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PROBE SAMPLING MEASUREMENTS OF NO IN CH_4+O_2+N_2 FLAMES DOPED WITH NH3

机译:掺有NH3的CH_4 + O_2 + N_2火焰中NO的探针测量

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Probe sampling measurements of the concentrations of nitric oxide in the post-flame zone of methane + oxygen + nitrogen flames doped with ammonia (0.5% of the fuel) are reported. The goal of this work was to analyze formation of NOx from fuel-N under well-controlled conditions. A Heat Flux method was used for stabilization of non-stretched flames on a perforated plate burner at atmospheric pressure. Dilution ratios of oxygen, O_2/(O_2 + N_2), were varied from 0.16 to 0.209. The concentrations of O_2, CO, CO_2 and NOx were measured by means of a non-cooled quartz probe at different axial distances from the burner. Measured burning velocities for these flames and concentrations of the major species (O_2, CO, CO_2) agree well with those of the flames of methane + oxygen + nitrogen within an experimental accuracy. The concentrations of NOx in the post-flame zone have a maximum near the stoichiometry. These measurements were compared to predictions of detailed kinetic models and to similar experiments in flames of methane + oxygen + carbon dioxide doped with ammonia. In (CH_4 + NH_3) + O_2 + CO_2 mixtures the modeling over-predicts the measured concentrations of NOx however the experimental trends are well reproduced. In (CH_4 + NH_3) + O_2 + N_2 mixtures the plots of the concentrations of NOx in the post-flame zone as a function of the stoichiometric ratio differ qualitatively from that in (CH_4 + NH_3) + O_2 + CO_2 mixtures. The modeling is in satisfactory agreement with the experiments in lean flames, while in rich flames it is not.
机译:报告了在甲烷+氧气+掺有氨(占燃料的0.5%)的氮气火焰的燃烧后区域中一氧化氮浓度的探针采样测量结果。这项工作的目的是分析在良好控制的条件下由燃料氮形成的NOx。热通量法用于在大气压力下稳定多孔板燃烧器上未拉伸的火焰。氧气的稀释比O_2 /(O_2 + N_2)从0.16到0.209。通过非冷却石英探针在距燃烧器不同轴向距离处测量O_2,CO,CO_2和NOx的浓度。在实验精度范围内,这些火焰的测量燃烧速度和主要物质(O_2,CO,CO_2)的浓度与甲烷+氧气+氮气的火焰的燃烧速度非常吻合。燃烧后区域中的NOx浓度在化学计量比附近达到最大值。将这些测量结果与详细动力学模型的预测结果进行了比较,并与甲烷+氧气+掺有氨的二氧化碳火焰中的类似实验进行了比较。在(CH_4 + NH_3)+ O_2 + CO_2混合物中,该模型过度预测了NOx的测量浓度,但是实验趋势得到了很好的再现。在(CH_4 + NH_3)+ O_2 + N_2混合物中,火焰后区NOx浓度随化学计量比变化的曲线与(CH_4 + NH_3)+ O_2 + CO_2混合物的曲线有质的差异。该模型与在稀薄火焰中的实验令人满意,而在浓密火焰中则不是。

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