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Review

Emerging and Conventional Water Desalination Technologies Powered by Renewable Energy and Energy Storage Systems toward Zero Liquid Discharge

Arab Academy for Science, Technology and Maritime Transport, Alexandria P.O. Box 1029, Egypt
Separations 2024, 11(10), 291; https://doi.org/10.3390/separations11100291
Submission received: 9 September 2024 / Revised: 2 October 2024 / Accepted: 6 October 2024 / Published: 11 October 2024

Abstract

The depletion of fossil fuels has become a significant global issue, prompting scientists to explore and refine methods for harnessing alternative energy sources. This study provides a comprehensive review of advancements and emerging technologies in the desalination industry, focusing on technological improvements and economic considerations. The analysis highlights the potential synergies of integrating multiple renewable energy systems to enhance desalination efficiency and minimise environmental consequences. The main areas of focus include aligning developing technologies like membrane distillation, pervaporation and forward osmosis with renewable energy and implementing hybrid renewable energy systems to improve the scalability and economic viability of desalination enterprises. The study also analyses obstacles related to desalination driven by renewable energy, including energy storage, fluctuations in energy supply, and deployment costs. By resolving these obstacles and investigating novel methodologies, the study enhances the understanding of how renewable energy can be used to construct more efficient, sustainable, and economical desalination systems. Thermal desalination technologies require more energy than membrane-based systems due to the significant energy requirements associated with water vaporisation. The photovoltaic-powered reverse osmosis (RO) system had the most economically favourable production cost, while MED powered via a concentrated solar power (CSP) system had the highest production cost. The study aims to guide future research and development efforts, ultimately promoting the worldwide use of renewable energy-powered desalination systems.
Keywords: solar; wind; geothermal; ocean; tidal; wave energies; energy storage systems; economics solar; wind; geothermal; ocean; tidal; wave energies; energy storage systems; economics

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MDPI and ACS Style

Elewa, M.M. Emerging and Conventional Water Desalination Technologies Powered by Renewable Energy and Energy Storage Systems toward Zero Liquid Discharge. Separations 2024, 11, 291. https://doi.org/10.3390/separations11100291

AMA Style

Elewa MM. Emerging and Conventional Water Desalination Technologies Powered by Renewable Energy and Energy Storage Systems toward Zero Liquid Discharge. Separations. 2024; 11(10):291. https://doi.org/10.3390/separations11100291

Chicago/Turabian Style

Elewa, Mahmoud M. 2024. "Emerging and Conventional Water Desalination Technologies Powered by Renewable Energy and Energy Storage Systems toward Zero Liquid Discharge" Separations 11, no. 10: 291. https://doi.org/10.3390/separations11100291

APA Style

Elewa, M. M. (2024). Emerging and Conventional Water Desalination Technologies Powered by Renewable Energy and Energy Storage Systems toward Zero Liquid Discharge. Separations, 11(10), 291. https://doi.org/10.3390/separations11100291

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