Production of Zinc from the Reduction of ZnO in the Presence of Cellulose in a Solar Simulator
Author:
Le´de´ Jacques1, Boutin Olivier1, Elorza-Ricart Enrique1, Ferrer Monique1, Mollard Fre´de´ric1
Affiliation:
1. Laboratoire des Sciences du Ge´nie Chimique, CNRS-ENSIC, 1 rue Grandville–BP 451, F-54001 NANCY Cedex, France
Publisher
ASME International
Subject
Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference16 articles.
1. Steinfeld, A., 2000, IEA SolarPACES, Task II: Solar Chemistry, Minutes of the 14th Annual Task II Meeting, University of Sydney (Australia), March 13. 2. Palumbo, R., Le´de´, J., Boutin, O., Elorza-Ricart, E., Steinfeld, A., Mo¨ller, S., Weidenkaff, A., Fletcher, E. A., and Bielicki, J., 1998, “The production of Zn from ZnO in a high temperature solar decomposition quench process—I. The scientific framework for the process,” Chem. Eng. Sci., 53, No. 14, pp. 2503–2517. 3. Le´de´, J.
, 1999, “Solar thermochemical conversion of biomass,” Sol. Energy, 65, No. 1, pp 3–13. 4. Elorza-Ricart, E., Martin, P. Y., Ferrer, M., and Le´de´, J., 1999, “Direct thermal splitting of ZnO followed by a quench. Experimental measurement of mass balances,” J. Phys. IV, 9, Pr3, pp. 325–330. 5. Elorza-Ricart, E., Ferrer, M., and Le´de´, J., 2000, “Dissociation thermique directe de l’oxyde de zinc par voie solaire,” Entropie, 228, pp. 55–59.
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