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Oxygen storage processes were carefully investigated.
Oxygen storage is used in days with extreme price variability.
Two oxygen storage sites (surface and sub-surface) were used to describe two distinct regimes of the oxygen storage process.
The synthesized Ce0.5Zr0.3Al0.2O1.9 particle was characterized for the oxygen storage capacity (OSC) in automotive catalysis.
γ-Al2O3 is mixed with 30%% by weight of Ce0.7Zr0.3O2 as an oxygen storage material [1].
The lowest oxygen storage capacity, however, was obtained from this composition among all synthesized samples.
In this context, CeO2 has been an important oxygen storage material in TWC [2, 3].
A dual-site oxygen storage model was developed to predict the dynamic oxygen storage on a Pd/Rh/CeZrOx TWC catalyst.
Dynamic oxygen storage and release capability (OSC) measurement apparatus was designed to evaluate the OSC performance of ceria-based oxygen storage material.
The structures exhibited diversity in their properties including surface area and oxygen storage capacity.
Pulse experiments were designed to evaluate the oxygen storage capacity of the catalysts.
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