饮用水在阿联酋:水的特点和污染源的概述

Shawish Aa, T. Nabhan, A Almadidy
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引用次数: 2

摘要

本研究旨在提供有关阿联酋安全饮用水特征的信息,确定水污染的原因,废水和水的处理过程,以及阿联酋的一些可持续性水项目。利用二手数据来源,我们发现阿联酋的水特征分为三大类:物理、化学和生物特征,这些特征使用标准和参数描述了阿联酋的水。此外,还发现污染物对地下水和地表水都有影响。地下水污染的主要来源是化粪池流出物、水井过度抽水和农业活动。另一方面,海水污染的主要原因是人口和发展的增加,导致水中倾倒废物增加,泥沙疏浚和填埋作业以及污染物在大气中的沉积。以Al-Ruwais污水处理厂为例,说明了阿联酋的废水处理情况。在该污水处理厂,废水经过筛选、曝气、多种过滤和消毒,以产生适合灌溉和一些工业活动的水。在家庭生活中,水经过预处理、脱盐,然后加入必需的矿物质。研究还发现,阿联酋有许多项目确保可持续性,如使用清洁的可再生资源进行海水淡化,利用产生的盐水生产盐,完全依靠处理过的废水进行工业和农业活动,以及减少灌溉用水需求和碳足迹的项目,如Badia农场和多孔Alpha技术。最后,我们建议使用综合水保护系统,在集水区、处理厂和分配系统中对水进行保护和控制。
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Potable Water in UAE: An Overview of Water Characteristics and Sources of Contamination
This research aims to provide information about the characteristics of safe drinking water in UAE, identify the causes of water pollution, the treatment process of both wastewater and water, as well as, some sustainability water projects in the UAE. Using secondary data sources, we’ve found that UAE’s water characteristics are classified into three main categories which are: Physical, chemical and biological characteristics that describe UAE’s water using standards and parameters. In addition, it was found that pollutants can affect both groundwater and surface water. The main sources of groundwater contamination are septic tanks effluents, over-pumping of wells, and agricultural activities. On the other hand, the main causes of marine water contamination are increased population and development which lead to increased wastes dumping in water, sediment dredge and fill operations and atmospheric deposition of pollutants. Wastewater treatment in UAE is illustrated by giving Al-Ruwais wastewater treatment plant as an example in where wastewater undergoes screening, aeration, multiple types of filtration and disinfection to produce water suitable for irrigation and some industrial activities. For domestic purposes, water is pretreated, desalinated then enriched with essential minerals. It was found also that UAE has many projects to ensure sustainability as using clean renewable resources for water desalination, harnessing resulting brine to produce salts, completely relying on treated wastewater for industrial and agricultural activities, and projects for decreasing irrigation water demands and carbon footprints as Badia Farms and Porous Alpha technology. Finally, we recommend using an integrated water protection system where water is protected and controlled in catchments, treatment plants, and distribution systems.
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