Study of Dimensional Changes during Redox Cycling of Oxygen Carrier Materials for Chemical Looping Combustion
Anita Fossdal, Ove Darell, Arnold Lambert, Erin Schols, Elodie Comte, Rebecca Leenman, Richard Blom
Abstract
Anita Fossdal, Ove Darell, Arnold Lambert, Erin Schols, Elodie Comte, Rebecca Leenman, Richard Blom
Abstract
Dimensional and phase changes of four candidate oxygen carrier materials for chemical looping combustion are investigated by dilatometry and high-temperature X-ray diffraction during four redox cycles. NiO/Ni 2 AlO 4 does not exhibit significant dimensional changes during cycling, and it is shown that the support material also contributes to the oxygen carrying capacity. CaMn 0.875 Ti 0.125 O 3 exhibited good chemical stability and small dimensional changes upon redox cycling. Cu 0.95 Fe 1.05 AlO 4 showed a one-dimensional expansion of 9% after the experiments, and significant phase changes were seen. The complex set of reactions occurring during redox cycling of ilmenite (FeTiO 3 ) was shown to be accompanied by dimensional changes, giving non-steady dimensional changes during the oxidation and reduction steps.
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Dimensional and phase changes of four candidate oxygen carrier materials for chemical looping combustion are investigated by dilatometry and high-temperature X-ray diffraction during four redox cycles. NiO/Ni 2 AlO 4 does not exhibit significant dimensional changes during cycling, and it is shown that the support material also contributes to the oxygen carrying capacity. CaMn 0.875 Ti 0.125 O 3 exhibited good chemical stability and small dimensional changes upon redox cycling. Cu 0.95 Fe 1.05 AlO 4 showed a one-dimensional expansion of 9% after the experiments, and significant phase changes were seen. The complex set of reactions occurring during redox cycling of ilmenite (FeTiO 3 ) was shown to be accompanied by dimensional changes, giving non-steady dimensional changes during the oxidation and reduction steps.
Key concepts: Chemical looping combustion, Redox, Oxygen, Combustion, Ilmenite, Chemical stability, Chemistry, Cycling