4.8 Article

In-Cylinder Polycyclic Aromatic Hydrocarbons Sampled during Diesel Engine Combustion

期刊

ENVIRONMENTAL SCIENCE & TECHNOLOGY
卷 55, 期 1, 页码 571-580

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.0c05561

关键词

polycyclic aromatic hydrocarbon (PAH); fossil diesel combustion; particulates toxicity; PAH growth mechanisms; US-EPA priority PAH; gas phases PAH; soot-bound PAH; in-cylinder sampling; exhaust sampling

资金

  1. Nigerian Petroleum Technology Development Fund (PTDF) [PTDF/PR/PHD/OCC/011/15]
  2. UK Engineering and Physical Sciences Research Council (EPSRC) [EP/M007960/1]
  3. EPSRC [EP/M007960/1, EP/M009424/1] Funding Source: UKRI

向作者/读者索取更多资源

This study analyzed the formation and adsorption mechanisms of PAHs in the combustion process of diesel engines, finding that gas-phase PAHs were more abundant than soot-bound PAHs in the engine cylinder. Levels of PM and in-cylinder PAHs varied significantly during different combustion phases.
Polycyclic aromatic hydrocarbons (PAHs) are potentially carcinogenic pollutants emitted by diesel engines, both in the gas phase and adsorbed onto the surface of particulate matter (PM). There remains limited understanding of the complex and dynamic competing mechanisms of PAH formation, growth and oxidation in the gas phase, and their adsorption onto soot and how these processes impact on the abundance and composition of exhaust PAH. Therefore, this paper presents analysis of gas and particulate samples taken from the cylinder and exhaust of a diesel engine during combustion of fossil diesel with the 16 US-EPA priority PAH species identified and quantified. In-cylinder results showed that gas-phase PAHs were more abundant than soot-bound PAHs in the engine cylinder. The in-cylinder PAHs included 2- to 6-ring PAHs; however, 6-ring PAHs were not observed in the soot samples collected from the engine exhaust. Levels of both PM and the total in-cylinder PAHs decreased following a peak at 10 CAD ATDC but subsequently increased significantly during the late combustion phase. The B[a]P equivalence of PM in the engine cylinder increased during the period of early diffusion to late combustion phase, following an initial decrease during the period of premixed to early diffusion combustion.

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