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Original Articles

Morphological Description of Flame-Generated Materials

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Pages 95-109 | Received 01 Jun 1989, Accepted 16 Jan 1990, Published online: 27 Apr 2007

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Read on this site (28)

E. V. Ivanova, A. F. Khalizov & G. Y. Gor. (2021) Kinetic model for competitive condensation of vapor between concave and convex surfaces in a soot aggregate. Aerosol Science and Technology 55:3, pages 302-315.
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Lipeng Su, Qisheng Ou, Leo N. Y. Cao, Qian Du & David Y. H. Pui. (2019) Real-time measurement of nano-agglomerate and aggregate mass and surface area concentrations with a prototype instrument. Aerosol Science and Technology 53:12, pages 1453-1467.
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Ramin Dastanpour, Steven N. Rogak, Brian Graves, Jason Olfert, Maximilian L. Eggersdorfer & Adam M. Boies. (2016) Improved sizing of soot primary particles using mass-mobility measurements. Aerosol Science and Technology 50:2, pages 101-109.
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G. Inci, A. Arnold, A. Kronenburg & R. Weeber. (2014) Modeling Nanoparticle Agglomeration using Local Interactions. Aerosol Science and Technology 48:8, pages 842-852.
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M. Commodo, F. Ossler, C. de Lisio, A. D'Anna & P. Minutolo. (2012) Size Measurements of Fluorescent Carbon Nanoparticles in a Coflowing Laminar Diffusion Flame by Time-Resolved Fluorescence Anisotropy. Combustion Science and Technology 184:7-8, pages 916-928.
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RajanK. Chakrabarty, MarkA. Garro, BruceA. Garro, Shammah Chancellor, Hans Moosmüller & ChristopherM. Herald. (2011) Simulation of Aggregates with Point-Contacting Monomers in the Cluster–Dilute Regime. Part 2: Comparison of Two- and Three-Dimensional Structural Properties as a Function of Fractal Dimension. Aerosol Science and Technology 45:8, pages 903-908.
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F.X. Ouf, J. Yon, P. Ausset, A. Coppalle & M. Maillé. (2010) Influence of Sampling and Storage Protocol on Fractal Morphology of Soot Studied by Transmission Electron Microscopy. Aerosol Science and Technology 44:11, pages 1005-1017.
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David Boldridge. (2010) Morphological Characterization of Fumed Silica Aggregates. Aerosol Science and Technology 44:3, pages 182-186.
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Yingwu Teng, UmitO. Koylu, DonaldE. Hagen & PhilipD. Whitefield. (2009) Performance of the Mobility Sizing Technique Relative to Independent Diagnostics for the Characterization of Polydisperse Soot Aggregates. Combustion Science and Technology 181:12, pages 1526-1548.
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M. Matti Maricq. (2008) Bipolar Diffusion Charging of Soot Aggregates. Aerosol Science and Technology 42:4, pages 247-254.
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François-Xavier Ouf, Jacques Vendel, Alexis Coppalle, Marc Weill & Jérôme Yon. (2008) Characterization of Soot Particles in the Plumes of Over-Ventilated Diffusion Flames. Combustion Science and Technology 180:4, pages 674-698.
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Changdong Sheng & Xianglin Shen. (2007) Simulation of Acoustic Agglomeration Processes of Poly-Disperse Solid Particles. Aerosol Science and Technology 41:1, pages 1-13.
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BO YANG, BING HU & UMITO. KOYLU. (2005) MEAN SOOT VOLUME FRACTIONS IN TURBULENT HYDROCARBON FLAMES: A COMPARISON OF SAMPLING AND LASER MEASUREMENTS. Combustion Science and Technology 177:8, pages 1603-1626.
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Kihong Park, DavidB. Kittelson & PeterH. McMurry. (2004) Structural Properties of Diesel Exhaust Particles Measured by Transmission Electron Microscopy (TEM): Relationships to Particle Mass and Mobility. Aerosol Science and Technology 38:9, pages 881-889.
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ALMILA GÜVENÇ YAZICIOGLU, CONSTANTINEM. MEGARIDIS, ANGELA CAMPBELL, KYEONG-OOK LEE & MUN YOUNG CHOI. (2001) MEASUREMENT OF FRACTAL PROPERTIES OF SOOT AGGLOMERATES IN LAMINAR COFLOW DIFFUSION FLAMES USING THERMOPHORETIC SAMPLING IN CONJUNCTION WITH TRANSMISSION ELECTRON MICROSCOPY AND IMAGE PROCESSING. Combustion Science and Technology 171:1, pages 71-87.
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NathanD. Marsh, MaryJ. Wornat, LawrenceT. Scott, Atena Necula, ArthurL. Lafleur & ElaineF. Plummer. (2000) The Identification of Cyclopenta-Fused and Ethynyl-Substituted Polycyclic Aromatic Hydrocarbons in Benzene Droplet Combustion Products. Polycyclic Aromatic Compounds 13:4, pages 379-402.
