层流
层流火焰速度
冲击管
燃烧
热力学
动能
一氧化碳
化学
火焰速度
预混火焰
点火系统
氢
反应速率常数
分析化学(期刊)
材料科学
物理化学
冲击波
燃烧室
有机化学
动力学
物理
催化作用
量子力学
作者
Hongyan Sun,Suo Yang,Grunde Jomaas,Chung K. Law
标识
DOI:10.1016/j.proci.2006.07.193
摘要
Laminar flame speeds were accurately measured for CO/H2/air and CO/H2/O2/helium mixtures at different equivalence ratios and mixing ratios by the constant-pressure spherical flame technique for pressures up to 40 atmospheres. A kinetic mechanism based on recently published reaction rate constants is presented to model these measured laminar flame speeds as well as a limited set of other experimental data. The reaction rate constant of CO + HO2 → CO2 + OH was determined to be k = 1.15 × 105T2.278 exp(−17.55 kcal/RT) cm3 mol−1 s−1 at 300–2500 K by ab initio calculations. The kinetic model accurately predicts our measured flame speeds and the non-premixed counterflow ignition temperatures determined in our previous study, as well as homogeneous system data from literature, such as concentration profiles from flow reactor and ignition delay time from shock tube experiments.
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