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Investigation on the chemical effects of dimethyl ether and ethanol additions on PAH formation in laminar premixed ethylene flames

机译:层状预混乙烯火焰中二甲醚和乙醇添加对多环芳烃形成的化学作用研究

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This paper presents a comparative study focusing on the chemical effects of dimethyl ether (DME) and ethanol (EtOH) on PAH formation in fuel-rich laminar premixed ethylene flames using laser-induced fluorescence (LIF) diagnostic. To investigate the chemical effects, the equivalence ratios, dilution ratios, and temperature profiles were kept nearly constant while DME and EtOH were separately blended into the ethylene-base flame. The LIF testing data showed that the PAH formation was observably suppressed by the DME and EtOH additions, and DME was much more effective at suppressing the PAH formation than EtOH. To reveal the mechanism of the inhibiting effects of oxygenated fuels on PAH formation, chemical kinetic analysis was conducted. The model results captured the variation tendency of PAHs observed in experiments and indicated that the decreased concentration of carbon which was available to form the first aromatic ring (benzene) is the main reason for PAH reduction with EtOH and DME additions. Moreover, during the growth process from benzene to PAHs, the C2H2 addition reactions, which played a key role in the formation of new aromatic rings, were suppressed due to less C2H2 formed in EtOH and DME addition flames. There was less C2H2 produced from DME than that from EtOH, therefore, DME had a stronger inhibiting effect than EtOH on PAH formation in laminar premixed ethylene flames.
机译:本文提供了一项比较研究,重点是使用激光诱导荧光(LIF)诊断,研究二甲醚(DME)和乙醇(EtOH)对富含燃料的层流预混乙烯火焰中PAH形成的化学作用。为了研究化学作用,当将DME和EtOH分别掺入乙烯基火焰中时,当量比,稀释比和温度曲线几乎保持恒定。 LIF测试数据表明,通过添加DME和EtOH可明显抑制PAH的形成,并且DME比EtOH在抑制PAH形成方面更为有效。为了揭示含氧燃料抑制PAH形成的机理,进行了化学动力学分析。模型结果捕获了实验中观察到的PAHs的变化趋势,并表明可用于形成第一个芳环(苯)的碳浓度降低是添加EtOH和DME还原PAH的主要原因。此外,在从苯到PAHs的生长过程中,由于在EtOH和DME加成火焰中形成的C2H2较少,因此抑制了C2H2加成反应,该反应在形成新的芳族环中起关键作用。 DME产生的C2H2比EtOH产生的C2H2少,因此,在层状预混乙烯火焰中,DME对PAH形成的抑制作用强于EtOH。

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