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首页> 外文期刊>Environmental Monitoring and Assessment >Application of multivariate statistical analysis and hydrochemical and isotopic investigations for evaluation of groundwater quality and its suitability for drinking and agriculture purposes: case of Oum Ali-Thelepte aquifer, central Tunisia
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Application of multivariate statistical analysis and hydrochemical and isotopic investigations for evaluation of groundwater quality and its suitability for drinking and agriculture purposes: case of Oum Ali-Thelepte aquifer, central Tunisia

机译:多元统计分析以及水化学和同位素调查在评估地下水质量及其对饮用水和农业用途的适用性中的应用:突尼斯中部Oum Ali-Thelepte含水层案例

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摘要

Groundwater plays a dominant role in arid regions; it is among the most available water resources in Tunisia. Located in northwestern Tunisia, Oum Ali-Thelepte is a deep Miocene sedimentary aquifer, where groundwater is the most important source of water supply. The aim of the study is to investigate the hydrochemical processes leading to mineralization and to assess water quality with respect to agriculture and drinking for a better management of groundwater resources. To achieve such objectives, water analysis was carried out on 16 groundwater samples collected during January-February 2014. Stable isotopes and 26 hydrochemical parameters were examined. The interpretation of these analytical data showed that the concentrations of major and trace elements were within the permissible level for human use. The distribution of mineral processes in this aquifer was identified using conventional classification techniques, suggesting that the water facies gradually changes from Ca-HCO3 to Mg-SO4 type and are controlled by water-rock interaction. These results were endorsed using multivariate statistical methods such as principal component analysis and cluster analysis. The sustainability of groundwater for drinking and irrigation was assessed based on the water quality index (WQI) and onWilcox and Richards's diagrams. This aquifer has been classified as "excellent water" serving good irrigation in the area. As for the stable isotope, the measurements showed that groundwater samples lay between global meteoric water line (GMWL) and LMWL; hence, this arrangement signifies that the recharge of the Oum Ali-Thelepte aquifer is ensured by rainwater infiltration through mountains in the border of the aquifer without evaporation effects.
机译:在干旱地区,地下水起着主导作用。它是突尼斯最可用的水资源之一。 Oum Ali-Thelepte位于突尼斯西北部,是中新世深层沉积含水层,其中地下水是最重要的水源。该研究的目的是调查导致矿化的水化学过程,并评估农业和饮水方面的水质,以更好地管理地下水资源。为了实现这些目标,对2014年1月至2月收集的16个地下水样品进行了水分析。检查了稳定的同位素和26个水化学参数。对这些分析数据的解释表明,主要和痕量元素的浓度在人类使用的允许水平内。使用常规分类技术确定了该含水层中矿物过程的分布,这表明水相从Ca-HCO3逐渐变为Mg-SO4类型,并且受水-岩相互作用的控制。使用多元统计方法(例如主成分分析和聚类分析)认可了这些结果。根据水质指数(WQI)以及Wilcox和Richards的图表评估了饮用水和灌溉用水的可持续性。该含水层已被列为“优质水”,在该地区灌溉良好。至于稳定同位素,测量结果表明,地下水样品位于全球大气水位线(GMWL)和LMWL之间;因此,这种安排意味着通过雨水渗入含水层边界中的山脉,确保了Oum Ali-Thelepte含水层的补给,而没有蒸发作用。

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