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Hydrogeochemical Processes In The Groundwater Environment Of Muktsar, Punjab: Conventional Graphical And Multivariate Statistical Approach

机译:旁遮普邦Muktsar地下水环境中的水文地球化学过程:常规图形和多元统计方法

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摘要

Understanding the hydrogeochemical processes that govern groundwater quality is important for sustainable management of the water resource. A study with the objective of identifying the hydro-geochemical processes and their relation with existing quality of groundwater was carried out in an intensively cultivated district of Punjab, India. The study approach includes conventional graphical plots and multivariate analysis of the hydrochemical data to define the geochemical evaluation of aquifer system based on the ionic constituents, water types, hydrochemical facies and factors controlling groundwater quality. The results suggest that different natural hydrogeochemical processes like simple dissolution, mixing, weathering of carbonate minerals locally known as "kankar" silicate weathering and ion exchange are the key factors in the pre-monsoon, which was superseded by leaching processes loaded with anthropogenic inputs in the post-monsoon. Limited reverse ion exchange has been noticed at few locations of the study area especially in pre-monsoon periods. There was a significant effect of monsoon observed in terms of hardness and the significant amount of area with temporary hardness (Ca~(2+)-Mg~(2+)-HCO_3~- type) in the pre-monsoon switched to permanent hardness domain, i.e. (Ca~(2+)-Mg~(2+)-Cl~- type) by the post-monsoon. At most, factor analyses substantiate the findings of conventional graphical plots and providerngreater confidence in data-interpretation. Thus, the study highlights the descriptive capabilities of conventional and multivariate techniques as effective tools in groundwater evaluation.
机译:了解控制地下水质量的水文地球化学过程对于水资源的可持续管理非常重要。为了确定水文地球化学过程及其与地下水现有质量的关系,进行了一项研究,该研究是在印度旁遮普邦的一个集约耕作区进行的。该研究方法包括常规图形图和水化学数据的多变量分析,以基于离子成分,水类型,水化学相和控制地下水质量的因素来定义含水层系统的地球化学评价。结果表明,不同的自然水文地球化学过程,如简单的溶解,混合,碳酸盐矿物的风化(当地称为“ kankar”硅酸盐风化和离子交换)是​​季风前的关键因素,被人为输入的浸出过程所取代。季风后。在研究区域的几个位置,特别是在季风前时期,已经注意到有限的反向离子交换。季风对硬度有显着影响,季风前将永久性硬度(Ca〜(2 +)-Mg〜(2 +)-HCO_3〜-型)转变为永久硬度的区域很大。域,即季风后的(Ca〜(2 +)-Mg〜(2 +)-Cl〜-型)。因子分析最多可以证实传统图形图的发现,并且可以提高提供者对数据解释的信心。因此,本研究强调了常规和多变量技术作为地下水评估有效工具的描述能力。

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