23. Mills, D.R. and Morrison, G.L., “Compact linear Fresnel reflector solar thermal powerplants,” Solar Energy, 68 (3), 263–283 (2000).
24. Wald, M.L., “In the desert, harnessing the power of the sun by capturing heat instead
of light,” New York Times (July 17, 2007), http://www.nytimes.com/2007/07/17/
business/17thermal.html?_r = 1.
25. Areva, “Our technology and features,” http://www.areva.com/EN/solar-198/arevasolarour-technology.html#tab = tab2.
26. Ummadisingu, A. and Soni, M., “Concentrating solar power—Technology, potential,
and policy in India,” Renewable and Sustainable Energy Reviews, 15 (9), 5169–5175
(2011).
27. Kaygusuz, K., “Prospect of concentrating solar power in Turkey: The sustainable
future,” Renewable and Sustainable Energy Reviews, 15 (1), 808–814 (2011).
28. US Environmental Protection Agency, Final Report: Design and Fabrication of a
Reduced Cost Heliostat, http://cfpub.epa.gov/ncer_abstracts/index.cfm/fuseaction/display
.abstractDetail/abstract/9033/report/F.
29. Pitz-Paal, R., Botero, N.B., and Steinfeld, A., “Heliostat field layout optimization for
high-temperature solar thermochemical processing,” Solar Energy, 85 (2), 334–343
(2011).
30. Kolb, G.J., Jones, S., Donnelly, M., Gorman, D., Thomas, R., Davenport, R., and
Lumia, R., Heliostat Cost Reduction Study, Report No. SAND2007-3293. Sandia
National Laboratories, Livermore, CA (2007).
31. National Renewable Energy Laboratory. Planta Solar 20. http://www.nrel.gov/csp/
solarpaces/project_detail.cfm/projectID=39.
32. Solar Reserve, “Crescent Dunes,” http://www.solarreserve.com/what-we-do/
csp- projects/crescent-dunes/.
33. Abengoa Solar, PS20, the largest solar power tower worldwide. http://www.abengoasolar
.com/corp/web/en/nuestras_plantas/plantas_en_operacion/espana/PS20_la_mayor_
torre_comercial_del_mundo.html.
34. Ávila-Marín, A.L., “Volumetric receivers in solar thermal power plants with central
receiver system technology: A review,” Solar Energy, 85 (5), 891–910 (2011).
35. Pavlovic, T.M., Radonjic, I.S., Milosavljevic, D.D., and Pantic, L.S., “A review of concentrating solar power plants in the world and their potential use in Serbia,” Renewable
and Sustainable Energy Reviews, 16 (6), 3891–3902 (2012).
36. “Steam turbine,” Wikipedia, the free encyclopedia (2012).
37. Nuclear Engineering International Handbook, Nuclear Engineering International
Organization, ESCO, Braintree, Essex (2011).
46
Water for Energy and Fuel Production
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́
́
́
24. Wald, M.L., “In the desert, harnessing the power of the sun by capturing heat instead
of light,” New York Times (July 17, 2007), http://www.nytimes.com/2007/07/17/
business/17thermal.html?_r = 1.
25. Areva, “Our technology and features,” http://www.areva.com/EN/solar-198/arevasolarour-technology.html#tab = tab2.
26. Ummadisingu, A. and Soni, M., “Concentrating solar power—Technology, potential,
and policy in India,” Renewable and Sustainable Energy Reviews, 15 (9), 5169–5175
(2011).
27. Kaygusuz, K., “Prospect of concentrating solar power in Turkey: The sustainable
future,” Renewable and Sustainable Energy Reviews, 15 (1), 808–814 (2011).
28. US Environmental Protection Agency, Final Report: Design and Fabrication of a
Reduced Cost Heliostat, http://cfpub.epa.gov/ncer_abstracts/index.cfm/fuseaction/display
.abstractDetail/abstract/9033/report/F.
29. Pitz-Paal, R., Botero, N.B., and Steinfeld, A., “Heliostat field layout optimization for
high-temperature solar thermochemical processing,” Solar Energy, 85 (2), 334–343
(2011).
30. Kolb, G.J., Jones, S., Donnelly, M., Gorman, D., Thomas, R., Davenport, R., and
Lumia, R., Heliostat Cost Reduction Study, Report No. SAND2007-3293. Sandia
National Laboratories, Livermore, CA (2007).
31. National Renewable Energy Laboratory. Planta Solar 20. http://www.nrel.gov/csp/
solarpaces/project_detail.cfm/projectID=39.
32. Solar Reserve, “Crescent Dunes,” http://www.solarreserve.com/what-we-do/
csp- projects/crescent-dunes/.
33. Abengoa Solar, PS20, the largest solar power tower worldwide. http://www.abengoasolar
.com/corp/web/en/nuestras_plantas/plantas_en_operacion/espana/PS20_la_mayor_
torre_comercial_del_mundo.html.
34. Ávila-Marín, A.L., “Volumetric receivers in solar thermal power plants with central
receiver system technology: A review,” Solar Energy, 85 (5), 891–910 (2011).
35. Pavlovic, T.M., Radonjic, I.S., Milosavljevic, D.D., and Pantic, L.S., “A review of concentrating solar power plants in the world and their potential use in Serbia,” Renewable
and Sustainable Energy Reviews, 16 (6), 3891–3902 (2012).
36. “Steam turbine,” Wikipedia, the free encyclopedia (2012).
37. Nuclear Engineering International Handbook, Nuclear Engineering International
Organization, ESCO, Braintree, Essex (2011).
46
Water for Energy and Fuel Production
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́
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́
