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Groundwater quality zonation in a shallow weathered rock aquifer using GIS

机译:GIS在浅层风化含水层中的地下水水质区划。

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Monitoring of groundwater quality on a regular basis is essential for use in the domestic, agricultural and industrial sectors. Further, it is even more important in rural areas where people make use of groundwater for domestic purposes without prior treatment. This study was carried out with the objective of assessing the groundwater quality based on electrical conductivity (EC), fluoride, nitrate and bromide in a part of Nalgonda district, Andhra Pradesh, southern India. Groundwater samples were collected from 45 locations in January 2010. They were analysed using an ion chromato-graph for fluoride, bromide and nitrate concentration in groundwater. EC was measured in the field using a portable digital probe. The groundwater samples were not suitable for drinking and domestic use based on EC, fluoride, nitrate and bromide in 6.7, 57, 22 and 11% of the locations, respectively. Overall, 31% of the locations had suitable groundwater quality. The north-eastern and south-eastern parts of this area had unsuitable groundwater. A total of 378.68 km2 had unsuitable groundwater for drinking and domestic purposes. The source for the increased concentration of these parameters is varied and hence it is essential to restore the groundwater quality in this area. Of the several techniques available, artificial recharge by rainwater harvesting will help to dilute the concentration of these ions and improve the groundwater quality.
机译:定期监测地下水质量对于在家庭,农业和工业部门中使用至关重要。此外,在人们未经事先处理而将地下水用于家庭目的的农村地区,这一点尤为重要。进行这项研究的目的是基于印度南部安得拉邦纳尔贡达区的一部分,根据电导率(EC),氟化物,硝酸盐和溴化物评估地下水质量。 2010年1月从45个地点收集了地下水样品。使用离子色谱仪分析了地下水中的氟化物,溴化物和硝酸盐浓度。使用便携式数字探针在现场测量EC。基于EC,氟化物,硝酸盐和溴化物的地下水样品分别在6.7%,57%,22%和11%的位置不适合饮用和家庭使用。总体而言,有31%的地区地下水水质合适。该地区的东北部和东南部地下水不合适。总计378.68平方公里的地下水不适合饮用和生活。这些参数增加浓度的来源是多种多样的,因此恢复该地区的地下水质量至关重要。在几种可用的技术中,通过雨水收集进行人工补给将有助于稀释这些离子的浓度并改善地下水质量。

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