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Natural and anthropic processes controlling groundwater hydrogeochemistry in a tourist destination in northeastern Brazil

机译:在巴西东北部旅游目的地控制地下水水文地球化学的自然和人为过程

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The objective of this study was to analyze spatial-seasonal changes to identify the natural and anthropic processes that control groundwater hydrogeochemistry in urban aquifers in municipality of Len double dagger is (Bahia). Tourism is the main activity of this municipality, which is an important tourist destination in northeastern Brazil and which maintains its tourism infrastructure by using groundwater. Two field campaigns were conducted (dry and rainy seasons) in order to collect groundwater samples extracted from 15 tubular wells distributed over the urban area of the municipality. The Piper diagram, multivariate statistical analyses, and artificial neural networks indicated that there are two types of water (Na-Cl and Na- (-)), which were divided into five different clusters. Seasonal variation was observed to significantly alter groundwater hydrogeochemistry. According to the Gibbs diagram, groundwater within the urban area of Len double dagger is belonged to the rainfall dominance, demonstrating low water-rock interaction. Hydrogeochemical modeling results suggested hydrolysis as the main natural factors controlling process. However, mineral dissolution also occurred in one of the clusters. Human-originated trace contamination by nitrate, chloride, and sulfate occurred in a zone of the urban area. This contamination was observed regardless of climate seasonality, indicating that the main controlling process for groundwater hydrochemistry in this region is wastewater mobilization (indirect artificial recharge).
机译:这项研究的目的是分析空间季节性变化,以识别控制伦双匕首市(巴伊亚州)的城市含水层中地下水水地球化学的自然和人为过程。旅游业是该市的主要活动,该市是巴西东北部的重要旅游目的地,并利用地下水维持其旅游基础设施。开展了两次野外运动(干旱和雨季),以收集从分布在该市市区的15口管井中提取的地下水样本。 Piper图,多元统计分析和人工神经网络表明,水有两种类型(Na-Cl和Na-(-)),被分为五个不同的簇。观察到季节变化会显着改变地下水水文地球化学。根据吉布斯图,伦双匕首市区内的地下水属于降雨优势,表明水-岩相互作用较低。水文地球化学模拟结果表明,水解是控制自然过程的主要因素。但是,矿物溶解也发生在其中一个簇中。在市区的某个区域中发生了由人源的硝酸盐,氯化物和硫酸盐造成的微量污染。不论气候季节如何,都可以观察到这种污染,这表明该地区地下水水化学的主要控制过程是废水动员(间接人工补给)。

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