The microstructures of atmospheric pressure, counter-flow, sooting, flat, laminar ethylene diffusion flames have been studied numerically by using a new kinetic model developed for hydrocarbon oxidation and pyrolysis. Modeling results are in reasonable agreement with experimental data in terms of concentration profiles of stable species and gas-phase aromatic compounds. Modeling results are used to analyze the controlling steps of aromatic formation and soot growth in counter-flow configurations. The formation of high molecular mass aromatics in diffusion controlled conditions is restricted to a narrow area close to the flame front where these species reach a Molecular weight of about 1000 u. Depending on the flame configuration, soot formation is controlled by the coagulation of nanoparticles or by the addition of PAH to soot nuclei.

Modeling aerosol formation in opposed-flow diffusion flames / Violi, A.; D'Anna, Andrea; A., D'Alessio; A., Sarofim; A., F.. - In: CHEMOSPHERE. - ISSN 0045-6535. - STAMPA. - 51(10):(2003), pp. 1047-1054. [10.1016/S0045-6535(03)00125-5]

Modeling aerosol formation in opposed-flow diffusion flames

D'ANNA, ANDREA;
2003

Abstract

The microstructures of atmospheric pressure, counter-flow, sooting, flat, laminar ethylene diffusion flames have been studied numerically by using a new kinetic model developed for hydrocarbon oxidation and pyrolysis. Modeling results are in reasonable agreement with experimental data in terms of concentration profiles of stable species and gas-phase aromatic compounds. Modeling results are used to analyze the controlling steps of aromatic formation and soot growth in counter-flow configurations. The formation of high molecular mass aromatics in diffusion controlled conditions is restricted to a narrow area close to the flame front where these species reach a Molecular weight of about 1000 u. Depending on the flame configuration, soot formation is controlled by the coagulation of nanoparticles or by the addition of PAH to soot nuclei.
2003
Modeling aerosol formation in opposed-flow diffusion flames / Violi, A.; D'Anna, Andrea; A., D'Alessio; A., Sarofim; A., F.. - In: CHEMOSPHERE. - ISSN 0045-6535. - STAMPA. - 51(10):(2003), pp. 1047-1054. [10.1016/S0045-6535(03)00125-5]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/140787
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