巴基斯坦信德省印度河三角洲地下海水入侵迹象

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY Mehran University Research Journal of Engineering and Technology Pub Date : 2023-01-01 DOI:10.22581/muet1982.2301.02
G. S. Solangi, A. A. Siyal, Pirah Siyal
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引用次数: 0

摘要

由于气候变化的影响,海水入侵是全球各河流三角洲的一个主要问题,包括巴基斯坦的印度河三角洲。海水入侵严重影响了印度河三角洲的淡水资源和人民的生计。因此,本研究旨在根据地下水质量数据评估印度河三角洲的地下海水入侵情况。从研究区域随机采集的约180个地下水样本进行了氯化物、碳酸盐和碳酸氢盐浓度分析。基于这些浓度,使用Simpson比率和离子分析(如氯化物与碳酸氢盐的比率)确定了地下海水入侵的指示。此外,使用ArcGIS 10.5开发了使用这些比率的分析结果的插值图。总体而言,本研究表明,印度河三角洲约88%的地区受到地下海水入侵的影响。此外,在研究区域Thatta和Sujawal镇附近的水井中观察到了地下海水入侵的影响。然而,大约12%的三角洲仍然没有受到地下海水入侵的影响。流入三角洲的淡水流量减少、气候变化、海平面上升等各种因素都是研究区域地下海水入侵的潜在原因。政策制定者可以将这项研究作为基线,启动针对三角洲退化的缓解措施,以避免环境进一步恶化。此外,建议对研究区域的地下海水入侵进行进一步的同位素分析。
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Indication of subsurface seawater intrusion into the Indus delta, Sindh, Pakistan
Due to climate change impacts, seawater intrusion is a major issue in various river deltas around the globe, including the Indus delta, Pakistan. The seawater intrusion has severely affected the freshwater resources as well as the livelihood of the people living in the Indus delta. Thus, this study was aimed to evaluate the subsurface seawater intrusion into the Indus delta based on the groundwater quality data. Around 180 groundwater samples, randomly collected from the study area, were analyzed for chloride, carbonate, and bicarbonate concentrations. Based on these concentrations, the indication of subsurface seawater intrusion was determined using Simpson’s ratio and ionic analysis, such as the ratio of chloride to bicarbonate. Also, an interpolated map using the analysis results of these ratios was developed using ArcGIS 10.5. Overall, the present study revealed that about 88% of the Indus delta is affected by the subsurface seawater intrusion. Also, the impact of subsurface seawater intrusion was observed in the wells near the Thatta and Sujawal towns of the study area. However, about 12% of the delta is still unaffected by the subsurface seawater intrusion. Various factors such as reduction in freshwater flow into the delta, climate change, sea-level rise are potential causes of subsurface seawater intrusion in the study area. This study may be taken as a baseline by the policymakers to start mitigation measures against the degradation of the delta to save the environment from further deterioration. Also, further an isotopic analysis of subsurface seawater intrusion in the study area is recommended.
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