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The effect of hydrogen addition on flammability limit and NO_x emission in ultra-lean counterflow CH_4/air premixed flames

机译:氢添加对Ultra-Lean逆流CH_4 /空气预混火焰的燃烧极限和NO_X发射的影响

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The effect of hydrogen addition to ultra lean counterflow CH_4/air premixed flames on the extinction limits and the characteristics of NO_x emission was investigated by numerical simulation. Detailed chemistry and complex thermal and transport properties were employed. The results show that the addition of hydrogen can significantly enlarge the flammable region and extend the flammability limit to lower equivalence ratios. If the equivalence ratio is kept constant, the addition of hydrogen increases the emission of NO in a flame due to the enhancement in the rate of the NNH or N_2O intermediate NO formation routes. The addition of hydrogen causes a monotonic decrease in the formation of NO_2 and N_2O, except flames near the extinction limits, where the emission of NO_2 and N_2O first increases, and then decreases with the increase in the fraction of hydrogen. Overall, hydrogen enrichment technology allows stable combustion under ultra lean conditions, resulting in significant CO_2 and NO emission reduction.
机译:用数值模拟研究了对超贫逆逆流CH_4 /空气预混火焰对消光限制的影响以及NO_X排放的特征。使用详细的化学和复杂的热和传输性能。结果表明,添加氢气可以显着扩大易燃区域,并将可燃性限制延伸至较低的等效比率。如果等效率保持恒定,则由于NNH或N_2O中间的NNH或N_2O中间体的速率的增强,加入氢气增加了烟火中的发射。除了消光限制附近的火焰之外,氢气的形成在形成NO_2和N_2O的形成中,氢气引起单调降低,其中NO_2和N_2O的发射首先增加,然后随着氢的级分的增加而降低。总体而言,氢气浓缩技术允许在超贫条件下稳定燃烧,导致显着的CO_2并且没有减少减少。

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