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Original Articles

Laser Excited Fluorescence Measurements in Spray Oil Flames for the Detection of Polycyclic Aromatic Hydrocarbons and Soot

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Pages 113-122 | Received 29 Jun 1981, Published online: 09 Jun 2010

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J. XIAO, E. AUSTIN & W.L. ROBERTS. (2005) RELATIVE POLYCYCLIC AROMATIC HYDROCARBON CONCENTRATIONS IN UNSTEADY COUNTERFLOW DIFFUSION FLAMES. Combustion Science and Technology 177:4, pages 691-713.
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R. BARBELLA, F. BERETTA, A. CIAJOLO, A. D'ALESSIO, M.V. PRATI & A. TREGROSS. (1990) Optical and Chemical Characterization of Carbon Polymorphs Formed During Spray Combustion of Hydrocarbons. Combustion Science and Technology 74:1-6, pages 159-173.
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Articles from other publishers (15)

Ingrid El Helou, Jenna M. Foale, Rohit S. Pathania, Roberto Ciardiello, Aaron W. Skiba & Epaminondas Mastorakos. (2023) A comparison between fossil and synthetic kerosene flames from the perspective of soot emissions in a swirl spray RQL burner. Fuel 331, pages 125608.
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Lu-Yin Wang, Sandipan Chatterjee, Qiang An, Adam M. Steinberg & Ömer L. Gülder. (2019) Soot formation and flame structure in swirl-stabilized turbulent non-premixed methane combustion. Combustion and Flame 209, pages 303-312.
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S. Sadhra & A.D. Wheatley. (2007) Polycyclic aromatic hydrocarbon emissions from clinical waste incineration. Chemosphere 66:11, pages 2177-2184.
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P. P. Radi, B. Mischler, T. Gerber, H. Dreher, B. Lehmann & M. Ochs. (1996) Imaging of the reaction zone in a 100 kW oil-burning furnace by use of a broad-band excimer laser. Applied Physics B Laser and Optics 62:1, pages 65-69.
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Katharina Kohse-Höinghaus. (1994) Laser techniques for the quantitative detection of reactive intermediates in combustion systems. Progress in Energy and Combustion Science 20:3, pages 203-279.
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Reinhard Niessner. 1993. Environmental Analysis Techniques, Applications and Quality Assurance. Environmental Analysis Techniques, Applications and Quality Assurance 3 22 .
. 1992. Nonsteady Burning and Combustion Stability of Solid Propellants. Nonsteady Burning and Combustion Stability of Solid Propellants 261 324 .
ALDO DI LORENZO & ANTONIO D'ALESSIO. (1988) Trends in Combustion Technology in Relation to Health Risk. Annals of the New York Academy of Sciences 534:1 Living in a C, pages 459-471.
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F. Beretta, A. Cavaliere, A. D'Alessio, P. Massoli & R. Ragucci. (1988) A spectral scattering method for determining size distribution functions and optical characteristics of droplets ensembles in fuel sprays. Symposium (International) on Combustion 21:1, pages 675-683.
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Henning Bockhorn & Michael Schneider. (2004) Tropfengrößenmessungen in Sprayflammen als Grundlage der Modellierung von Zerstäubung und Verdampfung flüssiger Brennstoffe. Chemie Ingenieur Technik 58:8, pages 684-685.
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F. Beretta, V. Cincotti, A. D'Alessio & P. Menna. (1985) Ultraviolet and visible fluorescence in the fuel pyrolysis regions of gaseous diffusion flames. Combustion and Flame 61:3, pages 211-218.
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William A. Sirignano. (1983) Fuel droplet vaporization and spray combustion theory. Progress in Energy and Combustion Science 9:4, pages 291-322.
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A. D’Alessio, F. Beretta, A. Cavaliere & P. Menna. 1983. Soot in Combustion Systems and Its Toxic Properties. Soot in Combustion Systems and Its Toxic Properties 355 378 .
A. Ciajolo, R. Barbella, M. Mattiello & A. D'Alessio. (1982) Axial and radial measurements of soot and pah in a light oil flame. Symposium (International) on Combustion 19:1, pages 1369-1377.
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F. Beretta, A. Cavaliere & A. D'Alessio. (1982) Soot and pah distributions in oil spray flames, inferred by elastic and inelastic laser light scattering. Symposium (International) on Combustion 19:1, pages 1359-1367.
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