The Mt Conero limestone ridge: the contribution of stable isotopes to the identification of the recharge area of aquifers

M. Mussi, T. Nanni, A. Tazioli, P. Vivalda
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引用次数: 19

Abstract

The recharge settings of aquifers (as those of the carbonate ridges in central Apennines) is strongly dependent on hydrogeological and geo-structural complexity; in fact, geochemical data, hydrographs interpretation, hydrogeological and geo-structural surveys, tracer and isotope data are usually not so developed and quite difficult to put into relation each other. In this paper, the importance of relating isotope techniques to hydrogeological survey on the recharge area evaluation is demonstrated by studying the system of the Mt Conero limestone ridge, located in central Italy close to the Adriatic sea. A closed system, at a pilot scale, with sufficiently well defined outcropping areas of aquifer, which is offering a contribution to the aquifer recharge area evaluation. In this study a hydrogeological investigation was performed to identify the infiltration areas in the aquifer, analysing the entire geological formation divided into several members, each of them showing different hydrogeological behaviour. In addition, periodic sampling of groundwater and of precipitation at different elevations were carried out to study the isotopic composition over a period of about 4 years. Weighted mean and arithmetic mean of isotopes were used in the gradient calculation and compared giving actually different results. The mean recharge altitude of the aquifer, as evaluated by weighted mean of isotopes, is about 100 m higher than the average elevation of the aquifer outcrop; moreover, it was proven that the vast majority of the recharge is due to the more permeable members of the aquifer (about 20% of the outcropping rocks, located at higher elevation). The recharge mechanism of the aquifer is therefore depending both on the isotope values of the local precipitation and on the distinct infiltration conditions existing in the lithotypes.
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Conero山石灰岩山脊:稳定同位素对确定含水层补给区的贡献
含水层的补给环境(如亚平宁中部的碳酸盐山脊)强烈依赖于水文地质和地质构造的复杂性;事实上,地球化学资料、水文曲线解释、水文地质和地质构造调查、示踪剂和同位素资料往往不那么发达,彼此之间很难建立联系。本文通过对意大利中部靠近亚得里亚海的Conero石灰岩山脊体系的研究,论证了同位素技术在水文地质调查中对补给区评价的重要性。一个封闭的系统,在试点规模上,具有足够明确的含水层露头区域,这对含水层补给面积的评价有贡献。本研究进行了水文地质调查,确定了含水层的入渗区域,分析了整个地质地层,将其划分为几个成员,每个成员都表现出不同的水文地质行为。此外,在4年左右的时间里,对不同海拔的地下水和降水进行了周期性采样,研究了同位素组成。在梯度计算中采用了同位素的加权平均值和算术平均值,并进行了比较,得到了不同的结果。根据同位素加权平均值,含水层的平均补给高度比露头含水层的平均高度高约100 m;此外,事实证明,绝大多数补给是由于含水层中渗透性较强的部分(约占露头岩石的20%,位于较高海拔)。因此,含水层的补给机制既取决于当地降水的同位素值,也取决于岩石类型中存在的不同入渗条件。
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