1,014
Views
17
CrossRef citations to date
0
Altmetric
Original Articles

Break-Up and Bounce of TiO2 Agglomerates by Impaction

, , , &
Pages 31-41 | Received 11 Mar 2013, Accepted 02 Sep 2013, Published online: 10 Oct 2013

REFERENCES

  • Arffman , A. , Marjamaki , M. and Keskinen , J. 2011 . Simulation of Low Pressure Impactor Collection Efficiency Curves . J. Aerosol Sci , 42 ( 5) : 329 – 340 .
  • Backman , U. , Tapper , U. and Jokiniemi , J. K. 2004 . An Aerosol Method to Synthesize Supported Metal Catalyst Nanoparticles . Synth. Met , 142 ( 1–3 ) : 169 – 176 .
  • Chen , X. and Mao , S. S. 2007 . Titanium Dioxide Nanomaterials: Synthesis, Properties, Modifications, and Applications . Chem. Rev , 107 ( 7 ) : 2891 – 2959 .
  • Froeschke , S. , Kohler , S. , Weber , A. P. and Kasper , G. 2003 . Impact Fragmentation of Nanoparticle Agglomerates . J. Aerosol Sci , 34 ( 3 ) : 275 – 287 .
  • Fujishima , A. and Zhang , X. 2006 . Titanium Dioxide Photocatalysis: Present Situation and Future Approaches . Comptes. Rendus Chimie. , 9 ( 5–6 ) : 750 – 760 .
  • Guntay , S. , Suckow , D. , Dehbi , A. and Kapulla , R. 2004 . ARTIST: Introduction and First Results . Nucl. Eng. Des. , 231 ( 1 ) : 109 – 120 .
  • Ihalainen , M. , Lind , T. , Torvela , T. , Lehtinen , K. E. J. and Jokiniemi , J. 2012 . A Method to Study Agglomerate Breakup and Bounce During Impaction . Aerosol Sci. Technol , 46 ( 9 ) : 990 – 1001 .
  • Khalil , Y. F. and Rosner , D. E. 1996 . Erosion Rate Prediction and Correlation Technique for Ceramic Surfaces Exposed to High Speed Flows of Abrasive Suspensions . Wear. , 201 ( 1–2 ) : 64 – 79 .
  • Lechman , J . 2010 . Aerosol Cluster Impact and Break-up: I. Model and Implementation , Sandia National Laboratories . SAND2010-7105. Albuquerque, NM:
  • Lyyränen , J. , Backman , U. , Tapper , U. , Auvinen , A. and Jokiniemi , J. 2009 . A Size Selective Nanopartile Collection Device Based on Diffusion and Thermophoresis . J. Phys.: Conf. Ser , 170 : 012011
  • Lyyränen , J. , Jokiniemi , J. , Kauppinen , E. I. , Backman , U. and Vesala , H. 2004 . Comparison of Different Dilution Methods for Measuring Diesel Particle Emissions . Aerosol Sci. Technol , 38 ( 1 ) : 12 – 23 .
  • Malloy , Q. G. J. , Nakao , S. , Qi , L. , Austin , R. , Stothers , C. Hagino , H. 2009 . Real-Time Aerosol Density Determination Utilizing a Modified Scanning Mobility Particle SizerAerosol Particle Mass Analyzer System RID F-4442-2010 . Aerosol Sci. Technol. , 43 ( 7 ) : 673 – 678 .
  • Mandelbrot , B. 1983 . The Fractal Geometry of Nature . Earth Surf. Process. Landforms. , 8 ( 4 ) : 406 – 406 .
  • Marple , V. A. 1970 . Fundamental Study of Inertial Impactors , Minneapolis, MN: Particle Technology Lab, Minnesota University . Ph.D. diss.
  • Marple , V. , Rubow , K. and Behm , S. 1991 . A Microorifice Uniform Deposit Impactor (Moudi) - Description, Calibration, and use . Aerosol Sci.Technol , 14 ( 4 ) : 434 – 446 .
  • Miettinen , M. , Riikonen , J. , Tapper , U. , Backman , U. , Joutsensaari , J. and Auvinen , A. 2009 . Development of a Highly Controlled Gas-Phase Nanoparticle Generator for Inhalation Exposure Studies . Hum. Exp. Toxicol. , 28 ( 6–7 ) : 413 – 419 .
  • Park , K. , Cao , F. , Kittelson , D. and McMurry , P. 2003 . Relationship Between Particle Mass and Mobility for Diesel Exhaust Particles . Environ. Sci. Technol. , 37 ( 3 ) : 577 – 583 .
  • Rennecke , S. and Weber , A. P. 2013a . A Novel Model for the Determination of Nanoparticle Impact Velocity in Low Pressure Impactors . J. Aerosol Sci. , 55 : 89 – 103 .
  • Rennecke , S. and Weber , A. P. 2013b . The Critical Velocity for Nanoparticle Rebound Measured in a Low Pressure Impactor . J. Aerosol Sci , 58 : 135 – 147 .
  • Seipenbusch , M. , Froeschke , S. , Weber , A. P. and Kasper , G. 2002 . Investigations on the Fracturing of Nanoparticle Agglomerates: First Results . Proc. Inst. Mech. Eng. E: J. Process Mech. Eng , 216 ( E4 ) : 219 – 225 .
  • Seipenbusch , M. , Rothenbacher , S. , Kirchhoff , M. , Schmid , H. , Kasper , G. and Weber , A. P. 2010 . Interparticle Forces in Silica Nanoparticle Agglomerates . J. Nanopart. Res. , 12 ( 6 ) : 2037 – 2044 .
  • Seipenbusch , M. , Toneva , P. , Peukert , W. and Weber , A. P. 2007 . Impact Fragmentation of Metal Nanoparticle Agglomerates . Part. Part. Syst. Char , 24 ( 3 ) : 193 – 200 .
  • Teleki , A. , Wengeler , R. , Wengeler , L. , Nirschl , H. and Pratsinis , S. E. 2008 . Distinguishing Between Aggregates and Agglomerates of Flame-Made TiO2 by High-Pressure Dispersion . Powder Technol. , 181 ( 3 ) : 292 – 300 .
  • Virtanen , A. , Joutsensaari , J. , Koop , T. , Kannosto , J. , Yli-Pirila , P. and Leskinen , J. 2010 . An Amorphous Solid State of Biogenic Secondary Organic Aerosol Particles . Nature. , 467 ( 7317 ) : 824 – 827 .
  • Wall , S. , John , W. , Wang , H. and Goren , S. L. 1990 . Measurements of Kinetic Energy Loss for Particles Impacting Surfaces . Aerosol Sci. Technol , 12 ( 4 ) : 926 – 946 .
  • Wang , H. and John , W. 1987 . Comparative Bounce Properties of Particle Materials . Aerosol. Sci. Technol. , 7 ( 3 ) : 285 – 299 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.