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Thermodynamically consistent modeling of redox-stable perovskite oxides for thermochemical energy conversion and storage
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Novel approach to couple point defect chemistry and system-level thermodynamics.

Thermodynamic modeling functions for perovskite oxide working fluid are developed.

Model gives proper partition of energy between gas and solid phases.

Model is demonstrated and verified in chemical-looping and energy storage examples.

Exergy destructions are dominate in the chemical reactors of these sample systems.

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