Evaluating the contamination susceptibility of groundwater resources through anthropogenic activities in Islamabad, Pakistan: a GIS-based DRASTIC approach

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES
Fayaz Ullah Shinwari, Mumtaz Ali Khan, Syed Mamoon Siyar, Urooj Liaquat, George Kontakiotis, Mohamed Zhran, Muhammad Shahab, Fahad Alshehri
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Abstract

The problem of access to clean water has been highlighted by the United Nation’s Sustainable Development Goals, and in areas such as Islamabad, Pakistan, water pollution is more of an immediate concern. The impact of excessive use of fertilizers coupled with improper waste management has harmed aquifers. This necessitates the need for tools to map out regions of concern and assist with clean-up strategies. This paper uses an amalgamation of the DRASTIC model and GIS capabilities to evaluate the contamination threat to aquifers in Islamabad. The model involves seven components: depth to water, recharge, aquifer media, soil media, topography, impact of the vadose zone, and hydraulic conductivity, and formulates an index of susceptibility within the range of 275–900. The areas were classified into five categories according to their level of susceptibility: very low (275–400; 22 km2, 2%), low (400–525; 306 km2, 28%), moderate (525–650; 500 km2, 47%), high (650–775; 221 km2, 21%), and very high (775–900; 26 km2, 2%). Twenty-eight of the samples had nitrate concentrations ranging from − 0.72 ppm to 2.8 ppm which helped calibrate the model and did not show a high correlation with the DRASTIC index. This suggests that the contamination was limited and did not originate from widespread sources. The results highlight the importance of focusing measures on high-risk areas, such as Rawal Lake and the National Agricultural Research Center, where risks of contamination are severe. The baseline that the present study has developed is useful in terms of safe groundwater extraction and also offers a workable methodology for urban groundwater management practices in the world. Its usefulness is enhancing policies aimed at protecting clean water resources and reducing the risk of environmental degradation in sensitive areas worldwide.

通过人为活动评价巴基斯坦伊斯兰堡地下水资源的污染易感性:基于gis的DRASTIC方法
联合国的可持续发展目标强调了获得清洁水的问题,在巴基斯坦的伊斯兰堡等地区,水污染是一个更紧迫的问题。过度使用肥料加上不当的废物管理的影响已经损害了含水层。这就需要有工具来绘制出令人关切的区域并协助制定清理战略。本文使用DRASTIC模型和GIS功能的结合来评估伊斯兰堡含水层的污染威胁。该模型包括入水深度、补给、含水层介质、土壤介质、地形、渗透带影响、水力导率7个组成部分,并在275 ~ 900范围内建立了敏感性指数。这些地区根据易感程度分为5类:极低(275-400);22平方公里,2%),低(400-525;306平方公里,28%),中等(525-650平方公里;500平方公里,47%),高(650-775;221平方公里,21%),非常高(775-900;26平方公里,2%)。28个样品的硝酸盐浓度范围从- 0.72 ppm到2.8 ppm,这有助于校准模型,并没有显示出与DRASTIC指数的高相关性。这表明污染是有限的,并非来自广泛的来源。研究结果强调了将措施重点放在高风险地区的重要性,如拉瓦尔湖和国家农业研究中心,这些地区的污染风险非常严重。本研究制定的基线在安全抽取地下水方面是有用的,也为世界上的城市地下水管理实践提供了可行的方法。它的作用是加强旨在保护清洁水资源和减少世界各地敏感地区环境退化风险的政策。
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来源期刊
Applied Water Science
Applied Water Science WATER RESOURCES-
CiteScore
9.90
自引率
3.60%
发文量
268
审稿时长
13 weeks
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