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Original Articles

The Mobility and Structure of Aerosol Agglomerates

, &
Pages 25-47 | Received 05 May 1991, Accepted 10 Jul 1992, Published online: 11 Jun 2007

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Read on this site (51)

Jason Scott, Timothy A. Sipkens, Greg Smallwood, Rym Mehri, Joel C. Corbin, Prem Lobo & M. Reza Kholghy. (2024) Rapid assessment of jet engine-like soot from combustion of conventional and sustainable aviation fuels using flame spray pyrolysis. Aerosol Science and Technology 58:6, pages 595-609.
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Mouad Daoudi, Philipp Schiffmann, Alessandro Faccinetto, Arnaud Frobert & Pascale Desgroux. (2023) Comprehensive characterization of particulate matter emissions produced by a liquid-fueled miniCAST burner. Aerosol Science and Technology 57:9, pages 872-889.
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Cyprien Jourdain, Jonathan P. R. Symonds & Adam M. Boies. (2023) Compact aerosol aggregate model (CA2M): A fast tool to estimate the aerosol properties of fractal-like aggregates. Aerosol Science and Technology 57:8, pages 797-809.
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Emma C. Tackman, Devon N. Higgins, Devan E. Kerecman, Emily-Jean E. Ott, Murray V. Johnston & Miriam Arak Freedman. (2023) The use of transmission electron microscopy with scanning mobility particle size spectrometry for an enhanced understanding of the physical characteristics of aerosol particles generated with a flow tube reactor. Aerosol Science and Technology 57:4, pages 279-295.
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Una Trivanovic, Georgios A. Kelesidis & Sotiris E. Pratsinis. (2022) High-throughput generation of aircraft-like soot. Aerosol Science and Technology 56:8, pages 732-743.
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Qi Yao, Akua Asa-Awuku, Christopher D. Zangmeister & James G. Radney. (2020) Comparison of three essential sub-micrometer aerosol measurements: Mass, size and shape. Aerosol Science and Technology 54:10, pages 1197-1209.
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Pooyan Kheirkhah, Alberto Baldelli, Patrick Kirchen & Steven Rogak. (2020) Development and validation of a multi-angle light scattering method for fast engine soot mass and size measurements. Aerosol Science and Technology 54:9, pages 1083-1101.
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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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Bon Ki Ku & Pramod Kulkarni. (2018) Application of fractal theory to estimation of equivalent diameters of airborne carbon nanotube and nanofiber agglomerates. Aerosol Science and Technology 52:5, pages 597-608.
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A. A. Onischuk, A. M. Baklanov, S. V. Valiulin, P. P. Moiseenko & V. G. Mitrochenko. (2018) Aerosol diffusion battery: The retrieval of particle size distribution with the help of analytical formulas. Aerosol Science and Technology 52:2, pages 165-181.
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Yung Sung Cheng & Yue Zhou. (2017) Effects of size and shape on filtration of TiO2 nanoparticles. Aerosol Science and Technology 51:8, pages 972-980.
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James Corson, George W. Mulholland & Michael R. Zachariah. (2017) Analytical expression for the friction coefficient of DLCA aggregates based on extended Kirkwood–Riseman theory. Aerosol Science and Technology 51:6, pages 766-777.
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Lin Tian, Goodarz Ahmadi & Jiyuan Tu. (2017) Mobility of nanofiber, nanorod, and straight-chain nanoparticles in gases. Aerosol Science and Technology 51:5, pages 587-601.
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M. I. Gini, C. Helmis, A. D. Melas, D. Papanastasiou, G. Orfanopoulos, K. P. Giannakopoulos, Y. Drossinos & K. Eleftheriadis. (2016) Characterization of carbon fractal-like aggregates by size distribution measurements and theoretical calculations. Aerosol Science and Technology 50:2, pages 133-147.
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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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Pai Liu & Rajan K. Chakrabarty. (2016) Sensitivity analysis of aggregate morphology on mass-mobility relationship and improved parameterizations. Aerosol Science and Technology 50:1, pages 63-70.
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Brian Graves, Jason Olfert, Bronson Patychuk, Ramin Dastanpour & Steven Rogak. (2015) Characterization of Particulate Matter Morphology and Volatility from a Compression-Ignition Natural-Gas Direct-Injection Engine. Aerosol Science and Technology 49:8, pages 589-598.
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Jae Hong Park, Imali A. Mudunkotuwa, Levi W. D. Mines, T. Renée Anthony, Vicki H. Grassian & Thomas M. Peters. (2015) A Granular Bed for Use in a Nanoparticle Respiratory Deposition Sampler. Aerosol Science and Technology 49:3, pages 179-187.
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Ramin Dastanpour & Steven N. Rogak. (2014) Observations of a Correlation Between Primary Particle and Aggregate Size for Soot Particles. Aerosol Science and Technology 48:10, pages 1043-1049.
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David Leith, Dan Miller-Lionberg, Gary Casuccio, Traci Lersch, Hank Lentz, Anthony Marchese & John Volckens. (2014) Development of a Transfer Function for a Personal, Thermophoretic Nanoparticle Sampler. Aerosol Science and Technology 48:1, pages 81-89.
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Chonglin Zhang, Thaseem Thajudeen, Carlos Larriba, ThomasE. Schwartzentruber & ChristopherJ. Hogan$suffix/text()$suffix/text(). (2012) Determination of the Scalar Friction Factor for Nonspherical Particles and Aggregates Across the Entire Knudsen Number Range by Direct Simulation Monte Carlo (DSMC). Aerosol Science and Technology 46:10, pages 1065-1078.
