Author:
Iskander John,Shihimi Othman,El Mahallawy Nahed,Abd-Elhady M. S.
Abstract
AbstractThe annual share of water in Egypt has decreased to approximately 500 m3 per capita, while the annual water scarcity level is 1000 m3 per capita, which indicates that Egyptians are at a high risk of living. A domestic desalination unit based on solar energy was designed, built, and tested to solve this problem in remote areas that do not have access to fresh water or electricity but have access to salty water. The desalination unit has a new design that depends on boiling salty water using photovoltaic solar cells and then condensing the water vapor through a heat exchanger to obtain freshwater. This new design has not been implemented before and can compete with the solar stills used for domestic applications. The output of the developed unit was compared to those of passive and active solar stills that have been developed and built. The new desalination design produced almost the same amount of daily fresh water, 4 Liter/day, compared to the other solar stills (2–4.75 Liter/day), but the cost per unit volume of the new design, 31 $/m3, is less by 30% compared to the best performing solar still, 44.55 $/m3, which produces only 2 Liter/day. The price of the distilled water produced by the new design was 75% lower than the market price at the time of conducting the experiments. Converting a Solar still from a passive system, that is, operating only during sunlight, to an active system operating day and night improves the water productivity rate. However, this is not feasible because of the added accessories that increase the initial cost, consequently increasing the cost of desalination.
Publisher
Springer Science and Business Media LLC
Reference36 articles.
1. Boretti A, Rosa L. Reassessing the projections of the world water development report. NPJ Clean Water. 2019;2(1):1–6.
2. Shiklomanov IA. The world’s water resources. In Proceedings of the international symposium to commemorate, vol. 25, 1991. pp. 93–126.
3. Kharraz DJE. Desalination as an alternative to alleviate water scarcity and a climate change adaptation option in the MENA region, Tech. Rep. ISBN 978-3-95721-811-7, 2020.
4. Wheeler KG, Jeuland M, Hall JW, Zagona E, Whittington D. Understanding and managing new risks on the Nile with the Grand Ethiopian Renaissance Dam. Nat Commun. 2020;11(1):1–9.
5. Omara AA, Abuelnuor AA, Mohammed HA, Khiadani M. Phase change materials (PCMs) for improving solar still productivity: a review. J Therm Anal Calorim. 2020;139(3):1585–617.
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