Doped calcium manganites for advanced high-temperature thermochemical energy storage
Sean M. Babiniec, Eric N. Coker, James E. Miller, Andrea Ambrosini
Sandia National Laboratories California Sandia National Laboratories
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Developing efficient thermal storage for concentrating solar power plants is essential to reducing the cost of generated electricity, extending or shifting the hours of operation, and facilitating renewable penetration into the grid. Perovskite materials of the CaBxMn1-xO3-δ family, where B = Al or Ti, promise improvements in cost and energy storage density over other perovskites currently under investigation. Thermogravimetric analysis of the thermal reduction and reoxidation of these materials was used to extract equilibrium thermodynamic parameters. The results demonstrate that these novel thermochemical energy storage media display the highest reaction enthalpy capacity for perovskites reported to date, with a reaction enthalpy of 390 kJ/kg, a 56% increase over previously reported compositions.Copyright © 2015 John Wiley & Sons, Ltd.
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工程Chemical Looping and Thermochemical Processes
Adsorption and Cooling Systems · Thermal Expansion and Ionic Conductivity
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