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Effect of methane addition to ethylene on the morphology and size distribution of soot in a laminar co-flow diffusion flame

机译:乙烯中甲烷的添加对层流同流扩散火焰中烟尘形态和尺寸分布的影响

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The characteristics of soot in the diffusion flames of methane and ethylene under different oxygen concentrations and the influence of mixing methane in ethylene on soot generation were investigated using thermophoretic sampling and subsequent transmission electron microscopy image analysis. The process of soot particle nucleation, surface growth, coagulation, agglomeration and oxidation along the flame axis was analyzed. The variation of soot particle size distribution and aggregate characteristics at different heights along the centerline of the flame at different oxygen concentrations and methane doping ratios were obtained. Results show that the various stages of soot generation in methane flame obviously lags behind the ethylene flame at different oxygen concentrations, and increasing the oxygen concentration makes the various stages of soot formation in the flame advance. A 10% methane doping can promote soot generation at low flame locations. Increasing the doping amount to 30%, the generation of soot can be promoted at high flame locations. The synergistic effect of soot formation in fuel combustion occurs in the above two cases. However, the synergistic effect of the fuel will disappear under high blending ratio conditions. The effect of methane-ethylene at high blend ratios is more like a neutralization effect. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用热泳取样和随后的透射电子显微镜图像分析,研究了在不同氧浓度下甲烷和乙烯的扩散火焰中的烟灰特征以及乙烯中的甲烷混合对烟灰生成的影响。分析了烟尘颗粒沿火焰轴的成核,表面生长,凝聚,团聚和氧化过程。在不同的氧气浓度和甲烷掺杂比下,获得了沿火焰中心线在不同高度的烟灰粒径分布和聚集体特性的变化。结果表明,在不同的氧气浓度下,甲烷火焰中烟灰生成的各个阶段明显滞后于乙烯火焰,并且增加氧气浓度会使火焰中烟灰形成的各个阶段前进。 10%的甲烷掺杂可以促进在低火焰位置产生烟灰。将掺杂量增加到30%,可以在高火焰位置促进烟灰的产生。在以上两种情况下,会形成烟尘在燃料燃烧中的协同作用。但是,在高混合比条件下,燃料的协同作用将消失。甲烷-乙烯在高混合比下的作用更像是中和作用。 (C)2018 Elsevier Ltd.保留所有权利。

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