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Title: Experimental demonstration of high-temperature (>1000 °C) heat extraction from a moving-bed oxidation reactor for thermochemical energy storage

Journal Article · · Applied Energy

Sponsoring Organization:
USDOE Office of Energy Efficiency and Renewable Energy (EERE)
Grant/Contract Number:
EE0008992
OSTI ID:
1998815
Journal Information:
Applied Energy, Journal Name: Applied Energy Vol. 349 Journal Issue: C; ISSN 0306-2619
Publisher:
ElsevierCopyright Statement
Country of Publication:
United Kingdom
Language:
English

References (11)

A Critical Review of Thermochemical Energy Storage Systems journal August 2011
A review of solar thermochemical processes journal February 2016
Solar-heated rotary kiln for thermochemical energy storage journal October 2012
Exploitation of thermochemical cycles based on solid oxide redox systems for thermochemical storage of solar heat. Part 1: Testing of cobalt oxide-based powders journal April 2014
A review on high-temperature thermochemical energy storage based on metal oxides redox cycle journal July 2018
Metal oxides for thermochemical energy storage: A comparison of several metal oxide systems journal March 2016
Investigations on thermochemical energy storage based on technical grade manganese-iron oxide in a lab-scale packed bed reactor journal September 2017
Particle design and oxidation kinetics of iron-manganese oxide redox materials for thermochemical energy storage journal May 2019
Solar electricity via an Air Brayton cycle with an integrated two-step thermochemical cycle for heat storage based on Co3O4/CoO redox reactions: Thermodynamic analysis journal August 2015
Solar electricity via an Air Brayton cycle with an integrated two-step thermochemical cycle for heat storage based on Fe2O3/Fe3O4 redox reactions: Thermodynamic and kinetic analyses journal November 2018
Magnesium-manganese oxides for high temperature thermochemical energy storage journal February 2019

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