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首页> 外文期刊>Atmospheric environment >Hydrocarbon emission fingerprints from contemporary vehicle/engine technologies with conventional and new fuels
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Hydrocarbon emission fingerprints from contemporary vehicle/engine technologies with conventional and new fuels

机译:来自现代车辆/发动机技术的传统和新燃料的碳氢化合物排放指纹

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摘要

The present paper presents results from the analysis of 29 individual C_2-C_9 hydrocarbons (HCs) specified in the European Commission Ozone Directive. The 29 HCs are measured in exhaust from common, contemporary vehicle/engine/fuel technologies for which very little or no data is available in the literature. The obtained HC emission fingerprints are compared with fingerprints deriving from technologies that are being phased out in Europe. Based on the total of 138 emission tests, thirteen type-specific fingerprints are extracted (Mean ± SD percentage contributions from individual HCs to the total mass of the 29 HCs), essential for receptor modelling source apportionment. The different types represent exhaust from Euro3 and Euro4 light-duty (LD) diesel and petrol-vehicles, Euro3 heavy-duty (HD) diesel exhaust, and exhaust from 2-stroke preEuro, Euro1 and Euro2 mopeds. The fuels comprise liquefied petroleum gas, petrol/ethanol blends (0-85% ethanol), and mineral diesel in various blends (0-100%) with fatty acid methyl esters, rapeseed methyl esters palm oil methyl esters, soybean oil methyl or sunflower oil methyl esters. Type-specific tracer compounds (markers) are identified for the various vehicle/engine/fuel technologies.rnAn important finding is an insignificant effect on the HC fingerprints of varying the test driving cycle, indicating that combining HC fingerprints from different emission studies for receptor modelling purposes would be a robust approach.rnThe obtained results are discussed in the context of atmospheric ozone formation and health implications from emissions (mg km~(-1) for LD and mopeds and mg kW h~(-1) for HD, all normalised to fuel consumption: mg dm~(-3) fuel) of the harmful HCs, benzene and 1,3-butadiene.rnAnother important finding is a strong linear correlation of the regulated "total" hydrocarbon emissions (tot-HC) with the ozone formation potential of the 29 HCs (ΣPO_3 = (1.66 ± 0.04) × tot-RH; r~2 = 0.93). Tot-HC is routinely monitored in emission control laboratories, whereas C_2-C_9 are not. The revealed strong correlations broadens the usability of data from vehicle emission control laboratories and facilitates the comparison of the ozone formation potential of HCs in exhaust from of old and new vehicle/engine/fuel technologies.
机译:本文介绍了对欧洲委员会臭氧指令中指定的29种C_2-C_9碳氢化合物(HCs)的分析结果。对这29种HC进行了测量,这些排放来自当代的常见车辆/发动机/燃料技术,但文献中很少或没有数据。将获得的HC排放指纹与源自欧洲逐步淘汰的技术的指纹进行比较。基于138个排放测试的总数,提取了13种类型特定的指纹(单个HC对29种HC的总质量的平均值±SD百分比贡献),这对于受体建模源分配至关重要。不同类型分别表示Euro3和Euro4轻型(LD)柴油和汽油车辆的废气,Euro3重型(HD)柴油废气以及2冲程preEuro,Euro1和Euro2轻便摩托车的废气。燃料包括液化石油气,汽油/乙醇混合物(0-85%乙醇)和矿物柴油(各种混合物(0-100%))与脂肪酸甲酯,菜籽甲酯,棕榈油甲酯,大豆油甲酯或向日葵油油甲酯。针对各种车辆/发动机/燃料技术鉴定了特定类型的示踪剂化合物(标志物)。rn一个重要发现是,在不同的测试驾驶循环中,它们对HC指纹的影响微不足道,表明将来自不同排放研究的HC指纹结合起来用于受体建模在大气臭氧形成和排放对健康的影响(LD和轻便摩托车的mg km〜(-1)和HD的mg kW h〜(-1),均已归一化)的背景下讨论了获得的结果。燃料消耗量:有害HCs,苯和1,3-丁二烯的mg dm〜(-3)燃料。rn另一个重要的发现是受控的“总”碳氢化合物排放量(tot-HC)与臭氧之间存在很强的线性关系29个HC的形成势(ΣPO_3=(1.66±0.04)×tot-RH; r〜2 = 0.93)。在排放控制实验室中对Tot-HC进行常规监测,而对C_2-C_9则不进行监测。揭示的强相关性拓宽了车辆排放控制实验室数据的可用性,并有助于比较旧的和新的车辆/发动机/燃料技术的废气中的HCs臭氧形成潜力。

著录项

  • 来源
    《Atmospheric environment》 |2010年第18期|P.2167-2175|共9页
  • 作者单位

    European Commission Joint Research Centre Ispra, Institute for Environment and Sustainability, Transport and Mr Quality Unit, Via E. Fermi, 2749,I-21027 Ispra (VA), Italy European Research Council Executive Agency, COV2 21/104, Rue de la Loi 200, BE-1049 Brussels, Belgium;

    rnEuropean Commission Joint Research Centre Ispra, Institute for Environment and Sustainability, Transport and Mr Quality Unit, Via E. Fermi, 2749,I-21027 Ispra (VA), Italy;

    European Commission Joint Research Centre Ispra, Institute for Environment and Sustainability, Transport and Mr Quality Unit, Via E. Fermi, 2749,I-21027 Ispra (VA), Italy;

    European Commission Joint Research Centre Ispra, Institute for Environment and Sustainability, Transport and Mr Quality Unit, Via E. Fermi, 2749,I-21027 Ispra (VA), Italy;

    European Commission Joint Research Centre Ispra, Institute for Environment and Sustainability, Transport and Mr Quality Unit, Via E. Fermi, 2749,I-21027 Ispra (VA), Italy;

    European Commission Joint Research Centre Ispra, Institute for Environment and Sustainability, Transport and Mr Quality Unit, Via E. Fermi, 2749,I-21027 Ispra (VA), Italy;

    European Commission Joint Research Centre Ispra, Institute for Environment and Sustainability, Transport and Mr Quality Unit, Via E. Fermi, 2749,I-21027 Ispra (VA), Italy;

    European Commission Joint Research Centre Ispra, Institute for Health and Consumer Protection, Chemical Assessment and Testing Unit, Via E. Fermi, 2749, I-21027 Ispra (VA), Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    petrol; diesel; ethanol; biofuel; LPC; C_2-C_9 VOC;

    机译:汽油;柴油机;乙醇生物燃料LPC;C_2-C_9 VOC;

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