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Hydrogeochemical and multivariate statistical appraisal of pollution sources in the groundwater of the lower Bhavani River basin in Tamil Nadu

机译:泰米尔纳德邦下佛达尼河流域地下水的水文地球化学和多元统计评价

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摘要

ABSTRACT Multivariate statistical techniques have emerged as one of the most effective tools in hydrochemical characterization and the identification of pollution sources in groundwater. Hydrogeochemical data of the 36 wells in the Lower Bhavani River basin in Tamil Nadu are used in this study. Hierarchical cluster analysis(HCA) derived three major clusters, in which cluster 1 has high concentration of Ions ( n =?14 ; avg TDS?=?1259 mg/L), followed by cluster 2 ( n =?13 ; avg TDS?=?775 mg/L) and cluster 3 ( n =?8; avg TDS?=?357mg/L ). The hydrochemical facies also agree with the cluster hydrochemistry with Na-Cl type (cluster 1), Ca-Mg-Cl (cluster 2), and Ca-HCO_(3)(cluster 3) showing the influences of anthropogenic and the natural (rock–water interaction related) geochemical patterns. Aqueous Speciation Modeling suggests that the undersaturated Halite (Na-Cl), Gypsum, and Anhydrate minerals in all three clusters, Indicating the possibility for the dissolution of Na, Ca, SO_(4),?and Cl. As in HCA, Principle Component Analysis (PCA) also delivered three major components showing the impact of textile industries and agricultural fertilizers, leakage of sewages and the natural interaction of water with fluorite rich minerals. It is observed that both natural and anthropogenic processes are controlling the variations in the hydrochemical parameters and correlated with land use patterns.
机译:摘要多元统计技术已成为水化学特征中最有效的工具之一,以及地下水中的污染源的鉴定。本研究使用了泰米尔纳德纳德尔·南德河流域36孔的水文地球化学数据。分层聚类分析(HCA)衍生的三个主要簇,其中簇1具有高浓度的离子(n =Δ14; avg tds?= 1259 mg / l),其次是簇2(n =?13; avg tds? =?775 mg / L)和簇3(n =?8; avg tds?= 357mg / l)。水化学相也与Na-Cl型(簇1),Ca-Mg-Cl(簇2)和Ca-HCO_(3)(群集3)与Na-Cl型(簇1)和CA-HCO_(3)进行达成一致,显示人为和自然(岩石)的影响 - 水互动相关)地球化学模式。含水形状模型表明,所有三种簇中的稀饱和宿骨(Na-Cl),石膏和无水水合物矿物质,表明溶解Na,Ca,SO_(4),?和Cl的可能性。与HCA一样,原理成分分析(PCA)还提供了三种主要组成部分,显示了纺织业和农业肥料,污水泄漏的影响,水与萤石富矿物的自然相互作用。观察到天然和人为过程既是控制水化学参数的变化,与土地使用模式相关。

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