An optimised chemical kinetic model for the combustion of fuel mixtures of syngas and natural gas

Author:

Methling T.,Braun-Unkhoff M.,Riedel U.

Funder

Helmholtz-Gemeinschaft

Publisher

Elsevier BV

Subject

Organic Chemistry,Energy Engineering and Power Technology,Fuel Technology,General Chemical Engineering

Reference102 articles.

1. Smith GP, Golden DM, Frenklach M, Moriarty NW, Eiteneer B, Goldenberg M et al., GRI 3.0 mechanism,http://combustion.berkeley.edu/gri_mech (11 2017).

2. Wang H, You X, Joshi AV, Davis SG, Laskin A, Egolfopoulos F, et al. USC mech version II. high-temperature combustion reaction model of H2/CO/C1-C4 compounds,http://ignis.usc.edu/USC_Mech_II.htm (2007).

3. A detailed and reduced reaction mechanism of biomass-based syngas fuels;Braun-Unkhoff;J Eng Gas Turbines Power,2010

4. An assessment of chemical kinetics for bio-syngas combustion;Fischer;Fuel,2014

5. Oxidation of natural gas, natural gas/syngas mixtures, and effect of burnt gas recirculation: experimental and detailed kinetic modeling;Le Cong;J Eng Gas Turbines Power,2008

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