Comparative nanostructure analysis of gasoline turbocharged direct injection and diesel soot-in-oil with carbon black

烟灰 炭黑 材料科学 柴油 无定形碳 柴油机排气 分析化学(期刊) 无定形固体 汽油 碳纤维 燃烧 化学工程 复合材料 化学 色谱法 有机化学 复合数 天然橡胶 工程类
作者
Sebastian A. Pfau,A. La Rocca,Ephraim Haffner-Staton,Graham A. Rance,Michael W. Fay,R.J. Brough,S. Malizia
出处
期刊:Carbon [Elsevier BV]
卷期号:139: 342-352 被引量:78
标识
DOI:10.1016/j.carbon.2018.06.050
摘要

Two gasoline turbocharged direct injection (GTDI) and two diesel soot-in-oil samples were compared with one flame-generated soot sample. High resolution transmission electron microscopy imaging was employed for the initial qualitative assessment of the soot morphology. Carbon black and diesel soot both exhibit core-shell structures, comprising an amorphous core surrounded by graphene layers; only diesel soot has particles with multiple cores. In addition to such particles, GTDI soot also exhibits entirely amorphous structures, of which some contain crystalline particles only a few nanometers in diameter. Subsequent quantification of the nanostructure by fringe analysis indicates differences between the samples in terms of length, tortuosity, and separation of the graphitic fringes. The shortest fringes are exhibited by the GTDI samples, whilst the diesel soot and carbon black fringes are 9.7% and 15.1% longer, respectively. Fringe tortuosity is similar across the internal combustion engine samples, but lower for the carbon black sample. In contrast, fringe separation varies continuously among the samples. Raman spectroscopy further confirms the observed differences. The GTDI soot samples contain the highest fraction of amorphous carbon and defective graphitic structures, followed by diesel soot and carbon black respectively. The A D1 :A G ratios correlate linearly with both the fringe length and fringe separation.
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