氧气
氢
活化能
动力学
化学
诱导期
化学动力学
反应速率
冲击波
冲击管
大气温度范围
分析化学(期刊)
反应机理
物理化学
热力学
催化作用
有机化学
物理
量子力学
作者
Hajime Miyama,Tetsu Takeyama
摘要
The hydrogen—oxygen reaction in reflected shock waves has been studied in the range of conditions 890°≤T≤1350°K, 4.5≤P≤5.6 atm, 1.3≤O2≤13×10—3 moles/liter, and 0.5≤[H2]/[O2]≤2. Measurements of both the induction period of OH absorption and that of pressure increase suggest that the reaction H+O2→OH+O is the rate-determining step of OH formation in this temperature range and has an activation energy of 18.9±0.9 kcal/mole, but that the rate-determining step of over-all reaction is HO2+H2→H2O2+H below 1100°K, while H+O2→OH+O is rate determining above 1100°K. Also, the mechanism of the hydrogen—oxygen reaction below 1100°K is discussed in some detail.
科研通智能强力驱动
Strongly Powered by AbleSci AI