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Assessment of geochemical processes in the unconfined and confined aquifers in the Eastern Ganges Basin: a geochemical approach

机译:恒河东部无限制和承压含水层中地球化学过程的评估:一种地球化学方法

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摘要

Groundwater quality is gaining more importance in groundwater management due to rapid growth in population, agriculture and industrial sectors worldwide. The goal of the present study is to evaluate the groundwater chemistry and to identify the geochemical processes governing the water chemistry in the shallow unconfined and deeper confined aquifers in the Eastern Ganges Basin using geochemical methods. Groundwater samples were analysed for major ions and metals (Fe, Mn, Zn, Cu, Pb and As). Shallow wells are found to have high pH, EC, TDS, Ca, Mg, Cl and SO4, and low HCO3/Cl ratio compared to the deep wells. However, the average concentration of Na, HCO3, NO3, PO4, F and Mn is not significantly varied with depth which indicates that the variation in the water chemistry between unconfined and confined aquifers is not only due to the natural processes but also indicates that surface contamination sources could have affected the water chemistry in the unconfined aquifer. In the unconfined aquifer, processes like wastewater infiltration, denitrification, reverse ion exchange and mineral weathering govern the water chemistry. The water chemistry in the confined aquifer is regulated by weathering of silicate and carbonate minerals and regional flow.
机译:由于全球人口,农业和工业部门的快速增长,地下水质量在地下水管理中正变得越来越重要。本研究的目的是利用地球化学方法评估东部恒河盆地浅层无限制和较深的承压含水层中的地下水化学,并确定控制水化学的地球化学过程。分析了地下水样品中的主要离子和金属(铁,锰,锌,铜,铅和砷)。与深井相比,浅井的pH值,EC,TDS,Ca,Mg,Cl和SO4高,而HCO3 / Cl比低。但是,Na,HCO3,NO3,PO4,F和Mn的平均浓度没有随深度显着变化,这表明无限制和受限含水层之间的水化学变化不仅是由于自然过程造成的,而且还表明表面污染源可能会影响无限制含水层中的水化学性质。在无限制的含水层中,废水渗透,反硝化,反离子交换和矿物风化等过程控制着水的化学性质。密闭含水层中的水化学受硅酸盐和碳酸盐矿物的风化和区域流量的调节。

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