Non-Thermal Plasma Technique for Removing $SO_2$ and $NO_x$ from Combustion Flue Gas

연소가스내 탈황탈질처리를 위한 저온 플라즈마 기술

  • 송영훈 (한국기계연구원, 열유체 시스템 연구부) ;
  • 신완호 (한국기계연구원, 열유체 시스템 연구부) ;
  • 김석준 (한국기계연구원, 열유체 시스템 연구부) ;
  • 장길홍 (한국중공업, 기술연구원)
  • Published : 1997.06.26

Abstract

Industrial-scale pulse corona process to remove $SO_2$ and $NO_x$ simultaneously from combustion flue gas has been studied. The pilot plant built in the present study treats 2,000 $Nm^3$/hr of flue gas from a boiler. The geometry of the pulse corona reactor is similar to that of an electrostatic precipitator commonly used in industry, A thyratron switch and magnetic pulse compressors, which can generate up to 130 kV of peak pulse voltage and up to 30 kW of average pulse power, have been used to produce pulsed corona. The removal efficiencies of $S0_2$ and $NO_x$ with the present process are maximum of 95 % and 85 %, respectively. Electrical power consumption to produce the pulsed corona, which has been one of the major difficulties to apply this process to industry, has been evaluated in the present study. The results showed that the power consumption can be reduced significantly by simultaneous addition of hydrocarbon injection and heterogeneous phase reactions to the process.

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