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- W2538055509 abstract "Over the last years, several research groups have focused on developing efficient thermochemical heat storage (THS) systems, in-principle capable of being coupled with next generation high temperature Concentrated Solar Power plants. Among systems studied, the Co3O4/CoO redox system is a promising candidate. Currently, research efforts extend beyond basic level identification of promising materials to more application-oriented approaches aiming at validation of THS performance at pilot scale reactors. The present work focuses on the investigation of cobalt oxide based honeycomb structures as candidate reactors/heat exchangers to be employed for such purposes. In the evaluation conducted and presented here, cobalt oxide-based structures with different composition and geometrical characteristics were subjected to redox cycles in the temperature window between 800 and 1000°C under air flow. Basic aspects related to redox performance of each system are briefly discussed but the main focus lies on the evaluation of the segments structural stability after multi-cyclic operation. The latter is based on macroscopic visual observation and also supplemented by pre– (i.e. fresh samples) and post–characterization (i.e. after long term exposure) of extruded honeycombs via combined mercury porosimetry and SEM analysis." @default.
- W2538055509 created "2016-10-28" @default.
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- W2538055509 date "2016-01-01" @default.
- W2538055509 modified "2023-09-26" @default.
- W2538055509 title "Co3O4-based honeycombs as compact redox reactors/heat exchangers for thermochemical storage in the next generation CSP plants" @default.
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- W2538055509 doi "https://doi.org/10.1063/1.4949135" @default.
- W2538055509 hasPublicationYear "2016" @default.
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