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Effect of fuel composition and engine operating conditions on polycyclic aromatic hydrocarbon emissions from a fleet of heavy-duty diesel buses

机译:燃料成分和发动机工况对重型柴油客车车队多环芳烃排放的影响

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Emissions from 12 in-service heavy-duty buses powered by low- (LSD) and ultra low-sulfur (ULSD) diesel fuels were measured with the aim to characterize the profile of polycyclic aromatic hydrocarbons (PAHs) in the exhaust and to identify the effect of different types of fuels on the emissions. To mimic on-road conditions as much as possible, sampling was conducted on a chassis dynamometer at four driving modes, namely: mode 7 or idle (0% power), mode 11 (25% power), mode 10 (50% power) and mode 8 (100% power). Irrespective of the type of fuel used, naphthalene, acenaphthene, acenaphthylene, anthracene, phenanthrene, fluorene, fluoranthene and pyrene were found to be the dominant PAHs in the exhaust emissions of the buses. However, the PAH composition in the exhausts of ULSD buses were up to 91 ± 6% less than those in the LSD buses. In particular, three- and four-ringed PAHs were more abundant in the later than in the former. Lowering of fuel sulfur content not only reduced PAH emission, but also decreased the benzo(a)pyrene equivalent (BAP_(eq)) and hence the toxicity of the exhaust. Result from multicriteria decision-making and multivariate data analysis techniques showed that the use of ULSD afforded cleaner exhaust compositions and emissions with characteristics that are distinct from those obtained by the use of LSD.
机译:测量了使用低(LSD)和超低硫(ULSD)柴油驱动的12辆在役重型巴士的排放,目的是表征废气中多环芳烃(PAH)的特征,并确定不同类型的燃料对排放的影响。为了尽可能地模拟路况,在底盘测功机上以四种行驶模式进行了采样,即:模式7或怠速(功率为0%),模式11(功率为25%),模式10(功率为50%)。和模式8(100%功率)。无论使用哪种燃料,都发现萘、,、 ena,蒽,菲,芴,荧蒽和pyr是公交车废气排放中的主要多环芳烃。但是,ULSD巴士排气中的PAH成分比LSD巴士的PAH成分少91±6%。尤其是,三环和四环的PAH比前者更丰富。燃料硫含量的降低不仅减少了PAH的排放,而且降低了苯并(a)equivalent的当量(BAP_(eq)),从而降低了排气的毒性。多标准决策和多变量数据分析技术的结果表明,使用ULSD可提供更清洁的排气成分和排放物,其特性与使用LSD所获得的特性和特征截然不同。

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