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Risk assessment and ranking of heavy metals concentration in Iran's Rayen groundwater basin using linear assignment method

机译:线性分配法对伊朗Rayen地下水盆地中重金属浓度的风险评估和排名

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Groundwater is an important source of freshwater for domestic, agricultural and industrial uses in Iran. Groundwater quality assessment and environmental evaluation are considered as critical issues in recent years. Intensive human activities have resulted in significant changes in environment leading to serious groundwater contamination. This research proposes a two-part systematic approach to tackle heavy metals contamination problem in Rayen Basin (southeast Iran). The first part consists of determining geochemical characteristics and evaluating groundwater quality through application of water quality index and heavy metal pollution indices (i.e. HPI and MI). The second part includes ranking sampling stations based on heavy metals concentration in groundwater using linear assignment method. Six types of water could be identified according to the dominant cations and anions in samples: Ca-HCO3, Ca-SO4, Na-Cl, Na-HCO3, Na-SO4 and mixed water type. Calculation of indices revealed that natural and anthropogenic activities are playing a vital role in degrading groundwater quality in the study area. The proposed methodology can help in groundwater resource management and preventative activities by identifying risk factors and recognizing their pollution level. The results of this research provide useful and effective information for water pollution control and management and can be used in environmental studies in order to protect groundwater resources in the future.
机译:地下水是伊朗用于家庭,农业和工业用途的重要淡水来源。近年来,地下水质量评估和环境评估被视为关键问题。人类的密集活动导致环境发生重大变化,导致严重的地下水污染。这项研究提出了一个由两部分组成的系统方法来解决Rayen盆地(伊朗东南部)的重金属污染问题。第一部分包括确定地球化学特征和通过应用水质指数和重金属污染指数(即HPI和MI)评估地下水质量。第二部分包括使用线性分配方法根据地下水中重金属的浓度对采样站进行排名。根据样品中的主要阳离子和阴离子,可以识别出六种类型的水:Ca-HCO3,Ca-SO4,Na-Cl,Na-HCO3,Na-SO4和混合水类型。指数的计算表明,自然和人为活动在研究区域的地下水质量下降中起着至关重要的作用。所提出的方法可以通过识别风险因素并识别其污染水平来帮助地下水资源管理和预防活动。这项研究的结果为水污染的控制和管理提供了有用和有效的信息,可以在环境研究中用于保护未来的地下水资源。

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