Water-mortar Interaction in a Tunnel Located in Southern Calabria (southern Italy)

G. Vespasiano, P. Notaro, G. Cianflone
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引用次数: 9

Abstract

In this work, we analyzed the results of a geochemical analysis aimed to define the origin of pH anomalies (pH > 11) in water samples collected inside a tunnel located in southern Calabria (southern Italy). We also analyzed the precipitates found close to the main drainage pipes. The hydrogeochemical study allowed us to identify a main NaOH water facies for the many samples collected close to the tunnel. In addition, the correlation diagrams highlighted high concentrations of Na, K, and Al, unrelated to simple water-rock interaction. Further evaluation excluded the possibility that interaction between the water and the outcropping lithologies was the only cause of the ongoing processes. This consideration is supported by the high Na and K concentrations, which cannot be accounted for by interaction between water and calcareous marl. Excluding a natural origin and some anthropogenic factors, one possible explanation is an interaction between the groundwater and the mortars used for consolidation during the excavation phase of the tunnel. Mortar and concrete degradation in aqueous environments produces a great increase in pH, initially deriving from interstitial fluids containing strong alkali (NaOH and KOH) and non-negligible K and Na concentrations, such as we observed in the collected samples.
意大利南部卡拉布里亚某隧道水-砂浆相互作用研究
在这项工作中,我们分析了地球化学分析的结果,旨在确定位于卡拉布里亚南部(意大利南部)的隧道内收集的水样中pH异常(pH > 11)的起源。我们还分析了主排水管附近的沉淀物。水文地球化学研究使我们能够在隧道附近收集的许多样品中确定主要的NaOH水相。此外,相关图突出了高浓度的Na、K和Al,与简单的水岩相互作用无关。进一步的评价排除了水和露头岩性之间的相互作用是正在进行的过程的唯一原因的可能性。这一考虑得到了高Na和K浓度的支持,这不能由水和钙质泥灰岩之间的相互作用来解释。排除自然原因和一些人为因素,一种可能的解释是地下水和隧道开挖阶段用于固结的砂浆之间的相互作用。砂浆和混凝土在水环境中的降解产生了pH值的大幅增加,最初源于含有强碱(NaOH和KOH)和不可忽略的K和Na浓度的间隙流体,如我们在收集的样品中观察到的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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