首页> 美国政府科技报告 >Investigations of the Recombination of O Atoms with CO over the Largest Range of Temperature and Pressure Practicable in the Shock Tube (1); Study of the Thermal Dissociation of Hydrogen Peroxide at Temperature Above 1000 K (2); Study of the Unimolecular Dissociation of Formaldehyde (3)
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Investigations of the Recombination of O Atoms with CO over the Largest Range of Temperature and Pressure Practicable in the Shock Tube (1); Study of the Thermal Dissociation of Hydrogen Peroxide at Temperature Above 1000 K (2); Study of the Unimolecular Dissociation of Formaldehyde (3)

机译:在冲击管中可实现的最大温度和压力范围内用CO重组O原子的研究(1);高温1000 K以上过氧化氢热解离的研究(2);甲醛单分离解离的研究(3)

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The recombination reaction CO+O+M yields CO2+M was studied in incident and reflected shock waves from 1200 K to 2300 K. The recombination rate constant has a slightly negative apparent activation energy and confirms an unusual behaviour of the temperature dependence of the recombination rate constant. The unimolecular dissociation of hydrogen peroxide was investigated near the low pressure limit. Experiments at 20atm indicated the beginning of the fall-off region. In addition, light absorption corresponding to a species which forms and is consumed again during the reaction, was observed around 2300A. This absorption is possibly due to HO2. The thermal dissociation of formaldehyde at low concentrations in argon was investigated at temperatures 1400

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