性同位素tri(T)大约估算了35岁以下的不同地下水年龄。通过这些努力,可以利用黑河工程的工程影响对地下水资源进行有效评估。

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