Hydro-Geochemistry and Application of Water Quality Index (WQI) for Ground Water Quality Assessment, Wadi Al-Samen—Hebron—West Bank

Waseem Al-Tamimi, Fadoua Hamzaoui Azaza, Marwan Ghanem, Rachida Bouhalila
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Abstract

Located south of the West Bank, Wadi Al-Samen is considered one of the most important sources of groundwater recharge for the eastern aquifer in Hebron. It is polluted by sewage originating from domestic and industrial consumption in the Hebron area. Water quality assessment is an important criterion for achieving sustainable development. To evaluate water quality, twenty samples were collected from groundwater sources for two seasons and were analyzed for Physical properties (Total dissolved solids (TDS), Electrical conductivity (EC), potential hydrogen (pH), Temperature (T)), Four major cations (Mg2+, Ca2+, Na+ and K+), and the Major anions (HCO-3, Cl-, and SO2-4); geochemical methods such as Piper scheme were used for the sample result analysis. To characterize wastewater components, six samples were collected from the Wadi discharge for two seasons and were analyzed (potential hydrogen (pH), Electrical Conductivity (EC), Total Dissolved Solid (TDS), Total Suspended Solids (TDS), Total Suspended Solids (TSS), Biological Oxygen Demand (BOD5), and Chemical Oxygen Demand (COD). The results of nitrate levels showed that 20% of the ground water samples exceeded the standard limit of the World Health Organization (WHO). The quality of drinking water was assessed using the Water Quality Index (WQI), which suggests that 10% of samples are classified from poor to very poor. The abundance of cations from highest to lowest was found to be: Ca; Mg; Na, and for the anions it is HCO3; Cl; SO4. The dominant hydrochemical facies of 35% of collected aquifer samples reveal that Ca-Mg-Na-Cl-HCO3 are in the domain. Evaluation of irrigation suitability was performed using parameters of Sodium adsorption ratio (SAR), electric conductivity (EC), and Salinity. The results in both rounds for EC showed that all water sources are suitable for irrigation according to Todd’s classification. SAR was not suitable in three water resources samples. Wilcox analysis for the two seasons revealed that 85% of samples are not appropriate for irrigation uses.
水文地球化学及水质指数(WQI)在萨曼-希伯伦-西岸地下水质量评价中的应用
Wadi Al-Samen位于西岸南部,被认为是希伯伦东部含水层最重要的地下水补给来源之一。它受到希布伦地区家庭和工业消费产生的污水的污染。水质评价是实现可持续发展的重要标准。为了评价水质,在2个季节采集了20个地下水水源样品,分析了其物理性质(总溶解固形物(TDS)、电导率(EC)、氢电位(pH)、温度(T))、4种主要阳离子(Mg2+、Ca2+、Na+和K+)和主要阴离子(HCO-3、Cl-和SO2-4);样品结果分析采用了地球化学方法,如Piper方案。为了表征废水成分,收集了两个季节的6个样本,分析了潜在氢(pH)、电导率(EC)、总溶解固体(TDS)、总悬浮固体(TDS)、总悬浮固体(TSS)、生物需氧量(BOD5)和化学需氧量(COD)。硝酸盐含量检测结果显示,20%的地下水样本超过了世界卫生组织(WHO)的标准限值。使用水质指数(WQI)对饮用水质量进行了评估,该指数表明,10%的样本被分类为差至极差。阳离子丰度由高到低依次为:Ca;毫克;Na,阴离子是HCO3;Cl;SO4。35%的含水层样品的优势水化学相显示Ca-Mg-Na-Cl-HCO3在该区域中。采用钠吸附比(SAR)、电导率(EC)、盐度等参数评价灌溉适宜性。两轮EC的结果表明,根据Todd的分类,所有水源都适合灌溉。在3个水资源样本中均不适合SAR。Wilcox对这两个季节的分析显示,85%的样本不适合灌溉用途。
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