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Hybrid solar-driven desalination/cooling systems: Current situation and future trend
Faculty
Engineering
Year:
2022
Type of Publication:
ZU Hosted
Pages:
Authors:
Ramy Hamdy Mohamed Abdelhady
Staff Zu Site
Abstract In Staff Site
Journal:
Energies MDPI
Volume:
Keywords :
Hybrid solar-driven desalination/cooling systems: Current situation
Abstract:
Global warming and climate change, accompanied and assisted by rapid economic and population growth, are causing a sharp rise in cooling demands and stressing the already-limited supply of freshwater for many countries worldwide, especially those developing under hot-climate conditions. Thus, it is imperative to find solutions to meet cooling and freshwater needs without negatively affecting the environment and exacerbating the global warming problem. Solar-driven hybrid desalination/cooling technologies are a promising solution that can help in reducing greenhouse gas emissions and increasing overall efficiency and energy savings. The present study summarizes research efforts in meeting cooling and freshwater demands using the available solar resources. Various solar desalination technologies, such as multi-effect distillation (MED), single and multi-stage flash (MSF), reverse osmosis (RO), adsorption, absorption desalination, and membrane distillation (MD), and their integration with different cooling technologies, are reported. The study reported system performance indicators, such as water production rate, cooling capacity, Coefficient of Performance, and freshwater cost.
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Ramy Hamdy Mohamed Abdelhady, "Assessment of numerical models in the evaluation of adsorption cooling system performance", Elsevier, 2018
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Ramy Hamdy Mohamed Abdelhady, "Experimental optimization of the cycle time and switching time of a metal organic framework adsorption desalination cycle", Elsevier, 2021
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