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Effect of Fuel Aromatics on In-Flame Diesel Soot Nanostructure via HRTEM

机译:燃料芳烃对通过HRTEM的火焰柴油烟灰纳米结构的影响

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In order to examine the effect of fuel aromatics on soot processes in diesel flame, nanostructure and morphology of soot particles directly sampled in a diesel flame were investigated via High-Resolution Transmission Electron Microscopy (HRTEM). Three test fuels with different aromatic contents, aromatic-free Fischer-Tropsch Diesel (FTD), naphthalene-added (65,000ppm) FTD and conventional JIS#2 diesel fuels were used. TEM grids were directly exposed to single-shot diesel flames in a constant volume combustion chamber under a diesel-like condition with EGR (1000K, 2.7MPa, 15%O_2) to thermophoretically sample soot particles at different axial locations from 40 to 120mm from nozzle. The soot nanostructure such as length, tortuosity and separation of lattice fringes in primary particles and morphology such as primary particle diameter and aggregate gyration radius were analyzed and compared among different fuels and in-flame locations. In contrast to notable variations of the morphology, the obtained fringe length and tortuosity were almost constant, regardless of the fuel aromatic contents and the in-flame locations. The fringe separation slightly decreased towards downstream in the flame, likely due to annealing of carbon graphenes in increasing temperature confirmed by in-flame thermocouple measurements. The variations in fringe separation did not show significant difference with fuel aromatic contents. On the other hand, the in-cylinder to exhaust variations of soot nanostructure from engine experiments in a literature were found to be significantly larger than the in-flame variations obtained in the present study suggesting the significance of late-cycle in-cylinder soot oxidation, although the difference in the experimental conditions should be kept in mind.
机译:为了检查燃料芳烃对柴油火焰中烟灰过程的影响,通过高分辨率透射电子显微镜(HRTEM)研究了在柴油机中直接采样的烟灰颗粒的纳米结构和形态。三种试验燃料具有不同的芳族含量,使用芳族Fischer-Tropsch柴油(FTD),使用萘添加(65,000ppm)FTD和常规JIS#2柴油燃料。在柴油样条件下直接暴露在恒定体积燃烧室中的单次柴油火焰,其柴油样条件,egr(1000k,2.7mpa,15%O_2),从喷嘴40至120mm的不同轴向位置处的热渗透地样液。 。分析了烟灰纳米结构,例如初级颗粒和形态的晶格状,诸如原发性粒径和骨料循环的形态的晶格状,并且在不同的燃料和火焰位置进行比较。与形态的显着变化相反,无论燃料芳族内容物和在火焰位置,所获得的边缘长度和曲折性几乎是恒定的。边缘分离略微降低了火焰的下游,可能是由于碳重塑在升高温度下通过内燃热测量的温度的退火。边缘分离的变化与燃料芳族含量没有显着差异。另一方面,发现从发动机实验中的烟灰纳米结构的排气变化被发现显着大于本研究中获得的火焰变化,这表明圆柱溶液溶液的显着性,尽管应该牢记实验条件的差异。

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