Metrology Research Centre, National Research Council Canada, Ottawa K1A 0R6, Canada.
Energy, Mining and Environment Research Centre, National Research Council Canada, Ottawa K1A 0R6, Canada.
Environ Sci Technol. 2021 May 18;55(10):6584-6593. doi: 10.1021/acs.est.0c07130. Epub 2021 Apr 27.
Soot is typically the dominant component of the nonvolatile particles emitted from internal combustion engines. Although soot is primarily composed of carbon, its chemistry, toxicity, and oxidation rates may be strongly influenced by internally mixed inorganic metal compounds (ash). Here, we describe the detailed microstructure of ash internally mixed with soot from four marine engines and one aviation engine. The engines were operated on different fuels and lubrication oils; the fuels included four residual fuels and five distillate fuels such as diesel, natural gas, and Jet A-1. Using annular-dark-field scanning transmission electron microscopy (ADF-STEM), we observed that ash may occur either as distinct nodules on the soot particle (decorated) or as continuous streaks (painted). Both structures may exist within a single particle. Decorated soot was observed for both distillate and residual fuels and contained elements associated with either the fuel (V, Ni, Fe, S) or with the lubrication oil (Zn, Ca, P). Painted soot was observed only for residual-fuel soot, and only contained elements associated with the fuel. Additional composition measurements by inductively coupled plasma mass spectrometry (ICP-MS) of filter samples indicated that the internal mixing trends of ash with soot were consistent with the overall ash-to-carbon ratio of the sampled combustion aerosols. Painted soot may form when molten ash coagulates with or condenses onto soot within engines.
烟尘通常是内燃机排放的非挥发性颗粒中占主导地位的成分。尽管烟尘主要由碳组成,但它的化学性质、毒性和氧化速率可能会受到内部混合的无机金属化合物(灰分)的强烈影响。在这里,我们描述了来自四个船用发动机和一个航空发动机的与烟尘内部混合的灰分的详细微观结构。这些发动机使用了不同的燃料和润滑油;燃料包括四种残渣燃料和五种馏分燃料,如柴油、天然气和 Jet A-1。使用环形暗场扫描透射电子显微镜(ADF-STEM),我们观察到灰分可能以烟尘颗粒上的明显结节(装饰)或连续条纹(涂画)的形式存在。这两种结构都可能存在于单个颗粒中。在馏分燃料和残渣燃料中都观察到了装饰性烟尘,其中包含与燃料(V、Ni、Fe、S)或与润滑油(Zn、Ca、P)有关的元素。仅在残渣燃料的烟尘中观察到涂画的烟尘,其中只包含与燃料有关的元素。通过对过滤器样品进行电感耦合等离子体质谱(ICP-MS)的附加成分测量表明,灰分与烟尘的内部混合趋势与所采样的燃烧气溶胶的总灰分与碳比一致。当熔融灰分在发动机内与烟尘凝聚或凝结时,可能会形成涂画的烟尘。