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Hydrogeochemical assessment of groundwater in Neyveli Basin, Cuddalore District, South India

机译:印度南部库达洛尔地区内维利盆地的地下水水文地球化学评估

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In the light of progressive depletion of groundwater reservoir and water quality deterioration of the Neyveli basin, an investigation on dissolved major constituents in 25 groundwater samples was performed. The main objective was detection of processes for the geochemical assessment throughout the area. Neyveli aquifer is intensively inhabited during the last decenniums, leading to expansion of the residential and agricultural area. Besides semi-aridity, rapid social and economic development stimulates greater demand for water, which is gradually fulfilled by groundwater extraction. Groundwaters of the study area are characterized by the dominance of Na + K over Ca + Mg. HCO3 was found to be the dominant anion followed by Cl and SO4. High positive correlation was obtained among the following ions: Ca–Mg, Cl–Ca,Mg, Na–K, HCO3–H4SiO4, and F–K. The hydrochemical types in the area can be divided into two major groups: the first group includes mixed Ca–Mg–Cl and Ca–Cl types. The second group comprises mixed Ca–Na–HCO3 and Ca–HCO3 types. Most of the groundwater samples are within the permissible limit of WHO standard. Interpretation of data suggests that weathering, ion exchange reactions, and evaporation to some extent are the dominant factors that determine the major ionic composition in the study area.
机译:鉴于地下水库逐渐枯竭和内维利盆地水质恶化,对25个地下水样品中溶解的主要成分进行了调查。主要目标是检测整个地区的地球化学评估过程。 Neyveli含水层在过去的十年中大量居住,导致居民和农业面积的扩大。除了半干旱以外,社会和经济的飞速发展刺激了对水的更大需求,而地下水的开采逐渐满足了对水的需求。研究区的地下水以Na + K占Ca + Mg的优势为特征。发现HCO 3 是主要的阴离子,其次是Cl和SO 4 。在以下离子之间获得了高正相关性:Ca–Mg,Cl–Ca,Mg,Na–K,HCO 3 –H 4 SiO 4 和F–K。该地区的水化学类型可以分为两大类:第一类包括混合的Ca–Mg–Cl和Ca–Cl类型。第二组包括混合的Ca–Na–HCO 3 和Ca–HCO 3 类型。大多数地下水样品均在WHO标准的允许范围内。数据解释表明,风化,离子交换反应和蒸发在一定程度上是决定研究区域主要离子组成的主要因素。

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    《Arabian Journal of Geosciences》 |2011年第2期|p.319-330|共12页
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