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沿埃及中上部第四纪含水层中的地下水脆弱性和微量元素扩散。

Groundwater vulnerability and trace element dispersion in the Quaternary aquifers along middle Upper Egypt.

机构信息

Egyptian Petroleum Sector, Petrotrade Co, 1 Anwar Al Moftty St. Abbas El Akkad St., Nasr City, Cairo, Egypt.

Department of Mines and Quarry, Minia, Minia Governorate, Egypt.

出版信息

Environ Monit Assess. 2020 Feb 12;192(3):174. doi: 10.1007/s10661-020-8109-5.

Abstract

Association of trace metal concentrations in water is problematic; however, its information is scarce and sometimes contradicted. This work presents variations in dissolved major constituents and trace element concentrations along the quaternary aquifers located in middle Upper Egypt (Minia and Assiut governorates). A total of 205 groundwater samples from these aquifers were collected. Auxiliary parameters (pH, alkalinity, and conductivity), major cations (Ca, Mg, Na, and K), dominant anions (HCO, SO, Cl, and NO), and trace element (B, Fe, Cu, Mn, Ni, Pb, Cd, and Cr) concentrations were measured in all samples. Univariate (correlation coefficient and scatter matrix) analysis was employed combined with multivariate (principal coordinates analysis) analysis to identify the chemical characteristics of groundwater that are responsible for generating most of the variability within the dataset. Also, hierarchical cluster analysis was applied to classify the geochemical origin of the groundwater constituents. The results indicate that the groundwater pollution is mainly due to water-rock interactions, including aquifer matrix dissolution, redox reaction of trace metals, input from wastewater, and agricultural fertilizers.

摘要

水中痕量金属浓度的相关性是一个问题,但相关信息很少,而且有时相互矛盾。本研究展示了位于埃及中上部(明亚和阿西尤特省)的第四纪含水层中溶解主要成分和微量元素浓度的变化。从这些含水层中采集了总共 205 个地下水样本。在所有样本中测量了辅助参数(pH 值、碱度和电导率)、主要阳离子(Ca、Mg、Na 和 K)、主要阴离子(HCO、SO、Cl 和 NO)和微量元素(B、Fe、Cu、Mn、Ni、Pb、Cd 和 Cr)的浓度。采用单变量(相关系数和散点矩阵)分析结合多变量(主坐标分析)分析,以确定导致数据集内大部分变异性的地下水的化学特征。此外,还应用了层次聚类分析来对地下水成分的地球化学起源进行分类。结果表明,地下水污染主要是由于水岩相互作用,包括含水层基质溶解、痕量金属的氧化还原反应、废水和农业肥料的输入。

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