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Reduction of PAH and soot precursors in benzene flames by addition of ethanol

机译:通过添加乙醇减少苯火焰中的PAH和烟灰前体

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A one-dimensional premixed flame model (PREMIX) and schemes resulting from the merging of validated kinetic schemes for the oxidation of the components of the present mixtures (benzene and ethanol) were used to investigate the effect of oxygenated additives on aromatic species, which are known to be soot precursors, in fuel-rich benzene combustion. The specific flames were low-pressure (45 mbar), laminar, premixed flames at an equivalence ratio of 2.0. The blended fuels were formed by incrementally adding 4% wt of oxygen (ethanol) to the neat benzene flame and by keeping the inert mole fraction (argon) and the equivalence ratio constants. Special emphasis was directed toward the causes for the concentration-dependent influence of the blends on the amount of polycyclic aromatic hydrocarbons (PAHs) formed. The effects of oxygenate addition to the benzene base flame were seen to result in interesting differences, especially regarding trends to form PAH. The modeling results indicated that the concentration of acetylene and propargyl radicals, the main PAH precursors, as well as the PAH amounts were lower in the flame of the ethanol-benzene fuel mixture than in the pure benzene flame and that all of the formed PAHs were issued from the phenyl radical. Finally, the modeling results provided evidence that the PAH reduction was a result of simply replacing "sooting" benzene with "nonsooting" ethanol without influencing the combustion chemistry of the benzene.
机译:使用一维预混火焰模型(PREMIX)和由本混合物(苯和乙醇)各组分氧化的经过验证的动力学方案合并得到的方案,以研究含氧添加剂对芳族化合物的影响。在富含燃料的苯燃烧中,已知为烟尘前体。具体的火焰是低压(45 mbar)层流预混火焰,当量比为2.0。混合燃料是通过向纯苯火焰中逐步添加4%wt的氧气(乙醇)并保持惰性摩尔分数(氩气)和当量比恒定而形成的。特别强调了共混物对形成的多环芳烃(PAHs)量的浓度依赖性影响的原因。可以看出,向苯基火焰中添加氧化剂会产生有趣的差异,尤其是在形成多环芳烃的趋势方面。建模结果表明,乙醇-苯燃料混合物火焰中的乙炔和炔丙基自由基的浓度,主要的PAH前体以及PAH的含量均低于纯苯火焰中的,所有形成的PAHs均为由苯基发出。最后,建模结果提供了证据,证明PAH降低是仅用“不吸油”乙醇代替“吸油”苯而不影响苯的燃烧化学的结果。

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