埃及拉马丹十区地下水水质及水文地球化学评价

Q2 Environmental Science
L. Ibrahim, E. Nofal
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引用次数: 6

摘要

摘要埃及斋月十日地区的地下水是主要的供水来源,由于现有的无衬砌氧化池的高渗透率和再生沙漠中的废水灌溉,该地区被列为高污染风险地区。本调查旨在评估埃及斋月十日地区的地下水质量及其离子的空间分布,确定受污染离子的化学种类(形式),并检查以水文地球化学过程(离子交换、溶解和沉淀)为代表的水岩相互作用过程。在2017年7月从12口井采集的一式三份样本中测定了18个水质参数。应用可视化MINTEQ模型对地下水样品中阳离子、阴离子、微量元素和重元素的地球化学形态进行了研究。水文地球化学指标用于研究地下水化学成分的变化量。结果表明,11个水质参数的空间污染趋势为站点3>站点1>站点2。地球化学形态表明,Ca2+、K+、Mg2+、Na+、Cl−、SO4 2-、NO3−、F−、HCO3−和Fe2+以游离离子的形式分布。以Al3+、Fe3+的氢氧化物和Pb2+的碳酸盐为主。在没有溶解有机碳(DOC)的情况下,镉的游离离子是可接近的。结果表明,蒸发、溶解和降水对含水层内的地下水成分起着至关重要的控制作用。在控制58%的样品的水成分方面,反向离子交换过程比离子交换过程更有效。因此,地下水需要更先进的处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quality and hydrogeochemistry appraisal for groundwater in Tenth of Ramadan Area, Egypt
ABSTRACT Groundwater at Tenth of Ramadan area, Egypt, is the main source of water supply and it is ranked as high pollution risk area due to the high infiltration rate of the existing unlined oxidation ponds and the wastewater based-irrigation in the reclaimed desert. This investigation aims to evaluate groundwater quality and the spatial distribution of their ions, determine the chemical species (forms) of contaminated ions, and examine the process of water-rock interactions represented by the hydrogeochemical processes (ion exchange, dissolution, and precipitation) at Tenth of Ramadan area, Egypt. Eighteen water quality parameters were determined in triplicate samples collected from twelve wells in July 2017. Visual MINTEQ model was applied for geochemical speciation of cations, anions, trace and heavy elements in groundwater samples. The hydrogeochemical indices were used for investigating the quantity of changes in the chemical composition of groundwater. Outcomes revealed that the trend of spatial pollution for eleven water quality parameters is Site 3> Site 1> Site 2. The geochemical speciation indicated that Ca2+, K+, Mg2+, Na+, Cl−, SO4 2-, NO3 −, F−, HCO3 −, and Fe2+ are distributed as free ions. Hydroxides of Al3+, Fe3+ and carbonate of Pb2+ are predominant. The free ions of cadmium are accessible within the absence of dissolved organic carbon (DOC). The results suggest that evaporation, dissolution, and precipitation play an essential control on the groundwater composition within the aquifer. The reverse ion exchange process is more effective than the ion exchange process in controlling the water composition for 58% of samples. Hence, groundwater requires more advanced treatment.
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来源期刊
Water Science
Water Science Environmental Science-Ecology
CiteScore
3.00
自引率
0.00%
发文量
12
审稿时长
18 weeks
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