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Analysis and Assessment of Hydrochemical Characteristics of Maragheh-Bonab Plain Aquifer, Northwest of Iran

机译:伊朗西北部马拉格-波纳布平原含水层水化学特征分析与评估

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摘要

The present study aims at assessing the hydrochemistry of the groundwater system of the Maragheh-Bonab Plain located in the East Azarbaijan Province, northwest of Iran. The groundwater is used mainly for drinking, agriculture and industry. The study also discusses the issue of the industrial untreated wastewater discharge to the Plain aquifer that is a high Ca-Cl water type with TDS value of about 150 g/L. The hydrogeochemical study is conducted by collecting and analyzing the groundwater samples from July and September of 2013. The studied system contains three major groundwater types, namely Ca-Mg-HCO3, Na-Cl, and non-dominant water, based on the analysis of the major ions. The main processes contributing to chemical compositions in the groundwater are the dissolution along the flow path, dedolomitisation, ion exchange reactions, and the mixing with wastewater. According to the computed water quality index (WQI) ranging from 25.45 to 194.35, the groundwater in the plain can be categorized into "excellent water", "good water", and "poor water". There is a resemblance between the spatial distribution of the WQI and hydrochemical water types in the Piper diagram. The "excellent" quality water broadly coincides with the Ca-Mg-HCO3 water type. The "poor" water matches with the Na-Cl water type, and the "good" quality water coincides with blended water. The results indicate that this aquifer suffers from intense human activities which are forcing the aquifer into a critical condition.
机译:本研究旨在评估位于伊朗西北部东阿扎拜疆省的马拉格-波纳布平原地下水系统的水化学性质。地下水主要用于饮用水,农业和工业。该研究还讨论了向平原含水层排放未经处理的工业废水的问题,平原含水层是高Ca-Cl水类型,TDS值约为150 g / L。水文地球化学研究是通过收集和分析2013年7月和9月的地下水样品进行的。研究系统包含三种主要的地下水类型,分别是Ca-Mg-HCO3,Na-Cl和非主要水,基于对主要离子。造成地下水化学成分的主要过程是沿流动路径的溶解,去离子化作用,离子交换反应以及与废水的混合。根据计算出的25.45至194.35的水质指数,平原地区的地下水可分为“优水”,“好水”和“差水”。在Piper图中,WQI的空间分布与化学水类型之间存在相似之处。 “优质”水与Ca-Mg-HCO3水类型大致吻合。 “贫”水与Na-Cl水类型匹配,“优质”水与混合水重合。结果表明,该含水层遭受了人类的强烈活动,这迫使该含水层处于临界状态。

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