E3S Web of Conferences (Jan 2018)

Study on SO3 Cooperative Removal Effect of Ultra-low Emission Technology in Coal-fired Power Plants

  • Yang Ding,
  • Luo Yi,
  • Ye XingLian,
  • Chen WeiXiang,
  • Guo Jun,
  • Zou ZongShu,
  • Lu FengHua

DOI
https://doi.org/10.1051/e3sconf/20185304005
Journal volume & issue
Vol. 53
p. 04005

Abstract

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SO3 is one of the main precursors of atmospheric PM2.5, and its emission has attracted more and more attention in the industry. This paper briefly analyzes the harm of SO3 and the method of controlled condensation to test SO3. The effect of cooperative removal of SO3 by ultra-low emission technology in some coal-fired power plants has been tested by using the method of controlled condensation. The results show that the cooperative removal of SO3 by ultra-low emission technology in coal-fired power plants is effective. The removal rate of SO3 by low-low temperature electrostatic precipitators and electrostatic-fabric integrated precipitators can be exceeded 80%, while the removal rate of SO3 by wet flue gas desulfurization equipment displays lower than the above two facilities, and the wet electrostatic precipitator shows a better removal effect on SO3. With the use of ultra-low emission technology in coal-fired power plants, the SO3 emission concentration of the tail chimney reaches less than 1 mg / Nm3.