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M. Ihalainen, T. Lind, T. Torvela, K. E. J. Lehtinen & J. Jokiniemi. (2012) A Method to Study Agglomerate Breakup and Bounce During Impaction. Aerosol Science and Technology 46:9, pages 990-1001.
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Bon Ki Ku & DouglasE. Evans. (2012) Investigation of Aerosol Surface Area Estimation from Number and Mass Concentration Measurements: Particle Density Effect. Aerosol Science and Technology 46:4, pages 473-484.
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M.L. Eggersdorfer & S.E. Pratsinis. (2012) The Structure of Agglomerates Consisting of Polydisperse Particles. Aerosol Science and Technology 46:3, pages 347-353.
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C.D. Lagally, C.C. O. Reynolds, A.P. Grieshop, M. Kandlikar & S.N. Rogak. (2012) Carbon Nanotube and Fullerene Emissions from Spark-Ignited Engines. Aerosol Science and Technology 46:2, pages 156-164.
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Arka Soewono & Steven Rogak. (2011) Morphology and Raman Spectra of Engine-Emitted Particulates. Aerosol Science and Technology 45:10, pages 1206-1216.
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C.M. Sorensen. (2011) The Mobility of Fractal Aggregates: A Review. Aerosol Science and Technology 45:7, pages 765-779.
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Kuk Cho, Kang-Sup Chung & Pratim Biswas. (2011) Coagulation Coefficient of Agglomerates with Different Fractal Dimensions. Aerosol Science and Technology 45:6, pages 740-743.
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Jingkun Jiang, Michel Attoui, Michael Heim, NicholasA. Brunelli, PeterH. McMurry, Gerhard Kasper, RichardC. Flagan, Konstantinos Giapis & Guillaume Mouret. (2011) Transfer Functions and Penetrations of Five Differential Mobility Analyzers for Sub-2 nm Particle Classification. Aerosol Science and Technology 45:4, pages 480-492.
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Esther Coz & Caroline Leck. (2011) Morphology and state of mixture of atmospheric soot aggregates during the winter season over Southern Asia-a quantitative approach. Tellus B: Chemical and Physical Meteorology 63:1, pages 107-116.
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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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J. Wang, W.G. Shin, M. Mertler, B. Sachweh, H. Fissan & D.Y. H. Pui. (2010) Measurement of Nanoparticle Agglomerates by Combined Measurement of Electrical Mobility and Unipolar Charging Properties. Aerosol Science and Technology 44:2, pages 97-108.
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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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K. Park, D. Dutcher, M. Emery, J. Pagels, H. Sakurai, J. Scheckman, S. Qian, M.R. Stolzenburg, X. Wang, J. Yang & P.H. McMurry. (2008) Tandem Measurements of Aerosol Properties—A Review of Mobility Techniques with Extensions. Aerosol Science and Technology 42:10, pages 801-816.
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Kerstin Reuter-Hack, AlfredP. Weber, Stefan Rösler & Gerhard Kasper. (2007) First LDA Measurements of Nanoparticle Velocities in a Low-Pressure Impacting Jet. Aerosol Science and Technology 41:3, pages 277-283.
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Tami C. Bond & RobertW. Bergstrom. (2006) Light Absorption by Carbonaceous Particles: An Investigative Review. Aerosol Science and Technology 40:1, pages 27-67.
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Hyuncheol Oh, Hyungho Park & Sangsoo Kim. (2004) Effects of Particle Shape on the Unipolar Diffusion Charging of Nonspherical Particles. Aerosol Science and Technology 38:11, pages 1045-1053.
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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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Annele Virtanen, Jyrki Ristimäki & Jorma Keskinen. (2004) Method for Measuring Effective Density and Fractal Dimension of Aerosol Agglomerates. Aerosol Science and Technology 38:5, pages 437-446.
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PeterF. DeCarlo, JayG. Slowik, DouglasR. Worsnop, Paul Davidovits & JoseL. Jimenez. (2004) Particle Morphology and Density Characterization by Combined Mobility and Aerodynamic Diameter Measurements. Part 1: Theory. Aerosol Science and Technology 38:12, pages 1185-1205.
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Koichi Nakaso, Toshiyuki Fujimoto, Takafuimi Seto, Manabu Shimada, Kikuo Okuyama & MelissaM. Lunden. (2001) Size Distribution Change of Titania Nano-Particle Agglomerates Generated by Gas Phase Reaction, Agglomeration, and Sintering. Aerosol Science and Technology 35:5, pages 929-947.
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Takafumi Seto, Atsushi Hirota, Toshiyuki Fujimoto, Manabu Shimada & Kikuo Okuyama. (1997) Sintering of Polydisperse Nanometer-Sized Agglomerates. Aerosol Science and Technology 27:3, pages 422-438.
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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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Yasuo Kousaka, Yoshiyuki Endo, Hirokazu Ichitsubo & Manuel Alonso. (1996) Orientation-Specific Dynamic Shape Factors for Doublets and Triplets of Spheres in the Transition Regime. Aerosol Science and Technology 24:1, pages 36-44.
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Yoan Crouzet & WilliamH. Marlow. (1995) Calculations of the Equilibrium Vapor Pressure of Water over Adhering 50–200-nm Spheres. Aerosol Science and Technology 22:1, pages 43-59.
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