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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Modelling groundwater processes in a carbonate catchment: A case study from the Madonie area (Northern Sicily)
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Modelling groundwater processes in a carbonate catchment: A case study from the Madonie area (Northern Sicily)

机译:模拟碳酸盐岩流域的地下水过程:以Madonie地区(北西西里岛)为例

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This study reports on the results of a hydrogeochemical survey carried out in the Madonie area, a carbonate massif located in Palermo Province, Northern Sicily. The large dataset (226 collected sites) is used to highlight the processes controlling the distribution of dissolved chemicals in groundwaters; and, more importantly, to develop a general model (based on reaction-path modelling, and using the EQ3/6 code) of rock-water reactions in a carbonate environment. The investigated groundwater samples have conductivity between 31.7 and 8220 μS/cm; their total dissolved solids (TDS) content is higher near the coast area, where the seawater contribution becomes important. Calcium and HCO3- excess concentrations in groundwaters, with respect to the meteoric water-seawater mixing line, suggest that water-rock interactions in carbonate aquifers play a major role on water chemistry. Using the dataset, reaction-path modelling is used to simulate the evolution of groundwaters upon interaction with carbonate rocks. Model simulations are performed in time mode, taking into account the mineralogical composition of Madonie carbonate rocks, and the different dissolution rates of each dissolving mineral. The model results of reaction path calculations are in fair agreement with analytical data for natural waters, demonstrating the likelihood of model assumptions, and supporting further the relevance of carbonate dissolution in determining the chemistry of fluids in the investigated area. The developed model is useful for low-temperature weathering of carbonate mineral in general, and is thus likely to apply in a variety of geological contexts.
机译:这项研究报告了在位于西西里岛北部巴勒莫省的碳酸盐岩地块Madonie地区进行的水文地球化学调查的结果。大数据集(收集的226个站点)用于突出显示控制地下水中溶解化学物质分布的过程。更重要的是,开发碳酸盐岩环境中岩水反应的通用模型(基于反应路径建模,并使用EQ3 / 6代码)。被调查的地下水样品的电导率在31.7至8220μS/ cm之间。它们的总溶解固体(TDS)含量较高,在沿海地区,海水的贡献变得很重要。相对于大气水-海水混合线,地下水中钙和HCO3-的过量浓度表明,碳酸盐含水层中的水-岩相互作用在水化学中起主要作用。使用数据集,使用反应路径建模来模拟与碳酸盐岩相互作用时地下水的演化。考虑到Madonie碳酸盐岩石的矿物组成以及每种溶解矿物的不同溶解速率,在时间模式下进行了模型模拟。反应路径计算的模型结果与天然水的分析数据完全吻合,证明了模型假设的可能性,并进一步支持了碳酸盐溶解与确定研究区域内流体化学性质的相关性。所开发的模型通常可用于碳酸盐矿物的低温风化,因此很可能适用于多种地质情况。

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