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Evaluation of Surface Water Quality on Spatiotemporal Gradient Using Multivariate Statistical Techniques: A Case Study of River Chenab, Pakistan

机译:利用多元统计技术评价时空梯度地表水质 - 以江南河川河

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摘要

The Chenab River is experiencing deteriorating water quality due to ill-planned industrialization, population pressure, extensive agriculture, water diversion and rapid urbanization. Our study was designed to highlight the spatiotemporal variation in the water quality of the Chenab and identify potential pollution sources using multivariate analyses viz cluster analysis, discriminant analysis, principal component analysis and factor analysis. Water samples were collected from nine sampling sites along the Chenab from 2012 to 2014 during dry and wet seasons. Cluster analysis identified three zones, i.e., least stressed zone (LSZ), moderately stressed zone (MSZ) and highly stressed zone (HSZ). The discriminant analysis differentiated seven parameters (COD, Cl, SO4, K, Cu, Cd and Pb) and five parameters (TDS, Cl, S, F and Ca) as most significant on spatial and temporal bases, respectively. The untreated industrial and domestic wastewater, atmospheric deposition and surface runoff containing heavy metals and fertilizer along with a decrease in dilution factor due to the diversion of the water through link canals were identified as the major factors causing water quality deterioration. Therefore, the results imply that a comprehensive water management plan and implementation of environmental laws are urgently needed to protect Chenab water quality.
机译:由于规划的工业化,人口压力,广泛的农业,进水和城市化迅速,澄建河正在经历劣化的水质。我们的研究旨在突出Chenab水质的时空变化,并使用多变量分析鉴别群体聚类分析,判别分析,主成分分析和因子分析来确定潜在的污染源。在干燥和潮湿的季节,从Chenab从茶草沿茶草沿九次采样点收集水样。聚类分析确定了三个区域,即最小压力区(LSZ),适度胁迫区域(MSZ)和高压区(HSZ)。判别分析分化为七个参数(COD,CL,SO4,K,Cu,CD和Pb)和五个参数(TDS,CL,S,F和CA),分别在空间和时间基础上是最重要的。未经治疗的工业和家用废水,大气沉积和含有重金属和肥料的表面径流以及由于通过连杆运河转移而导致的稀释因子的降低被确定为导致水质恶化的主要因素。因此,迫切需要彻底需要综合水管理计划和环境法的实施来保护陈草水质。

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