利用GIS制图系统和统计方法对巴基斯坦旁遮普南部地下水质量的圈定和评价

Asif Ali, A. Shakoor
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摘要

地下水是巴基斯坦的第二大水源。本文研究了巴基斯坦旁遮普省南部木尔坦、哈内瓦尔、洛德兰、韦哈里、Pakpattan和Sahiwal地区地下水质量空间变化的划分和评价。采用EC、SAR和RSC(电导率、剩余碳酸钠和钠吸附比)3个主要指标对灌溉进行评价,通过GIS、GS+软件和统计分析对地下水水质进行检测。评价了地下水样品在灌溉中的适用性和制图效果。所分析的参数与WAPDA、PID和PCRWR采用的标准进行了比较。在Kriging插值图上划分了3个权重为良好(权重为3)、2个权重为边缘(权重为2)和1个权重为不良(权重为1)的区带层。结果表明,由于EC、SAR和RSC参数的影响,季风前和季风后地下水质量较低的边缘和危险区面积分别从2%增加到10%和7%增加到40%。大部分研究区域(> 35%)的污染是由EC参数引起的。在两个季节,大多数研究区域(tehsil Kabirwala)在所有讨论的质量参数中都观察到低质量。研究区地下水水质参数权重由东北向西南递减。在该区域的下部观察到低重量区。建议在高易损性地区采用人工井开采,特别是在下部采用含金储水和雨水收集技术,降低水的矿化度。政策制定者应该制定有关水资源质量管理的政策,以实现农业和工业用水的最佳利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delineation and Evaluation of Groundwater Quality by using GIS mapping system and Statistical Approaches in Southern Punjab, Pakistan
                The groundwater is the second largest source of water in Pakistan. This study deals with the delineation and evaluation of spatial variations in the groundwater quality in Multan, Khanewal, Lodhran, Vehari, Pakpattan and Sahiwal district of Southern Punjab, Pakistan. The three major indicators such as EC, SAR and RSC (Electrical Conductivity, Residual Sodium Carbonate and Sodium Adsorption Ratio) are used and appraisal for irrigation to check groundwater quality via GIS, GS+ software and statistical analysis. The groundwater samples were evaluated for its applicability in irrigation and for mapping consequence . The parameters analyzed were compared with Standards that were adopted by WAPDA, PID and PCRWR. Kriging interpolation maps were delineated with three zone layers such as good (weight = 3), marginal (weight = 2) and bad (weight = 1). It was concluded that the area under marginal and hazardous groundwater quality with low weights was significantly increased from 2 to 10% and 7 to 40% in pre- and post-monsoon respectively due to EC, SAR and RSC parameters. Most of the study area (> 35%) contaminated was due to EC parameters. Most of the study area (tehsil Kabirwala) was observed with low quality against all discussed quality parameters in both season. The groundwater quality parameter weightage decreases from northeast to southwest of study region. Low weightage zones were observed in lower part of the area. It is recommended that in high vulnerability area artificial well recovery, auriferous storage and rain harvesting techniques should be adopted specially in lower part to reduce salinity of water. The policy maker should make policies about regulation of water resources with good quality for best utilization of water for agricultural and industrial use.
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