首页> 外文期刊>Journal of water resource and protection >Hydrogeological Conceptual Model of Groundwater from Carbonate Aquifers Using Environmental Isotopes (~(18)O,~2H) and Chemical Tracers: A Case Study in Southern Latium Region, Central Italy
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Hydrogeological Conceptual Model of Groundwater from Carbonate Aquifers Using Environmental Isotopes (~(18)O,~2H) and Chemical Tracers: A Case Study in Southern Latium Region, Central Italy

机译:利用环境同位素(〜(18)O,〜2H)和化学示踪剂研究碳酸盐岩含水层地下水的水文地质概念模型:以意大利中部南部t地区为例

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The present work provides hydrochemical and stable isotope data and their interpretations for 54 springs and 20 wells, monitored from 2002 to 2006, in the Southern Latium region of Central Italy to identify flow paths, recharge areas and hydrochemical processes governing the evolution of groundwater in this region. The hydrogeological conceptual model of the carbonate aquifers of southern Latium was based on environmental isotopic and hydrochemical investigation techniques to characterize and model these aquifer systems with the aim of achieving proper management and protection of these important resources. Most of the spring samples, issuing from Lepini, Ausoni and Aurunci Mts., are characterized as Ca-Mg-HCO_3 water type, however, some samples show a composition of Na-Cl and mixed Ca-Na-HCO_3-Cl waters. Groundwater samples from Pontina Plain are mostly characterized by Na-Cl and Ca-Cl type waters. Geochemical modeling and saturation index computation of the Lepini, Ausoni Aurunci springs and Pontina Plain wells shows an interaction with carbonate rocks. Most of the spring and well water samples were saturated with respect to calcite and dolomite, however all sampled waters were undersaturated with respect to gypsum and halite. The relationship between δ~(18)O and δ~2H, for spring and well water samples, shows shifts of both the slope and the deuterium excess when compared to the world meteoric (WMWL) and central Italy meteoric (CIMWL) water lines. The deviation of data points from the meteoric lines can be attributed to evaporation both during the falling of the rain and by run-off on the ground surface before infiltration. Most springs and wells have a deuterium excess above 10 ‰ suggesting the precipitation in the groundwater comes from the Mediterranean sector. On the basis of local isotopic gradients, in combination with topographic and geologic criteria, four recharge areas were identified in the Aurunci Mountains. In Pontina Plain, the elevations of the recharging areas suggest that the Lepini carbonate aquifers are feeding them.
机译:本工作提供了2002年至2006年在意大利中部南部Latium地区监测的54口泉水和20口井的水化学和稳定同位素数据及其解释,以识别支配该区域地下水演化的流动路径,补给区和水化学过程。区域。南部t的碳酸盐含水层的水文地质概念模型基于环境同位素和水化学调查技术来表征和模拟这些含水层系统,以期实现对这些重要资源的适当管理和保护。来自Lepini,Ausoni和Aurunci山的大多数春季样品的特征是Ca-Mg-HCO_3水类型,但是,一些样品显示Na-Cl和Ca-Na-HCO_3-Cl混合水的成分。来自蓬蒂纳平原的地下水样品主要以Na-Cl和Ca-Cl型水为特征。 Lepini,Ausoni Aurunci泉和Pontina Plain井的地球化学模型和饱和指数计算显示出与碳酸盐岩的相互作用。大部分泉水和井水样品的方解石和白云石都饱和,但是所有采样水的石膏和石盐均不饱和。与世界大气水线(WMWL)和意大利中部大气水线(CIMWL)相比,春季和井水样品的δ〜(18)O和δ〜2H之间的关系显示了斜率和氘过量的变化。数据点与流线的偏离可归因于降雨期间的蒸发以及渗透前地面的径流。大多数泉水和井中的氘过量超过10‰,表明地下水中的降水来自地中海地区。根据局部同位素梯度,结合地形和地质标准,在奥伦奇山中确定了四个补给区。在蓬蒂纳平原,补给区的高处表明,Lepini碳酸盐含水层正在为它们供水。

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