Renewable energy integration in sustainable water systems: A review

IF 5.3 Q2 ENGINEERING, ENVIRONMENTAL Cleaner Engineering and Technology Pub Date : 2024-02-01 DOI:10.1016/j.clet.2024.100722
Alireza Zakariazadeh , Razzaqul Ahshan , Rashid Al Abri , Mohammed Al-Abri
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Abstract

The world's demand for water and energy is continuously growing due to population increase. Traditional water systems are driven by energy produced using fossil fuels, which lead to global warming due to rise of greenhouse gas pollution. Global warming is an increasing motivation to integrate renewable energy resources in water systems for different purposes like water pumping, water supply, and water distribution systems. As a result, to have a smart, sustainable and low-cost water system, renewable resources, energy management, and monitoring should be simultaneously implemented. Therefore, this paper provides a comprehensive review of the research conducted on solutions and effects of integrating different types of renewable resources on water systems. As essential tools for secure integration of renewable resource in the water industry, the pivotal role of energy management and intelligent technologies within the water system have been explored. This review confirms the potential of achieving smart and sustainable water systems by simultaneously considering the use of renewable resources, conducting energy management strategies, and smartening the water system; however, further research is essential to improve water system performance and increase the efficiency of the system.

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可持续水系统中的可再生能源整合:综述
由于人口增长,世界对水和能源的需求持续增长。传统的供水系统由使用化石燃料生产的能源驱动,由于温室气体污染的增加,导致全球变暖。全球变暖日益促使人们将可再生能源整合到水系统中,用于水泵、供水和配水系统等不同用途。因此,要建立一个智能、可持续和低成本的水系统,应同时实施可再生资源、能源管理和监控。因此,本文全面综述了有关整合不同类型可再生资源对水务系统的解决方案和影响的研究。作为将可再生资源安全整合到水务行业的重要工具,能源管理和智能技术在水务系统中的关键作用得到了探讨。本综述证实了通过同时考虑使用可再生资源、实施能源管理战略和智能化水系统来实现智能和可持续水系统的潜力;然而,进一步的研究对于改善水系统性能和提高系统效率至关重要。
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来源期刊
Cleaner Engineering and Technology
Cleaner Engineering and Technology Engineering-Engineering (miscellaneous)
CiteScore
9.80
自引率
0.00%
发文量
218
审稿时长
21 weeks
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