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EXPERIMENTAL AND MODELING STUDY OF PREMIXED LAMINAR FLAMES OF ETHANOL AND METHANE

机译:乙醇和甲烷混合层流火焰的实验与模型研究

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摘要

To better understand the chemistry of the combustion of ethanol, the structure of five low pressure laminar premixed flames has been investigated: a pure methane flame (φ=1), three pure ethanol flames (φ=0.7, 1.0, and 1.3), and an ethanol/methane mixture flames (φ=1). The flames have been stabilized on a burner at a pressure of 6.7 kPa using argon as dilutant, with a gas velocity at the burner of 64.3 cm/s at 333 K. The results consist of mole fraction profiles of 20 species measured as a function of the height above the burner by probe sampling followed by online gas chromatography analyses. A mechanism for the oxidation of ethanol was proposed. The reactions of ethanol and acetaldehyde were updated and include recent theoretical calculations while that of ethenol, dimethyl ether, acetone, and propanal were added in the mechanism. This mechanism was also tested against experimental results available in the literature for laminar burning velocities and laminar premixed flame where ethenol was detected. The main reaction pathways of consumption of ethanol are analyzed. The effect of the branching ratios of reaction C2H5OH+OH→Products+H2O is also discussed.
机译:为了更好地了解乙醇燃烧的化学过程,研究了五种低压层流预混火焰的结构:纯甲烷火焰(φ= 1),三种纯乙醇火焰(φ= 0.7、1.0和1.3),以及乙醇/甲烷混合物燃烧(φ= 1)。使用氩气作为稀释剂,将火焰稳定在压力为6.7 kPa的燃烧器上,燃烧器处的气体速度为333 K时为64.3 cm / s。结果由20种物质的摩尔分数分布组成,随通过探针采样,然后在线气相色谱分析,确定燃烧器上方的高度。提出了乙醇氧化的机理。乙醇和乙醛的反应得到了更新,并包括了最新的理论计算,而机理中还加入了乙醇,二甲醚,丙酮和丙醛。还针对文献中有关层流燃烧速度和检测到乙二酚的层流预混火焰的实验结果,测试了该机制。分析了消耗乙醇的主要反应途径。还讨论了反应C2H5OH + OH→产物+ H2O的支化比的影响。

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