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Optimized Rate Expressions for Soot Oxidation by OH and O_2

机译:OH和O_2的烟灰氧化优化的速率表达式

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The two principal soot oxidizers in flames are the hydroxyl radical (OH) and molecular oxygen (O_2). Many soot oxidation rate expressions exist for these oxidizers, but they have considerable disparity and have not been sufficiently validated. To address this, twelve published experimental studies in diffusion flames, premixed flames, thermogravimetric analyzers, and flow reactors are examined. These are all the known studies that measured all of the following quantities at discrete locations: soot oxidation rate, temperature, OH concentration (if nonzero), and O_2 concentration. This yielded 160 measured soot oxidation rates spanning seven orders of magnitude. Optimized soot oxidation rate expressions for OH and O_2 are developed here by maximizing the coefficient of determination between measured and modeled oxidation rates. Oxidation of soot by OH is found to have a negligible activation energy and a collision efficiency of 0.10. The activation energy for O_2 oxidation of soot is 195 kj/mol, which is higher than previous models. The new expressions for OH and O_2 match the measurements with a regression coefficient of 0.98, compared to 0.79 for the most widely used models. The optimized models indicate that soot oxidation in flames by OH generally dominates over that by O_2.
机译:火焰中的两个主要烟灰氧化剂是羟基自由基(OH)和分子氧(O_2)。这些氧化剂存在许多烟灰氧化率表达,但它们具有相当大的差异并且没有得到充分的验证。为了解决这一问题,研究了在扩散火焰,预混火焰,热重分析仪和流量反应器中发表的12种公开实验研究。这些都是在离散位置处测量以下所有量的已知研究:烟灰氧化速率,温度,OH浓度(如果非零)和O_2浓度。这产生了160个测量的烟灰氧化率,跨越七个数量级。通过最大化测量和建模的氧化速率之间的测定系数来开发OH和O_2的优化烟灰氧化速率表达。发现OH的氧化OH被发现具有可忽略的激活能量和碰撞效率为0.10。 O_2氧化烟灰的激活能量为195 kJ / mol,其高于以前的模型。 OH和O_2的新表达式与回归系数的测量值为0.98,而最广泛使用的模型为0.79。优化的模型表明oOD的火焰中的烟灰氧化通常通过O_2占主导地位。

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