• Title of article

    Soot aggregate restructuring during water processing

  • Author/Authors

    Ma، نويسنده , , Xiaofei and Zangmeister، نويسنده , , Christopher D. and Gigault، نويسنده , , Julien and Mulholland، نويسنده , , George W. and Zachariah، نويسنده , , Michael R.، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2013
  • Pages
    11
  • From page
    209
  • To page
    219
  • Abstract
    Soot aggregate restructuring is explored in laboratory prepared soot particles upon exposure to high humidity environment followed by rapid water evaporation. Soot was generated in a Santoro style ethylene diffusion burner, and condensation of water on the soot particles was realized in a temperature-controlled water growth tube. The structure transformation of soot particles under different humidity conditions was monitored using a Differential Mobility Analyzer – Aerosol Particle Mass Analyzer (DMA-APM) and Tandem Differential Mobility Analyzer (TDMA) methods. The primary measured properties were mass-mobility scaling exponent, particle mass and mobility size before and after processing. A critical saturation ratio was observed above which aggregate restructuring occurred. The morphological change was visualized by taking electron microscopic images. X-ray photoelectron spectroscopy (XPS) analysis found that the chemical structures of different processed soot were indistinguishable. To assess if soot collapse occurred during water condensation or evaporation, water-coated soot was directly injected into water, where multi-angle light scattering showed that the structure was uncollapsed. This result indicates that soot restructuring driven by capillary forces occurs during evaporation, not condensation.
  • Keywords
    Light Scattering , Capillary force , Differential mobility analyzer , XPS , aerosol particle mass analyzer , Mass-mobility scaling exponent
  • Journal title
    Journal of Aerosol Science
  • Serial Year
    2013
  • Journal title
    Journal of Aerosol Science
  • Record number

    1386379