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The state of toxicity and cause of elevated Iron and Manganese concentrations in surface water and groundwater around Naga Thrust of Assam-Arakan basin, Northeastern India

机译:印度东北部阿萨姆邦-阿拉干盆地纳迦冲断层周围地表水和地下水中铁和锰浓度升高的毒性状态和原因

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摘要

An alarming situation of exceedingly high Fe and Mn concentrations in both surface water and ground-water has been identified in a tectonically active region located in Assam-Arakan basin of northeast India. Cross plots, Pearson correlation, principal component analysis and flow net methods were applied to elucidate the present state and possible sources of Fe and Mn contamination. Out of 32 water samples collected for the study, all of them found exceeding 28 times more for Fe and 136 times more for Mn than EPA limit. Correlation and cross plots of pH, TDS, EC, Fe, Mn, Cu, Zn suggest the reduction of both Fehydroxides and Mn-oxides in redox condition into dissolve states leading to Fe and Mn elevations in groundwater. Principal component analysis exhibits three PC factors in which PC1 and PC3 reflected oxidized condition and PC2 reflected reducing environment that controlled Fe and Mn concentrations. The study also revealed that source of high Fe and Mn contaminations was controlled by groundwater flows. Water table contour flow net suggests that the Chathe river acts as influent stream and supplies elevated Fe and Mn water into the shallow aquifers. Baseflow from the discharge areas into low lying areas causes accretion of Fe and Mn in pond, oxbow lake, backswamp and shallow aquifers.
机译:在印度东北部阿萨姆邦-阿拉干盆地的一个构造活动区,已经发现了令人震惊的地表水和地下水中铁和锰浓度过高的情况。使用交叉图,皮尔逊相关性,主成分分析和流网方法阐明了铁和锰污染的现状和可能来源。在为该研究收集的32个水样品中,所有样品的铁含量均超过EPA限值28倍,锰含量超出136倍。 pH,TDS,EC,Fe,Mn,Cu,Zn的相关性和交叉图表明,氧化还原条件下的氢氧化物和锰氧化物都还原为溶解态,导致地下水中的Fe和Mn升高。主成分分析显示了三个PC因子,其中PC1和PC3反映了氧化状态,PC2反映了控制铁和锰浓度的还原环境。研究还表明,高铁和高锰污染源是由地下水流控制的。地下水位等值线网表明,乍得河是入流,将高铁和锰水供应到浅层含水层中。从流量排放区到低洼地带的底流会导致池塘,牛弓湖,回灌和浅层含水层中铁和锰的增加。

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