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This database would also be useful for the validation of CFD simulations incorporating sophisticated model of soot production.
In the work presented in this paper, a two-dimensional mathematical model of soot regeneration was developed for a single-channel catalytic diesel particulate filter.
The carbon black (CB), which was used as a model of soot particle, was combusted over 700 °C, while the CeO2-based catalysts reduced the CB oxidation temperature by more than 150 °C.
The effect of Cs and Cu contents in Cs Cu/ZrO2 catalysts has been studied in the simultaneous abatement of NOx and carbon black (CB), used as a model of soot.
These catalysts showed effective soot combustion at lower temperature under tight contact condition using carbon black (CB) as a model of soot particle, as compared with CuO/CeO2 with uncontrolled morphology.
A detailed model of soot formation is proposed, which consists of a gas-phase kinetic model for the pyrolysis and oxidation of selected hydrocarbon fuels and a kinetic mechanism of soot nucleation and mass/size growth through coagulation and surface reactions.
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A discrete reaction model of sooting combustion is proposed on the grounds of multi-stage representation of oxidation chemistry.
Appel, J., Bockhorn, H. & Frenklach, M. Kinetic modeling of soot formation with detailed chemistry and physics: laminar premixed flames of C2 hydrocarbons.
Frenklach, M., Clary, D. W., Gardiner, W. C. & Stein, S. E. Detailed kinetic modeling of soot formation in shock-tube pyrolysis of acetylene.
The method is illustrated by an example on detailed modeling of soot formation in hydrocarbon pyrolysis.
The modeling of soot formation and oxidation by the conditional moment closure (CMC) method is considered.
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