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Groundwater vulnerability to pollution mapping of Ranchi district using GIS

机译:利用GIS绘制兰池地区地下水污染易损性

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摘要

Groundwater pollution due to anthropogenic activities is one of the major environmental problems in urban and industrial areas. The present study demonstrates the integrated approach with GIS and DRASTIC model to derive a groundwater vulnerability to pollution map. The model considers the seven hydrogeological factors [Depth to water table (D), net recharge (R), aquifer media (A), soil media (S), topography or slope (T), impact of vadose zone (I) and hydraulic Conductivity(C)] for generating the groundwater vulnerability to pollution map. The model was applied for assessing the groundwater vulnerability to pollution in Ranchi district, Jharkhand, India. The model was validated by comparing the model output (vulnerability indices) with the observed nitrate concentrations in groundwater in the study area. The reason behind the selection of nitrate is that the major sources of nitrate in groundwater are anthropogenic in nature. Groundwater samples were collected from 30 wells/tube wells distributed in the study area. The samples were analyzed in the laboratory for measuring the nitrate concentrations in groundwater. A sensitivity analysis of the integrated model was performed to evaluate the influence of single parameters on groundwater vulnerability index. New weights were computed for each input parameters to understand the influence of individual hydrogeological factors in vulnerability indices in the study area. Aquifer vulnerability maps generated in this study can be used for environmental planning and groundwater management.
机译:人为活动造成的地下水污染是城市和工业区的主要环境问题之一。本研究证明了采用GIS和DRASTIC模型的综合方法可以得出地下水易受污染的地图。该模型考虑了七个水文地质因素[对地下水位的深度(D),净补给量(R),含水层介质(A),土壤介质(S),地形或坡度(T),渗流带(I)和水力的影响电导率(C)用于生成地下水易受污染的图。该模型用于评估印度贾坎德邦兰契地区地下水对污染的脆弱性。通过将模型输出(脆弱性指数)与研究区域地下水中观察到的硝酸盐浓度进行比较,对模型进行了验证。选择硝酸盐的原因是,地下水中硝酸盐的主要来源是人为的。从分布在研究区域的30口井/管井中收集地下水样品。在实验室中分析了样品,以测量地下水中的硝酸盐浓度。对集成模型进行了敏感性分析,以评估单个参数对地下水脆弱性指数的影响。为每个输入参数计算新的权重,以了解各个水文地质因素对研究区域脆弱性指数的影响。在这项研究中生成的含水层脆弱性图可用于环境规划和地下水管理。

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