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Original Articles

Surface Growth of Soot Particles in Premixed Ethylene/Air Flames

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Pages 155-167 | Published online: 29 Mar 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (29)

Abhijeet Raj. (2022) PAH growth assisted by five-membered ring: pyrene formation from acenaphthylene. Combustion Theory and Modelling 26:1, pages 91-109.
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G. L. Agafonov, V. N. Smirnov & P. A. Vlasov. (2010) A Shock-Tube and Modeling Study of Soot Formation During Pyrolysis of Propane, Propane/Toluene and Rich Propane/Oxygen Mixtures. Combustion Science and Technology 182:11-12, pages 1645-1671.
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G. L. Agafonov, A. A. Borisov, V. N. Smirnov, K. Ya. Troshin, P. A. Vlasov & Jürgen Warnatz. (2008) Soot Formation During Pyrolysis of Methane and Rich Methane/Oxygen Mixtures Behind Reflected Shock Waves. Combustion Science and Technology 180:10-11, pages 1876-1899.
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M D Smooke, R J Hall, M B Colket 4 , J Fielding, M B Long, C S McEnally & L D Pfefferle. (2004) Investigation of the transition from lightly sooting towards heavily sooting co-flow ethylene diffusion flames. Combustion Theory and Modelling 8:3, pages 593-606.
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J.F. ROESLER & M. AUPHAN DE TESSAN. (2000) Aromatics and Soot Growth Enhancement by Methane Addition to Fuel-Rich n-Heptane Combustion in a Flow Reactor. Combustion Science and Technology 161:1, pages 245-268.
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D. HU, M. BRAUN-UNKHOFF & P. FRANK. (1999) Modeling Study on Soot Formation at High Pressures. Combustion Science and Technology 149:1-6, pages 79-94.
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H. Paul Wang, K.‐A. Hsieh & M. C. Li. (1997) Fate of PAHs in an autofluff incineration process. Journal of Environmental Science and Health . Part A: Environmental Science and Engineering and Toxicology 32:6, pages 1687-1694.
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R. Reed Skaggs, Michael P. Tolocka & J. Houston Miller. (1996) An Evalution of Emissions from Laminar,Underventilated Hydrocarbon Diffusion Flames. Combustion Science and Technology 116-117:1-6, pages 399-426.
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J. A. MARR, L. M. GIOVANE, J. P. LONGWELL, J. B. HOWARD & A. L. LAFLEUR. (1994) Soot and Tar Production in a Jet-Stirred/Plug-Flow Reactor System: High and Low C2H2 Concentration Environments. Combustion Science and Technology 101:1-6, pages 301-309.
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D. R. HONNERY, M. TAPPE & J. H. KENT. (1992) Two Parametric Models of Soot Growth Rates in Laminar Ethylene Diffusion Flames. Combustion Science and Technology 83:4-6, pages 305-321.
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PER-ERIK BENGTSSON, LARS MARTINSSON, MARCUS ALDÉN & STEFAN KRÖLL. (1992) Rotational CARS Thermometry in Sooting Flames. Combustion Science and Technology 81:1-3, pages 129-140.
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K. SAITO, A. S. GORDON, F. A. WILLIAMS & W. F. STICKLE. (1991) A Study of the Early History of Soot Formation in Various Hydrocarbon Diffusion Flames. Combustion Science and Technology 80:1-3, pages 103-119.
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S.N. Rogak, U. Baltensperger & R.C. Flagan. (1991) Measurement of Mass Transfer to Agglomerate Aerosols. Aerosol Science and Technology 14:4, pages 447-458.
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J.T. MCKINNON & J.B. HOWARD. (1990) Application of Soot Formation Model: Effects of Chlorine. Combustion Science and Technology 74:1-6, pages 175-197.
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STEPHENJ. HARRIS. (1990) Surface Growth and Soot Particle Reactivity. Combustion Science and Technology 72:1-3, pages 67-77.
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ConstantineM. Megaridis & RichardA. Dobbins. (1990) A Bimodal Integral Solution of the Dynamic Equation for an Aerosol Undergoing Simultaneous Particle Inception and Coagulation. Aerosol Science and Technology 12:2, pages 240-255.
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M. MEGARIDIS CONSTANTINE & A. DOBBINS RICHARD. (1989) Comparison of Soot Growth and Oxidation in Smoking and Non–Smoking Ethylene Diffusion Flames. Combustion Science and Technology 66:1-3, pages 1-16.
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R. L. Axelbalim, W. L. Flower & C. K. Law. (1988) Dilution and Temperature Effects of Inert Addition on Soot Formation in Counterflow Diffusion Flames. Combustion Science and Technology 61:1-3, pages 51-73.
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STEPHEN J. Harris & IAN M. Kennedy. (1988) The Coagulation of Soot Particles with van der Waals Forces. Combustion Science and Technology 59:4-6, pages 443-454.
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W. L. Flower & C. T. Bowman. (1987) Short Communication. Combustion Science and Technology 53:2-3, pages 217-224.
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H. S. Hura & I. Glassman. (1987) Fuel Oxygen Effects on Soot Formation in Counterflow Diffusion Flames. Combustion Science and Technology 53:1, pages 1-21.
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K. SAITO, F. A. WILLIAMS & A. S. GORDON. (1987) A Study of the Two-Color Soot Zone for Small Hydrocarbon Diffusion Flames. Combustion Science and Technology 51:4-6, pages 285-305.
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JOSEPH HODGES & DAVID FOSTER. (1987) Soot Coagulation with Surface Growth Kinetics. Combustion Science and Technology 51:4-6, pages 235-249.
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EVERETTR. RAMER, JOSEPHF. MERKLIN, CHRISTOPHERM. SORENSEN & THOMASW. TAYLOR. (1986) Chemical and Optical Probing of Premixed Methane/Oxygen Flames. Combustion Science and Technology 48:5-6, pages 241-255.
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U. Vandsburger, I. Kennedy & I. Glassman. (1984) Sooting Counterflow Diffusion Flames with Varying Oxygen Index. Combustion Science and Technology 39:1-6, pages 263-285.
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Stephen J. Harris & Anita M. Weiner. (1984) Soot Particle Growth in Premixed Toluene/Ethylene Flames. Combustion Science and Technology 38:1-2, pages 75-87.
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F. TAKAHASHI & I. GLASSMAN. (1984) Sooting Correlations for Premixed Flames. Combustion Science and Technology 37:1-2, pages 1-19.
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STEPHENJ. HARRIS & ANITAM. WEINER. (1983) Determination of the Rate Constant for Soot Surface Growth. Combustion Science and Technology 32:5-6, pages 267-275.
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Liqiao Jiang, Cheng Gu, Jiepeng Huo & Weibin Yang. (2022) Improved Two-Color Method for Temperature Measurement of Soot Flames. Journal of Thermophysics and Heat Transfer 36:2, pages 431-439.
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Nathan J. Kempema, Richard R. Dobbins, Marshall B. Long & Mitchell D. Smooke. (2021) Constrained-temperature solutions of coflow laminar diffusion flames. Proceedings of the Combustion Institute 38:2, pages 1905-1912.
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P. N. Langenkamp, J. A. van Oijen, H. B. Levinsky & A. V. Mokhov. (2018) Growth of Soot Volume Fraction and Aggregate Size in 1D Premixed C 2 H 4 /Air Flames Studied by Laser-Induced Incandescence and Angle-Dependent Light Scattering . Journal of Combustion 2018, pages 1-13.
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