DeNOx modeling in $N_{2}/O_{2}$ gas by pulsed corona discharge

$N_{2}/O_{2}$ 혼합가스에서 펄스코로나 방전을 이용한 NOx 제거 모델링에 관한 연구

  • 박광서 (동양공업전문대학 기계과) ;
  • 이형상 (연세대학교 기계공학과) ;
  • 전배혁 (연세대학교 자동차기술연구소) ;
  • 신현호 (연세대학교 기계공학과) ;
  • 윤웅섭 (연세대학교 기계공학과) ;
  • 전광민 (연세대학교 기계공학과)
  • Published : 1999.10.22

Abstract

The removal of nitrogen oxides(NOx) from $N_{2}/O_{2}$ gas using a pulsed corona discharge was investigated as a function of the reduced electric field(E/N) and the energy density(J/L). A kinetic model was developed to characterize the chemical reactions taking place in a pulsed corona discharge reactor. The model calculates the fractional concentrations of radical species at each pulse-on period and utilizes the radicals to remove NOx for the subsequent pulse-off period. Electron collision reaction data are calculated using ELENDIF program to solve Boltzmann equation for electron energy distribution function, and the subsequent chemical reactions are calculated using CHEMKIN-II program to solve stiff ODE(ordinary differential equation) problems for species concentrations. The corona discharge energy per pulse and the time-space averaged E/N were obtained by fitting the model to experimental data. The model calculation shows good agreement with the experimental data, and predicts the formation of other species such as $NO_{2}$, $O_{3}$ and $N_{2}O$.

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