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首页> 外文期刊>Arabian journal of geosciences >Assessment of groundwater vulnerability using a specific vulnerability method: Case of Maritime Djeffara shallow aquifer (Southeastern Tunisia)
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Assessment of groundwater vulnerability using a specific vulnerability method: Case of Maritime Djeffara shallow aquifer (Southeastern Tunisia)

机译:使用特定漏洞方法评估地下水脆弱性:海洋Djeffara浅含水层(东南部突尼斯)的情况

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摘要

Groundwater resources are vulnerable to contamination especially in shallow aquifers. The aquifer hydrogeological parameters and the Land Uses category combinations lead to subdivide areas according to their contamination likelihood. In arid and semi-arid regions, shallow aquifers are more exposed to groundwater contamination due to high population densities (extensive uses) and agricultural activities (nitrate contamination). Moreover, these regions are characterized by low rainfall and high evaporation. Furthermore, the spread of farmland, industrial and domestic sectors, is the principal contaminant producer which threats the groundwater quality. To protect these limited resources, the groundwater vulnerability assessment was developed in Maritime Djeffara shallow aquifer (Southeastern Tunisia). The study area is essentially occupied by agricultural areas (intensive use of chemical fertilizers) in addition to the discharge of industrial zones. The main objective of this study is to assess the aquifer vulnerability using the Susceptibility Index (SI) method as a specific vulnerability model. The results show that the study area is classified into five classes of vulnerability: very low, low, medium, high, and very high (1.54, 20, 41.54, 35.9, and 1.02%, respectively) with an uneven spatial distribution. The risk results exhibit three degrees: low, moderate, and high. The validation of the vulnerability model was performed by using salinity values and nitrate concentrations with a correlation coefficient of about 57 and 55%, respectively. This study could serve as a scientific basis for sustainable land use planning and groundwater management in the study area.
机译:地下水资源容易受到污染,特别是在浅含水层中。含水层水文地质参数和土地使用类别组合导致细分区域根据污染可能性。在干旱和半干旱地区,由于人口密度高(广泛的用途)和农业活动(硝酸盐污染),浅含水层更为暴露于地下水污染。此外,这些区域的特点是降雨量低,蒸发高。此外,农田,工业和国内行业的传播是威胁地下水质量的主要污染制片人。为了保护这些有限的资源,地下水漏洞评估是在海事Djeffara浅含水层(突尼斯东南部)开发的。除了工业区的排放之外,研究领域基本上被农业领域(集约使用化学肥料)占据。本研究的主要目的是使用敏感性指数(SI)方法作为特定漏洞模型来评估含水层漏洞。结果表明,研究区分为五类脆弱性:非常低,低,中,高,高(1.54,20,41.54,35.9和1.02%),空间分布不均匀。风险结果表现出三度:低,中等和高。通过使用盐度值和硝酸盐浓度的相关系数分别为约57和55%的硝酸盐浓度来进行漏洞模型的验证。本研究可以作为研究区的可持续土地利用规划和地下水管理的科学依据。

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