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Synergistic effect on soot formation in counterflow diffusion flames of ethylene-propane mixtures with benzene addition

机译:添加苯的乙烯-丙烷混合物逆流扩散火焰对烟灰形成的协同效应

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摘要

The characteristics of the formation of polycyclic aromatic hydrocarbon (PAH) and soot in counterflow diffusion flames of ethylene/propane mixtures have been investigated experimentally to identify the effect of fuel structure. The synergistic effect, that is, the enhancement of PAH and soot formation by the fuel mixing of eth-ylene and propane has been further analyzed to examine the suggested mechanisms based on the competition between PAH and soot growths through the H-abstraction-C_2H_2-addition (HACA) mechanism and the incipient ring formation through the propargyl recombination reaction. To mitigate the effect of incipient ring formation on the synergistic effect, a small amount of benzene was added to the fuel stream. Planar laser-induced incandescence and laser-induced fluorescence techniques were employed to measure relative soot volume fractions and PAH concentrations, respectively. Results showed that the synergistic effect on soot formation remained, even though the synergistic effects for relatively small aromatics mitigated with the benzene addition. Larger size PAHs have shown enhanced synergistic effects compared to smaller size PAHs regardless of benzene addition. These results implied that the role of propane mixing on the synergistic effect cannot be explained solely by the incipient ring formation via a propargyl recombination reaction; thus, it is suggested that the C_3 pathways could also contribute to the growth of PAH species.
机译:通过实验研究了乙烯/丙烷混合物的逆流扩散火焰中多环芳烃(PAH)和烟灰的形成特性,以确定燃料结构的影响。通过乙烯和丙烷的燃料混合,进一步分析了增效作用,即通过乙烯和丙烷的燃料混合提高了PAH和烟灰的形成,从而研究了通过H-abstraction-C_2H_2-加(HACA)机理和通过炔丙基重组反应形成初期环。为了减轻初始环形成对协同作用的影响,将少量苯添加到燃料流中。分别采用平面激光诱导的白炽灯和激光诱导荧光技术来测量相对烟so体积分数和PAH浓度。结果表明,即使通过添加苯减轻了相对较小的芳烃的协同作用,对烟灰形成的协同作用仍然存在。与较小尺寸的PAH相比,较大尺寸的PAH表现出增强的协同作用,而与苯的添加无关。这些结果暗示丙烷混合对协同作用的作用不能仅仅通过炔丙基重组反应形成初期环来解释。因此,建议C_3途径也可能有助于PAH物种的生长。

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