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A novel hybrid reverse osmosis and flash desalination system powered by solar photovoltaic/thermal collectors

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  • Al-Nimr, Moh'd.A.
  • Dawahdeh, Ahmad I.

Abstract

The paper proposes a validated analytical model for hybrid reverse osmosis (RO) and flash desalination systems powered by photovoltaic/thermal collector collectors. The thermal energy is utilized to increase the feedwater temperature, while the electrical energy is utilized to drive the reciprocating compressor/pump to supply the necessary pressures for the RO and flash desalination. The system aims to provide a solution for bottled water in remote areas and reduce the brine and power pollution from desalination systems. The performance of the PV/T collector, RO desalinated water flux and power consumption, and flash desalination unit drinkable water production are investigated under different weather and operating conditions, including solar radiation intensity, ambient temperature, wind speed, feedwater temperature and concentration, and RO operating pressure. The analytical study reveals that solar radiation, feedwater temperature and concentration, and RO operating pressure have a significant influence on the system's performance compared to other conditions. Other factors, such as ambient temperature and wind speed, have a relatively small impact on the system's performance. Overall, the proposed system has the potential to provide a sustainable solution for bottled water in outlying areas and to reduce the environmental impact of conventional desalination systems.

Suggested Citation

  • Al-Nimr, Moh'd.A. & Dawahdeh, Ahmad I., 2023. "A novel hybrid reverse osmosis and flash desalination system powered by solar photovoltaic/thermal collectors," Renewable Energy, Elsevier, vol. 218(C).
  • Handle: RePEc:eee:renene:v:218:y:2023:i:c:s0960148123012247
    DOI: 10.1016/j.renene.2023.119309
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    References listed on IDEAS

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    1. Kannan, Nadarajah & Vakeesan, Divagar, 2016. "Solar energy for future world: - A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 62(C), pages 1092-1105.
    2. Khalaf-Allah, Reda A. & Abdelaziz, Gamal B. & Kandel, Mohamed G. & Easa, Ammar S., 2022. "Development of a centrifugal sprayer-based solar HDH desalination unit with a variety of sprinkler rotational speeds and droplet slot distributions," Renewable Energy, Elsevier, vol. 190(C), pages 1041-1054.
    3. Mekhilef, S. & Saidur, R. & Safari, A., 2011. "A review on solar energy use in industries," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(4), pages 1777-1790, May.
    4. Ma, Tao & Li, Meng & Kazemian, Arash, 2020. "Photovoltaic thermal module and solar thermal collector connected in series to produce electricity and high-grade heat simultaneously," Applied Energy, Elsevier, vol. 261(C).
    5. Sardarabadi, Mohammad & Passandideh-Fard, Mohammad & Zeinali Heris, Saeed, 2014. "Experimental investigation of the effects of silica/water nanofluid on PV/T (photovoltaic thermal units)," Energy, Elsevier, vol. 66(C), pages 264-272.
    6. Sampathkumar, K. & Arjunan, T.V. & Pitchandi, P. & Senthilkumar, P., 2010. "Active solar distillation--A detailed review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(6), pages 1503-1526, August.
    7. El-Said, Emad M.S. & Dahab, Mohamed A. & Omara, Mohamed A. & Abdelaziz, Gamal B., 2022. "Humidification-dehumidification solar desalination system using porous activated carbon tubes as a humidifier," Renewable Energy, Elsevier, vol. 187(C), pages 657-670.
    8. Srithar, K. & Rajaseenivasan, T. & Karthik, N. & Periyannan, M. & Gowtham, M., 2016. "Stand alone triple basin solar desalination system with cover cooling and parabolic dish concentrator," Renewable Energy, Elsevier, vol. 90(C), pages 157-165.
    9. M. A. Ehyaei & Simin Baloochzadeh & A. Ahmadi & Stéphane Abanades, 2021. "Energy, exergy, economic, exergoenvironmental, and environmental analyses of a multigeneration system to produce electricity, cooling, potable water, hydrogen and sodium-hypochlorite," Post-Print hal-03221045, HAL.
    10. Kasaeian, Alibakhsh & Rajaee, Fatemeh & Yan, Wei-Mon, 2019. "Osmotic desalination by solar energy: A critical review," Renewable Energy, Elsevier, vol. 134(C), pages 1473-1490.
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