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Basic Research Needs for Solar Energy Utilization - Office of ...

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U. Herrmann, F. Graeter, and P. Nava, “Per<strong>for</strong>mance <strong>of</strong> the SKAL-ET Collector Loop at KJC<br />

Operating Company,” 12th Int. Symp. <strong>Solar</strong> Power and Chemical <strong>Energy</strong> Systems, Oaxaca,<br />

Mexico (Oct. 2004).<br />

K.F. Hsu, S. Loo, W. Chen, J.S. Dyck, C. Uher, T. Hogan, E.K. Polychroniadis, and<br />

M.G. Kanatzidis, “Cubic AgPbSbTe Bulk Thermoelectric Materials with High Figure <strong>of</strong> Merit,”<br />

Science 303, 818–821 (2004).<br />

J. Karni, A. Kribus, R. Rubin, P. Doron, A. Fiterman, and D. Sagie, “The DIAPR: A Highpressure,<br />

High-temperature <strong>Solar</strong> Receiver,” ASME J. <strong>Solar</strong> <strong>Energy</strong> Eng. 119(1), 74–78 (1997).<br />

J. Karni, A. Kribus, R. Rubin, and P. Doron, “The Porcupine: a Novel High-flux Absorber <strong>for</strong><br />

Volumetric <strong>Solar</strong> Receivers,” J. <strong>Solar</strong> <strong>Energy</strong> Eng. 120, 85–95 (1998).<br />

D. Laing, W.D. Steinmann, R. Tamme, and C. Richter, “Solid Media Thermal Storage <strong>for</strong><br />

Parabolic Trough Power Plants,” 12th Int. Symp. <strong>Solar</strong> Power and Chemical <strong>Energy</strong> Systems,<br />

Oaxaca, Mexico (Oct. 2004).<br />

J. Lasich, <strong>Solar</strong> Systems Pty. Ltd., personal communication (2004).<br />

D. Mills, P. Le Lievre, and G.L. Morrison, “Lower Temperature Approach <strong>for</strong> Very Large <strong>Solar</strong><br />

Power Plants,” 12th Int. Symp. <strong>Solar</strong> Power and Chemical <strong>Energy</strong> Systems, Oaxaca, Mexico<br />

(Oct. 2004).<br />

S. Möller, R. Buck, R. Tamme, M. Epstein, D. Liebermann, M. Meri, U. Fisher, A. Rotstein, and<br />

C. Sugarmen, “<strong>Solar</strong> Production <strong>of</strong> Syngas <strong>for</strong> Electricity Generation: SOLASYS Project Testphase,”<br />

11th Int. Symp. Concentrated <strong>Solar</strong> Power and Chemical <strong>Energy</strong> Technologies, Zurich,<br />

Switzerland, Sept. 4–6, 231–237 (2002).<br />

J.P. Murray, A. Steinfeld, and E.A. Fletcher, “Metals, Nitrides and Carbides via <strong>Solar</strong><br />

Carbothermal Reduction <strong>of</strong> Metal Oxides,” <strong>Energy</strong> — The Int. J. 20, 695–704 (1995).<br />

T. Osinga, U. Frommherz, A. Steinfeld, and C. Wieckert, “Experimental Investigation <strong>of</strong> the<br />

<strong>Solar</strong> Carbothermic Reduction <strong>of</strong> ZnO Using a Two-cavity <strong>Solar</strong> Reactor,” ASME J. <strong>Solar</strong><br />

<strong>Energy</strong> Eng. 126, 633–637 (2004).<br />

R.E. Nelson, “A Brief History <strong>of</strong> Thermophotovoltaic Development,” Semicond. Sci. Technol.<br />

18, S141–143 (2003).<br />

H. Price, E. Lupfert, D. Kearney, E. Zarza, G. Cohen, R. Gee, and R. Mahoney, “Advances in<br />

Parabolic Trough <strong>Solar</strong> Power Technology,” ASME J. <strong>Solar</strong> <strong>Energy</strong> Eng. 124, 109–125 (2002).<br />

H. Ries, A. Segal, and J. Karni, “Extracting Concentrated Guided Light,” Appl. Optics/Optical<br />

Technol. Biomed. Optics 36(13), 2869–2874 (1997a).<br />

H. Ries, J.M. Gordon, and M. Lasken, “High-flux Photovoltaic <strong>Solar</strong> Concentration with<br />

Kaleidoscope-based Optical Designs,” <strong>Solar</strong> <strong>Energy</strong> 60, 11–16 (1997b).<br />

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