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Modelling spatio-temporal heterogeneities in groundwater quality in Ghana: a multivariate chemometric approach

机译:模拟加纳地下水水质的时空异质性:多元化学计量学方法

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Chemometric techniques were applied to evaluate the spatial and temporal heterogeneities in groundwater quality data for approximately 740 goldmining and agriculture-intensive locations in Ghana. The strongest linear and monotonic relationships occurred between Mn and Fe. Sixty-nine per cent of total variance in the dataset was explained by four variance factors: physicochemical properties, bacteriological quality, natural geologic attributes and anthropogenic factors (artisanal goldmining). There was evidence of significant differences in means of all trace metals and physicochemical parameters (p < 0.001) between goldmining and non-goldmining locations. Arsenic and turbidity produced very high value F's demonstrating that 'physical properties and chalcophilic elements' was the function that most discriminated between non-goldmining and goldmining locations. Variations in Escherichia coli and total coliforms were observed between the dry and wet seasons. The overall predictive accuracy of the discriminant function showed that non-goldmining locations were classified with slightly better accuracy (89%) than goldmining areas (69.6%). There were significant differences between the underlying distributions of Cd, Mn and Pb in the wet and dry seasons. This study emphasizes the practicality of chemometrics in the assessment and elucidation of complex water quality datasets to promote effective management of groundwater resources for sustaining human health.
机译:化学计量学技术被用于评估加纳约740个金矿和农业密集地区的地下水质量数据中的时空异质性。 Mn和Fe之间存在最强的线性和单调关系。数据集总变异的69%由四个变异因素解释:物理化学性质,细菌学质量,自然地质属性和人为因素(手工金矿开采)。有证据表明,金矿和非金矿位置之间的所有痕量金属和理化参数均存在显着差异(p <0.001)。砷和浊度产生非常高的F值,表明“物理性质和硫属元素”是区分非金矿和金矿位置的功能。在干燥和潮湿季节之间观察到大肠杆菌和大肠菌群的变化。判别函数的总体预测准确性表明,非金矿位置的分类精度(89%)比金矿区域(69.6%)略好。在潮湿和干燥季节,镉,锰和铅的潜在分布之间存在显着差异。这项研究强调了化学计量学在评估和阐明复杂水质数据集方面的实用性,以促进有效管理地下水资源以维持人类健康。

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