The Investigation of Detonation Characteristics of Ethylene Oxide Mixture by Using Incident Shock Tube Technique

입사 충격파관을 이용한 에틸렌 옥사이드 혼합물의 데토네이션 특성연구

  • Moon, J.H. (Korea Electric Power Corporation, Research Center) ;
  • Chung, J.D. (Korea Electric Power Corporation, Research Center) ;
  • Kang, J.G. (Chungnam National Univ. Dept. of Chemistry)
  • 문종화 (한국전력공사 기술연구원) ;
  • 정진도 (한국전력공사 기술연구원) ;
  • 강준길 (충남대학교 자연과학대학 화학과)
  • Published : 1994.09.30

Abstract

Shock tube investigation of ethylene oxide-$0_{2}-N_{2}$ mixture have been performed to reveal detonation characteristics of the mixture in terms of detonation pressure and speed. Theoretical calculation of thermodynamic parameters at the Chapmann-Jouguet detonation of the mixture has been also performed. A comparision of the observed results with the calculated ones can lead us to predict the detonation parameters of ethylene oxide in an artificial air. In addition, we have observed ignition delay times of ethylene oxide mixtures. The best fit of the observed delay times to Arrhenius gas kinetic relation gives : ${\tau}=10^{-144}{e{xp}}(E_a/RT)[C_{2}H_{4}O]^{-4.8}[O_{2}]^{-12.4}[N_{2}]^{-14.1}$ $E_a=3.67kcal/mole$ The observed activation energy is markedly reduced, compared with the case of ethylene oxide diluted in Ar. It could be due to the factor that $N_2$ play a role as detonation promoter yielding very reactive NOx radicals.

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