Identification of potential managed aquifer recharge sites in hyper-arid environment using GIS and analytical hierarchy process

IF 5.7 3区 环境科学与生态学 Q1 WATER RESOURCES Applied Water Science Pub Date : 2025-04-18 DOI:10.1007/s13201-025-02431-3
Hazrat Bilal, Rajesh Govindan, Slim Zekri, Ali Al-Maktoumi, Mohammad Mahdi Rajabi, Chefi Triki, Wiem Harrathi
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Abstract

Utilizing aquifers as groundwater storage reservoirs is an effective strategy for water management in water scare regions. The success of managed aquifer recharge (MAR) relies on the assessment and modeling of site-specific hydrogeological characteristics, including groundwater salinity, transmissivity, storativity, slope, soil properties, proximity to water recharge networks and road accessibility, etc. This study employs a GIS-based multi-criteria evaluation technique, integrating both ground and remote sensing datasets. The results indicate that a significant portion of the total land area, approximately 7,414.11 km2 (64%), can potentially be utilized for MAR practices, while the remaining 36% is restricted due to various constraints, such as built-up areas, roads, agricultural lands and nationally protected areas for conservation. The available 64% of land is further categorized into subclasses ranging from highly suitable to least suitable areas. Most of the highly and moderately suitable regions are located in the northern central parts of the country where seasonal surplus treated wastewater and desalinated water may be used to recharge groundwater. Furthermore, MAR technology can also be used to tackle saltwater intrusion in the coastal areas by injecting seasonal surplus desalinated and treated wastewater. These findings suggest that MAR technology has a high potential to facilitate aquifer water storage and recovery in the country, which can contribute to sustainable water resources.

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基于GIS和层次分析法的超干旱环境下潜在含水层补给点识别
利用含水层作为地下水储存库是水资源紧缺地区水资源管理的有效策略。管理含水层补给(MAR)的成功依赖于对特定地点水文地质特征的评估和建模,包括地下水盐度、渗透性、储藏性、坡度、土壤性质、靠近补水网络和道路可达性等。本研究采用基于gis的多准则评估技术,整合地面和遥感数据集。研究结果表明,该区有很大一部分土地面积(约7,414.11 km2)可用于MAR实践,而其余36%的土地面积由于建成区、道路、农业用地和国家保护区等因素而受到限制。可利用的64%的土地被进一步划分为从高度适宜到最不适宜的亚类。大多数高度适宜和中等适宜的地区位于该国北部中部地区,在那里,季节性过剩的处理过的废水和淡化水可用于补给地下水。此外,MAR技术还可以通过注入季节性剩余的脱盐和处理过的废水来解决沿海地区的盐水入侵问题。这些发现表明,MAR技术在促进该国含水层水的储存和恢复方面具有很大的潜力,这可以促进可持续水资源。
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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
期刊介绍:
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