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Hydrothermal gases in a shallow aquifer at Mt. Amiata, Italy: insights from stable isotopes and geochemical modelling

机译:山顶浅水层中的热液气体。意大利Amiata:稳定同位素和地球化学模型的见解

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摘要

We investigate the interaction between hydrothermal gases and groundwater in a major aquifer exploited for potable supply in the geothermal-volcanic area of Mt. Amiata, Central Italy. Two springs and two wells located on different sides of the volcanic edifice have been repeatedly sampled over the last 11 years. More than 160 chemical analyses and 10 isotopic analyses of total dissolved carbon (C-13 - total dissolved inorganic carbon (TDIC)=-15.9 to -7.8 parts per thousand vs. V-PDB) and sulphate (S-34-SO4=-6.9 to 5.1 parts per thousand vs. V-CDT) have been processed with geochemical modelling techniques. Best-fitting conditions between analytical data and model outputs have been achieved by numerical optimization, allowing for a quantitative description of gas-water-rock interactions occurring in this aquifer. Numerical calculations support a conceptual model that considers water-rock interactions to occur in the volcanic aquifer after inflow of deep-seated gases (CO2(g) and H2S(g)), and total conversion of H2S(g) to SO4, in the absence of mixing with geothermal waters from reservoirs currently exploited for electricity generation.
机译:我们调查了在Mt地热火山区用于饮用水供应的主要含水层中的热液气体与地下水之间的相互作用。意大利中部阿米亚塔。在过去的11年中,分别对位于火山大厦两侧的两个泉水和两个井进行了反复采样。总溶解碳(C-13-总溶解无机碳(TDIC)=-15.9至-7.8千分比V-PDB)和硫酸盐(S-34-SO4 =-)的160余种化学分析和10种同位素分析用地球化学建模技术处理了6.9至5.1千分含量(相对于V-CDT)。通过数值优化,已实现了分析数据与模型输出之间的最佳拟合条件,从而可以定量描述该含水层中发生的气-水-岩相互作用。数值计算支持了一个概念模型,该模型考虑了深层气体(CO2(g)和H2S(g))流入以及H2S(g)向SO4的总转化后火山岩含水层中发生的水-岩相互作用。没有与目前用于发电的水库中的地热水混合。

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