Fluid Dynamics and Particle Trajectories in a Diffusion Flame Reactor to Synthesize TiO2 Nanoparticles

  • Sunsap, Piyabutr
  • Kim, Dong-Joo
  • Kim, Kyo-Seon
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초록

Temperature and velocity profiles were simulated by a computational fluid dynamics method for the synthesis of TiO2 nanoparticles by a diffusion flame reactor and also for the collection of the TiO2 nanoparticles by a filter. Computational grids were created by GAMBIT and all governing equations for momentum, energy and mass balances were solved by FLUENT code. The effects of O-2 flow rate on the fluid dynamics and particle trajectories are illustrated. An increase in O-2 flow rate reduces the flame temperature but significantly enhances the gas velocity. The particle trajectory differs according to the starting position. The effect of O-2 flow rate on the particle trajectory can be seen clearly at the starting position r(0) = 0.2 cm from the central axis. The particles at higher O-2 flow rate move closer to the central axis and deposit earlier on the filter than the particles at lower O-2 flow rate. The particles starting at r(0) = 0.4 cm at higher O-2 flow rate move further away from the central axis and deposit at a higher position on the filter. Information on gas temperature, velocity profiles and particle trajectories can be quite useful in designing a diffusion flame reactor to synthesize high-performance TiO2 nanoparticles.

키워드

Fluid DynamicsTiO2 Particle TrajectoryDiffusion Flame ReactorMANUFACTURE
제목
Fluid Dynamics and Particle Trajectories in a Diffusion Flame Reactor to Synthesize TiO2 Nanoparticles
저자
Sunsap, PiyabutrKim, Dong-JooKim, Kyo-Seon
DOI
10.1166/jnn.2008.1019
발행일
2008-10
유형
Article; Proceedings Paper
저널명
Journal of Nanoscience and Nanotechnology
8
10
페이지
5030 ~ 5035