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CHAPTER 9 SOLAR DESALINATION - MIT

CHAPTER 9. SOLAR DESALINATION . John H. Lienhard,1, Mohamed A. Antar,2 Amy Bilton,1 Julian Blanco,3 &. Guillermo Zaragoza4. 1. Center for Clean Water and Clean Energy, Room 3-162, Department of Mechanical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139-4307, USA. 2. Department of Mechanical Engineering, King Fahd University of Petroleum and Minerals, Dhahran, Saudi Arabia 3. Plataforma SOLAR de Almeria, Carretera de Senes s/n, 04200 Tabernas (Almeria), Spain 4. Visiting Professor of Electrical Engineering, King Saud University, Riyadh, Saudi Arabia . Address all correspondence to John H. Lienhard E-mail: In many settings where freshwater resources or water supply infrastructure are inadequate, fossil energy costs may be high whereas SOLAR energy is abundant.

Enet annual net electricity delivered to the grid, kWh FF membrane fouling factor Fs radiation shape factor G Gibbs energy of per mole, J mol¡1 Grad solar irradiation, W m¡2 GOR gained output ratio H enthalpy per mole, J mol¡1 Hsol daily solar incidence on solar collector, J m¡2day hfg latent heat of vaporization, J kg¡1

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