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The role of unsaturated zone in estimating groundwater recharge in arid and semiarid areas as depicted by geochemical tracers

机译:不饱和区在地球化学示踪剂所描绘的干旱和半干旱地区地下水补给估算地下水补给的作用

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In arid and semiarid area, the recharge rate is relatively limited and the unsaturated zone (UZ) is commonly thick. The moisture in the UZ may represent the water infiltrating from precipitation during the past decades to thousands of years. Therefore, the multiple geochemical tracers in soil moisture, including Cl (chloride mass balance), ~3H (tritium peak displacement), NO_3, ~2H, ~(18)O, can be used to estimate diffuse recharge rate and related recharge characteristics. Based on 45 UZ profiles with maximum depth of 62 m in the Ordos Basin in NW China, a typical arid and semiarid area, we has used multiple geochemical tracers to study the following recharge informations: (1) reconstruction of groundwater recharge history, (2) determination of groundwater recharge mechanism, and (3) assessment of impact of vegetation changes on groundwater recharge. The results show that the soil texture (epically the shallow soil), vegetation and precipitation mainly control the recharge rate. This study also found that shallow groundwater in arid and semiarid areas is often not in equilibrium with near-surface boundary conditions. To estimate present recharge information, the UZ must be considered. The whole recharge process from precipitation to groundwater cannot be well understood unless the UZ have been included in arid and semiarid areas.
机译:在干旱和半干旱区域中,充电率相对有限,不饱和区(UZ)通常是厚的。 uz中的水分可能代表在过去几十年中从降水中渗透到数千年的水。因此,在土壤水分中的多个地球化学示踪剂,包括Cl(氯化物质量平衡),〜3H(氚峰位移),NO_3,〜2H,〜(18)O可用于估计弥漫性补给率和相关的补给特性。基于鄂尔多斯盆地最大深度的45个UZ型材,典型的干旱和半干旱地区,我们使用了多种地球化学示踪剂来研究以下充值信息:(1)重建地下水充电历史,(2 )地下水充电机制的测定,以及(3)植被变化对地下水补给的影响。结果表明,土壤纹理(封存浅土),植被和降水主要控制充电率。本研究还发现干旱和半干旱区域的浅地下水通常不具有近表面边界条件的平衡。为了估计目前的充值信息,必须考虑UZ。除非UZ已包含在干旱和半干旱地区,否则整个充电过程无法得到很好的理解。

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