Investigation of velocity and magnetic field effects in an improved electrostatic cyclone precipitator for removal of submicron particles
ID:310 View Protection:ATTENDEE Updated Time:2024-05-20 10:07:14 Hits:675 Oral Presentation

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Abstract
The electrostatic cyclone precipitator (ECP) has been widely utilized in industry to control particle escape. However, the dust-removal performance of submicron particles which are the most difficult to be collected in traditional purification technologies cannot meet increasingly strict environmental standards. In this work, the cyclone precipitator was improved through changing vortex, a coupling theoretical model was built, and the dust-removal performance of submicron particles in an improved ECP under different flue gas velocities and magnetic induction intensities was investigated. It is found that compared to cyclone precipitator, the dust-removal efficiency in an improved ECP is significantly promoted with a maximum increase of 52.7%. At the submicron scale, as the particle size increases, the dust-removal performance of the improved ECP declines. The collection performance of submicron particles with or without the magnetic field gradually increase with the drop of the flue gas velocity. The improved range of dust-removal efficiency caused by magnetic confinement effect can reach 7.7% - 10.8%. At the same time, the higher the flue gas velocity, the greater the enhancement of the dust-removal efficiency caused by magnetic field. The results can provide new ideas for ECP structural improvement and insights into the profound removal of submicron particles caused by the combustion of fossil fuel.
Keywords
submicron particles,improved ECP,magnetic confinement effect,flue gas velocity,dust-removal performance
Speaker
王家翰
硕士研究生 上海理工大学

Submission Author
王家翰 上海理工大学
张建平 上海理工大学
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Important Date
  • Conference Date

    May 31

    2024

    to

    Jun 03

    2024

  • Jun 03 2024

    Abstract Submission Deadline

  • Jun 03 2024

    Draft paper submission deadline

  • Jun 03 2024

    Registration deadline

Sponsored By
Panel of Computational Mechanics on Granular Materials
Working Party of Computational Mechanics
Chinese Society of Theoretical and Applied Mechanics
Organized By
Hohai University
Dalian University of Technology
Chinese Society of Particuology
Jiangsu Society of Theoretical and Applied Mechanics
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