首页> 外文期刊>Journal of Microscopy >Time-lapse visualization of shrinking soot in diesel particulate filter during active-regeneration using field emission scanning electron microscopy
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Time-lapse visualization of shrinking soot in diesel particulate filter during active-regeneration using field emission scanning electron microscopy

机译:使用现场发射扫描电子显微镜在有效再生期间柴油颗粒过滤器中烟灰烟灰的时间流逝可视化

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摘要

Regeneration of diesel particulate filter (DPF) is a complicated process due to its high operating temperature and associated oxidation of soot on the filter substrate. Several oxidation mechanisms of diesel soot have been proposed based on reaction kinetics, but more information about the oxidation phenomena is needed in a practical system, that is, soot oxidation on a DPF substrate. In this work, the DPF regeneration process was, for the first time, visualized at the particle scale ex-situ, in time-lapse series, using field emission scanning electron microscopy (FE-SEM). Time-lapse transformation of soot cake layer on a real DPF was followed from initiation through the complete regeneration process. In parallel, transformation of the soot primary particle diameter was directly measured using high-resolution transmission electron microscopy. FE-SEM visualization clearly showed shrinkage of the soot cake layer on the DPF wall as oxidation progressed. Furthermore, diameter distribution analysis revealed a trend of shrinkage of the nanoscale soot primary particles during oxidation, supporting the FE-SEM observations of the micron-scale shrinkage of the agglomerated soot cake layer. Fragmentation of the shrunken soot cake layer was also observed and is suspected to be a result of locally higher gas flow that depends on surface pore morphology of the filter substrate.
机译:柴油颗粒过滤器(DPF)的再生是一种复杂的过程,由于其高效温度和在过滤基板上的烟灰相关氧化。已经基于反应动力学提出了几种柴油烟灰的氧化机制,但在实际系统中需要有关氧化现象的更多信息,即DPF衬底上的烟灰氧化。在这项工作中,使用现场发射扫描电子显微镜(Fe-SEM),第一次首次在颗粒尺度逐级逐级测量系列中可视化DPF再生过程。通过完整的再生过程开始启动真实DPF上的烟灰蛋糕层的延时转换。平行地,使用高分辨率透射电子显微镜直接测量烟灰一次粒径的转化。 Fe-SEM可视化清楚地显示了DPF墙上的烟灰蛋糕层作为氧化进展的收缩。此外,直径分布分析显示氧化过程中纳米级烟灰初级颗粒的收缩趋势,支持凝聚烟灰滤饼层的微米级收缩的Fe-SEM观察。还观察到收缩烟灰饼层的碎片化,并怀疑是局部更高的气流的结果,其取决于过滤基板的表面孔形态。

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