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- Catalyst Deactivation
- (440e) Deactivation Model for Commercial Pd-Only TWCs
In the present study, the TWC activity function developed previously has been further validated in describing the deactivation behavior of a commercial Pd-only TWC with a low Pd loading of 80 g/ft3 (Pd80) in the lab-aging program. In a comparative aging study, the TWC activity over the Pd catalyst containing 142 g/ft3 of Pd (Pd142) aged by the lab-aging program was found to be quite similar to that over an identical catalyst aged by the field-aging program over a wide range of the catalyst mileage from 4k to 98k miles. Given this well-matched TWC activity of the Pd142 catalyst between the lab-aged and the field-aged samples, the Pd80 catalysts were aged for 4k, 20k, 50k, 100k and 150k mile-equivalent by using the lab-aging program. The initial deactivation of the TWC activity over the commercial Pd80 catalyst aged by the lab-aging program was similar to that over the filed-aged catalyst in the low catalyst mileage from 4k to 20k-mile. The change of the Pd MSA of TWC as a function of the catalyst mileage has been well correlated by the 2nd order sintering kinetics for all levels of the Pd loading of the catalyst. The TWC activity function was then incorporated into the primary reaction kinetics developed for the stabilized 4k Pd80 TWCs to predict the deactivation of the Pd-only TWC as a function of the catalyst mileage. The overall reaction kinetic model coupled with the TWC activity function developed in the present study has proven to be capable of describing the alteration of TWC performance as a function of the catalyst mileage, regardless of its metal loading and aging modes – field-aged or lab-aged.
References
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