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Numerical analysis of the effect of acetylene and benzene addition to low-pressure benzene-rich flat flames on polycyclic aromatic hydrocarbon formation

机译:低压富苯平焰中添加乙炔和苯对多环芳烃形成影响的数值分析

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摘要

A modification of the CHEMKIN II package has been proposed for modeling addition of an arbitrary species at an arbitrary temperature to an arbitrary distance from the burner along a flat flame. The modified program was applied to the problem of addition of acetylene or benzene to different positions of a 40-Torr, φ = 2.4 benzene/O_2/40%-N_2 premixed flame to reach final equivalence ratios of φ = 2.5 and 2.681. The results obtained showed that acetylene addition to early positions of the flame led to significant increase in pyrene production rates, but pyrene concentrations were lower in the flames with acetylene addition in both the φ = 2.5 and 2.681 cases. Addition of benzene to the flame did not alter pyrene production rates in either the φ = 2.5 or 2.681 cases; however, for φ = 2.5, pyrene concentrations increased with benzene addition, while for φ = 2.681, pyrene contents decreased in comparison to the correspondent flames with no addition. Acetylene addition led to a significant increase in pyrene production rates, but the pyrene levels dropped due to increase in the flow velocity. Pyrene production rates were not sensitive to benzene addition, but pyrene contents increased with benzene addition when the flow velocity decreased. These results show that PAH concentration changes accompanying species addition to flames should be interpreted carefully, because an increase or decrease in the content of a PAH species does not necessarily reflect an effect on its formation rate or mechanism.
机译:已经提出了对CHEMKIN II包装的一种改进,用于模拟在任意温度下沿平面火焰到燃烧器任意距离的任意物质的添加。将修改后的程序应用于将乙炔或苯添加到40-Torr,φ= 2.4苯/ O_2 / 40%-N_2预混火焰的不同位置以达到最终等效比φ= 2.5和2.681的问题。获得的结果表明,在火焰的早期位置添加乙炔会导致pyr的生产率显着提高,但是在φ= 2.5和2.681的情况下,添加乙炔时火焰中的pyr浓度较低。在φ= 2.5或2.681的情况下,向火焰中添加苯不会改变pyr的产生率。但是,对于φ= 2.5,pyr浓度随苯的添加而增加,而对于φ= 2.681,pyr含量与不添加苯的相应火焰相比降低。乙炔的添加导致pyr的生产率显着提高,但是the的水平由于流速的增加而下降。 production的生成速率对苯的添加不敏感,但是当流速降低时,contents的含量随苯的添加而增加。这些结果表明,应仔细解释伴随火焰添加的物种的PAH浓度变化,因为PAH物种含量的增加或减少不一定反映对其形成速率或机理的影响。

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