Effects of Oxygen on Soot Formation in Methane Diffusion Flames
- 20 May 1986
- journal article
- research article
- Published by Taylor & Francis in Combustion Science and Technology
- Vol. 47 (3-4) , 117-138
- https://doi.org/10.1080/00102208608923869
Abstract
The effect of small additions of oxygen to the fuel on formation of soot in methane-air diffusion flames was studied over a range of flow rates and of burner diameters. The flames studied were shorter than those of previous studies, purely blue or blue and yellow without soot escape. Heights of various distinctive features were measured, and composition and temperature profiles were obtained; the distinctive features include.onset and termination of visible emission of radiation and deposition of material on a quartz filament inserted into the flame. The results indicate negligible influences of oxygen addition and thereby suggest that ions from the primary mechanism CH+Orarr;CHO++e- are unimportant in soot formation in these flames. A simplified one-step kinetic model accounting for buoyancy and momentum was developed and employed to obtain estimates of overall rate parameters for flame attributes related to soot formation.Keywords
This publication has 23 references indexed in Scilit:
- Who do Diffusion flames Emit smokeCombustion Science and Technology, 1984
- Comparison between CARS and corrected thermocouple temperature measurements in a diffusion flameApplied Optics, 1982
- The temperature effect in sooting diffusion flamesSymposium (International) on Combustion, 1981
- Soot formationProgress in Energy and Combustion Science, 1981
- Constants of diatomic moleculesPublished by Springer Nature ,1979
- Chemi-ionisation during pyrolysisCombustion and Flame, 1976
- A model for sooting in diffusion flamesCombustion and Flame, 1972
- Soot formation in ethylene and propane diffusion flamesJournal of Chemical Technology & Biotechnology, 1968
- Shock tube studies of C2 formation with the use of C13Symposium (International) on Combustion, 1961
- Spectra produced by shock waves, flames and detonationsProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1957