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Assessment of Irrigation Potential of Groundwater using Water Quality Index Tool

机译:使用水质指数工具评估地下水的灌溉潜力

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Transforming parametric concentrations into qualitative scores irrespective of unit has made the WQI a comprehensive and easy to use tool to the decision makers. As criteria of water quality vary with purpose of use of the groundwater, selection of water quality parameters, involved in working out quality index for specific use also differs. Use of Groundwater Quality Index (GWQI) technique to assess irrigation water quality is innovative in this study. Electrical Conductivity (EC), Sodium Adsorption Ratio (SAR) and Residual Sodium Carbonate (RSC), judged as the three most important parameters to designate irrigation quality of groundwater have been used to work out GWQI in this study. Preparation of ISO Index maps using water quality scores, derived through GWQI tool, vividly portray the irrigation water quality status of the study area where most of the area fall under excellent and good categories. The marked difference in water quality with respect to season in some areas of Southeastern and Southwestern parts of the study area may be correlatable to the recharge and discharge zones of groundwater, respectively.
机译:不论单位如何,将参数浓度转换为定性分数已使WQI成为决策者的综合且易于使用的工具。由于水质的标准随地下水的使用目的而变化,因此为特定用途制定质量指标所涉及的水质参数的选择也有所不同。在这项研究中,使用地下水质量指数(GWQI)技术评估灌溉水质量是创新的。本研究使用电导率(EC),钠吸附率(SAR)和残留碳酸钠(RSC)作为确定地下水灌溉质量的三个最重要参数,确定了GWQI。使用通过GWQI工具得出的水质得分来编制ISO索引图,生动地描绘了研究区域的灌溉水水质状况,该地区大部分地区都属于优良类别。在研究区域东南部和西南部某些地区,水质相对于季节的明显差异可能分别与地下水的补给区和出水区有关。

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