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Contribution of hydrochemistry to the characterization and assessment of ground water resources: the case of Tebessa alluvial aquifer (Algeria)

机译:水化学对地面水资源表征及评价的贡献:Tebessa发生含水层的情况(阿尔及利亚)

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Assessment of groundwater resources requires the knowledge of geometric and hydrodynamic features. In the Mio-Plio-Quaternary aquifer of the plain of Tebessa (Algeria), the groundwater quality is deteriorating. Different methods using geochemistry (ions Na~+, Cl~-, SO_4~(2-), NO_3~-) and conductivity are compared with the hydrogeological information to identify the main processes involved in the increase in pollution. The evaluation for water contamination is based on the method proposed by Tolga et al. (2009) for irrigation waters, and on that proposed by Neubert et al. (2008), for those intended for drinking water supply. This method is a new technique of indexation of water sensitivity to pollution. It combines data from water chemistry and the results obtained by applying the DRASTIC model to the area of study. The obtained maps of sensitivity reveal zones that coincide almost perfectly with those of strong anthropogenic activities. Suitable water management policies are needed to save this unconfined aquifer and provide the data necessary to define the area at increased risk from these phenomena.
机译:对地下水资源的评估需要了解几何和流体动力学特征。在Tebessa(阿尔及利亚)平原的Mio-Plio-armifer中,地下水质量正在恶化。使用地球化学的不同方法(离子Na〜+,Cl〜,SO_4〜(2-),与水文地质信息进行比较,以确定污染增加所涉及的主要过程。水污染评价基于托尔加等人提出的方法。 (2009年)灌溉水域,并由Neubert等人提出。 (2008),适用于用于饮用供水的人。该方法是对污染的水敏感性分度的新技术。它将来自水化学的数据和通过将剧烈模型应用于学习领域而获得的结果。所获得的敏感性地图揭示了与强烈的人为活动几乎完美一致的区域。需要合适的水管理政策来保存这种无舒张的含水层,并提供在这些现象的增加风险下定义该区域所需的数据。

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