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The fate of metal (Fe) during diesel combustion: Morphology, chemistry, and formation pathways of nanoparticles

机译:柴油燃烧过程中金属(Fe)的命运:纳米粒子的形态,化学和形成途径

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This report describes an investigation in which we used iron-doped diesel fuel to generate metal-bearing diesel particles and a subsequent analysis of the particles using transmission electron microscopy (TEM) and energy-dispersive spectroscopy (EDS). For this study, DPM was generated by a 1.5-L diesel engine and the fuel was doped with ferrocene to enhance the level of iron in the system. The exhaust particles were collected on TEM grids and analyzed using the Philips CM12 TEM/EDS instrument. Results show that when the iron-to-carbon (soot) ratio (Fe/C) in the engine is low, the exhaust particles have morphologies similar to those for the undoped case, but at a threshold Fe/C value of 0.013 (for this engine), homogeneously nucleated metallic nanoparticles are formed and begin agglomerating. The number and size of these nanoparticles increase with level of doping. Metal-bearing particles that span a wider size range are also formed. Agglomeration of metallic and carbon particles is observed in two distinct modes: attachment of iron primary particles (5-10 nm in diameter) to carbon agglomerates, and coagulation of iron agglomerates (20-200 nm in diameter) with carbon agglomerates. Results of this work imply that as new engine technologies reduce soot levels in the engine and/or levels of trace metals in the fuel are increased, the generation of metallic nanoparticles may ensue, creating a potential health concern.
机译:该报告描述了一项研究,在该研究中,我们使用铁掺杂柴油燃料生成了含金属的柴油颗粒,并随后使用透射电子显微镜(TEM)和能量分散光谱(EDS)对颗粒进行了分析。在本研究中,DPM由1.5升柴油发动机产生,燃料中掺杂了二茂铁以提高系统中的铁含量。将废气颗粒收集在TEM栅格上,并使用Philips CM12 TEM / EDS仪器进行分析。结果表明,当发动机中的铁碳比(Fe / C)低时,排气颗粒的形态类似于未掺杂情况下的形态,但Fe / C阈值为0.013(对于此引擎),形成均匀成核的金属纳米颗粒,并开始凝聚。这些纳米粒子的数量和尺寸随掺杂水平的增加而增加。还形成了跨较大尺寸范围的含金属颗粒。以两种不同的模式观察到金属和碳颗粒的团聚:铁初级颗粒(直径5-10 nm)附着到碳团块上,铁团块(直径20-200 nm)与碳团块凝聚。这项工作的结果表明,随着新的发动机技术降低发动机中烟灰水平和/或增加燃料中痕量金属的含量,可能会导致金属纳米颗粒的产生,从而引发潜在的健康问题。

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