4.7 Article

A Systematically Updated Detailed Kinetic Model for CH2O and CH3OH Combustion

Journal

ENERGY & FUELS
Volume 30, Issue 8, Pages 6709-6726

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.energyfuels.6b00049

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Funding

  1. Center for Combustion Science and Technology (CECOST)
  2. Swedish Research Council (VR)

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A new detailed kinetic mechanism for formaldehyde and methanol combustion has been developed using the Konnov mechanism, version 0.6, as a starting point. In total, 82 reactions of the formaldehyde and methanol subsets were reviewed and updated using a systematic approach. Rate constants were selected based on thorough evaluation of available experimental and theoretical data. No modifications of the rate constants were performed. The mechanism was validated over a wide range of experimental conditions and devices, including shock tube and flow reactors and burner stabilized and freely propagating flames. An overall good agreement with experimental data was seen. Simulated shock tube pyrolysis and flow reactor oxidation was generally in satisfying agreement to the experimental results, and the new mechanism showed a significant improvement in predicting the laminar burning velocity of methanol.

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