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Guixiang Yang & Pratim Biswas. (1997) Study of the Sintering of Nanosized Titania Agglomerates in Flames Using In Situ Light Scattering Measurements. Aerosol Science and Technology 27:4, pages 507-521.
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C.M. Sorensen & G.D. Feke. (1996) The Morphology of Macroscopic Soot. Aerosol Science and Technology 25:3, pages 328-337.
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S. Nyeki & I. Colbeck. (1995) Fractal Dimension Analysis of Single, In-Situ, Restructured Carbonaceous Aggregates. Aerosol Science and Technology 23:2, pages 109-120.
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Hyuksang Chang, Wen Yinn Lin & Pratim Biswas. (1995) An Inversion Technique to Determine the Aerosol Size Distribution in Multicomponent Systems from In Situ Light Scattering Measurements. Aerosol Science and Technology 22:1, pages 24-32.
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G. M. FAETH & Ü.Ö. KÖYLÜ. (1995) Soot Morphology and Optical Properties in Nonpremixed Turbulent Flame Environments. Combustion Science and Technology 108:4-6, pages 207-229.
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ALESSANDRO GOMEZ & DANIEL E ROSNER. (1993) Thermophoretic Effects on Particles in Counterflow Laminar Diffusion Flames. Combustion Science and Technology 89:5-6, pages 335-362.
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F. Einar Kruis, KarlA. Kusters, SotirisE. Pratsinis & Brian Scarlett. (1993) A Simple Model for the Evolution of the Characteristics of Aggregate Particles Undergoing Coagulation and Sintering. Aerosol Science and Technology 19:4, pages 514-526.
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Abhijit Gurav, Toivo Kodas, Tammy Pluym & Yun Xiong. (1993) Aerosol Processing of Materials. Aerosol Science and Technology 19:4, pages 411-452.
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JOSEPHL. KATZ & CHENG-HUNG HUNG. (1992) Ultrafine Refractory Particle Formation in Counterflow Diffusion Flames. Combustion Science and Technology 82:1-6, pages 169-183.
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D. E. ROSNER, D. W. MACKOWSKI & P. GARCIA-YBARRA. (1991) Size- and Structure-lnsensitivity of the Thermophoretic Transport of Aggregated “Soot” Particles in Gases. Combustion Science and Technology 80:1-3, pages 87-101.
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Daniel A. Lack, Hans Moosmüller, Gavin R. McMeeking, Rajan K. Chakrabarty & Darrel Baumgardner. (2013) Characterizing elemental, equivalent black, and refractory black carbon aerosol particles: a review of techniques, their limitations and uncertainties. Analytical and Bioanalytical Chemistry 406:1, pages 99-122.
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B. M. Crosland, K. A. Thomson & M. R. Johnson. (2013) Instantaneous in-flame measurement of soot volume fraction, primary particle diameter, and aggregate radius of gyration via auto-compensating laser-induced incandescence and two-angle elastic light scattering. Applied Physics B 112:3, pages 381-393.
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Dustin Witkowski, Katsufumi Kondo, Gokul Vishwanathan & David Rothamer. (2013) Evaluation of the sooting properties of real fuels and their commonly used surrogates in a laminar co-flow diffusion flame. Combustion and Flame 160:6, pages 1129-1141.
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Kei Okabe, Masanori Sakai, Yuta Mizutani & Tetsuya Aizawa. (2013) Aromatic Additive Effect on Soot Formation and Oxidation in Fischer-Tropsch Diesel (FTD) Spray Flame -Morphology and Nanostructure Analysis of In-Flame Soot Particles via HRTEM-. SAE International Journal of Fuels and Lubricants 6:3, pages 807-816.
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Renlin Zhang, Kevin Szeto & Sanghoon Kook. (2013) Size Distribution and Structure of Wall-Deposited Soot Particles in an Automotive-Size Diesel Engine. SAE International Journal of Fuels and Lubricants 6:3, pages 605-614.
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Árpád Bence Palotás. (2013) Scanning Transmission Electron Microscopy Analysis of Diesel Soot Particles for Source Attribution. Materials Science Forum 752, pages 304-313.
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M. Commodo, L.A. Sgro, X. Wang, C. de Lisio & P. Minutolo. (2013) Fluorescence anisotropy in a diffusion flame to shed light in the “dark region”. Proceedings of the Combustion Institute 34:1, pages 1845-1852.
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