Further advances toward the development of a direct heating solar thermal chemical reactor for the thermal dissociation of ZnO(s)

Author:

Müller Reto,Haeberling Peter,Palumbo Robert D.

Publisher

Elsevier BV

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

Reference17 articles.

1. The kinetic model for carboreduction of zinc oxide;Berman;J. Phys. IV France,1998

2. Use of solar energy for direct and two-step water decomposition cycles;Bilgen;Int. J. Hydrogen Energy,1977

3. Solarthermal and solar quasi-electrolytic processing and separations: zinc from zinc oxide as an example;Fletcher;Ind. Eng. Chem. Res.,1999

4. Frommherz, U., Kräupl, S., Wieckert, D., Epstein, M., Guillot, E., Olalde, G., Osinga, T., Palumbo, R., Santen, J. F., Semrau, G., Steinfeld, A., Vishnevetsky, I., 2004. Design of a pilot scale solar reactor for the carbothermic reduction of ZnO. In: Proceedings of the 12th Solar PACES International Symposium, October 6–8, Oaxaca, Mexico.

5. The production of zinc by the thermal dissociation of zinc oxide—solar chemical reactor design;Haueter;Solar Energy,1999

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