Exploitation of thermochemical cycles based on solid oxide redox systems for thermochemical storage of solar heat. Part 5: Testing of porous ceramic honeycomb and foam cascades based on cobalt and manganese oxides for hybrid sensible/thermochemical heat storage

Author:

Agrafiotis Christos,Becker Andreas,Roeb Martin,Sattler Christian

Funder

European Commission

Publisher

Elsevier BV

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

Reference29 articles.

1. Agrafiotis, C., Becker, A., Roeb, M., Sattler, C., 2015a. Hybrid sensible/thermochemical storage of solar energy in cascades of redox-oxide-pair-based porous ceramics. In: ASME 2015 9th International Conference on Energy Sustainability. American Society of Mechanical Engineers, Paper Number ES2015-49334.

2. A solar receiver-storage modular cascade based on porous ceramic structures for hybrid sensible/thermochemical solar energy storage;Agrafiotis;AIP Conf. Proc.,2016

3. Agrafiotis, C., Pitz-Paal, R., 2013. Cascaded thermochemical storage of solar heat via redox oxide materials/Stufenweiser thermochemischer Speicher von Solarwärme durch Redox-Materialien. German Patent Organization, Patent disclosure No DE102013211249A1, Germany.

4. Agrafiotis, C., Roeb, M., Sattler, C., 2016b. Exploitation of thermochemical cycles based on solid oxide redox systems for thermochemical storage of solar heat. Part 4: Screening of oxides for use in cascaded thermochemical storage concepts. Sol. Energy 139, 695–710.

5. Exploitation of thermochemical cycles based on solid oxide redox systems for thermochemical storage of solar heat. Part 2: Redox oxide-coated porous ceramic structures as integrated thermochemical reactors/heat exchangers;Agrafiotis;Sol. Energy,2015

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