Reverse osmosis desalination systems powered by solar energy: Preheating techniques and brine disposal challenges – A detailed review

Author:

Shalaby S.M.,Sharshir Swellam W.,Kabeel A.E.,Kandeal A.W.,Abosheiasha H.F.,Abdelgaied Mohamed,Hamed Mofreh H.,Yang Nuo

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

Reference135 articles.

1. Productivity Modeling Enhancement of a Solar Desalination Unit with Nanofluids Using Machine Learning Algorithms Integrated with Bayesian;Kandeal;Optimization,2021

2. Augmented performance of tubular solar still integrated with cost-effective nano-based mushrooms;Sharshir;Sol Energy,2021

3. Improving thermal, economic, and environmental performance of solar still using floating coal, cotton fabric, and carbon black nanoparticles;Sharshir;Sustainable Energy Technol Assess,2021

4. Performance enhancement of tubular solar still using nano-enhanced energy storage material integrated with v-corrugated aluminum basin, wick, and nanofluid;Abdelaziz;J Storage Mater,2021

5. A continuous desalination system using humidification – dehumidification and a solar still with an evacuated solar water heater;Sharshir;Appl Therm Eng,2016

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