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Components of Particle Emissions from Light-Duty Spark-Ignition Vehicles with Varying Aromatic Content and Octane Rating in Gasoline

机译:汽油中芳香含量和辛烷值变化的轻型火花点火汽车的颗粒排放成分

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摘要

Typical gasoline consists of varying concentrations of aromatic hydrocarbons and octane ratings. However, their impacts on particulate matter (PM) such as black carbon (BC) and water-soluble and insoluble particle compositions are not well-defined. This study tests seven 2012 model year vehicles, which include one port fuel injection (PFI) configured hybrid vehicle, one PFI vehicle, and six gasoline direct injection (GDI) vehicles. Each vehicle was driven on the Unified transient testing cycle (UC) using four different fuels. Three fuels had a constant octane rating of 87 with varied aromatic concentrations at 15%, 25%, and 35%. A fourth fuel with higher octane rating, 91, contained 35% aromatics. BC, PM mass, surface tension, and water-soluble organic mass (WSOM) fractions were measured. The water-insoluble mass (WIM) fraction of the vehicle emissions was estimated. Increasing fuel aromatic content increases BC emission factors (EFs) of transient cycles. BC concentrations were higher for the GDI vehicles man the PFI and hybrid vehicles, suggesting a potential climate impact for increased GDI vehicle production. Vehicle steady-state testing showed that the hygroscopicity of PM emissions at high speeds (70 mph; κ > 1) are much larger than emissions at low speeds (30 mph; κ < 0.1). Iso-paramn content in the fuels was correlated to the decrease in WSOM emissions. Both aromatic content and vehicle speed increase the amount of hygroscopic material found in particle emissions.
机译:典型的汽油由不同浓度的芳烃和辛烷值组成。但是,它们对诸如黑碳(BC)等颗粒物(PM)以及水溶性和不溶性颗粒成分的影响尚不明确。这项研究测试了7辆2012年度车型,其中包括1辆配置了港口燃油喷射(PFI)的混合动力汽车,1辆PFI车辆和6辆汽油直喷(GDI)车辆。每辆车都使用四种不同的燃料在统一瞬态测试循环(UC)上行驶。三种燃料的辛烷值恒定不变为87,芳烃浓度分别为15%,25%和35%。具有更高辛烷值的第四种燃料91包含35%的芳烃。测量了BC,PM质量,表面张力和水溶性有机质量(WSOM)分数。估算了车辆排放物中的水不溶物质量(WIM)比例。燃料芳烃含量的增加会增加瞬态循环的BC排放因子(EFs)。 GDI车辆(PFI和混合动力车辆)的BC浓度较高,表明对GDI车辆产量增加的潜在气候影响。车辆稳态测试表明,高速(70 mph;κ> 1)时PM的吸湿性比低速(30 mph;κ<0.1)时的PM的吸湿性大。燃料中的异paramn含量与WSOM排放量减少相关。芳烃含量和车速都增加了颗粒物排放中发现的吸湿性物质的量。

著录项

  • 来源
    《Environmental Science & Technology》 |2015年第17期|10682-10691|共10页
  • 作者单位

    Department of Chemical and Environmental Engineering, University of California- Riverside, 900 University Ave., Riverside 92507, California, United States,College of Engineering- Center for Environmental Research and Technology, University of California- Riverside, 1084 Columbia Ave., Riverside 92521, California, United States;

    Department of Chemical and Environmental Engineering, University of California- Riverside, 900 University Ave., Riverside 92507, California, United States,College of Engineering- Center for Environmental Research and Technology, University of California- Riverside, 1084 Columbia Ave., Riverside 92521, California, United States;

    Department of Chemical and Environmental Engineering, University of California- Riverside, 900 University Ave., Riverside 92507, California, United States,College of Engineering- Center for Environmental Research and Technology, University of California- Riverside, 1084 Columbia Ave., Riverside 92521, California, United States;

    Department of Chemical and Environmental Engineering, University of California- Riverside, 900 University Ave., Riverside 92507, California, United States,College of Engineering- Center for Environmental Research and Technology, University of California- Riverside, 1084 Columbia Ave., Riverside 92521, California, United States;

    Department of Chemical and Environmental Engineering, University of California- Riverside, 900 University Ave., Riverside 92507, California, United States,College of Engineering- Center for Environmental Research and Technology, University of California- Riverside, 1084 Columbia Ave., Riverside 92521, California, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:59:48

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