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首页> 外文期刊>Fuel >Regulated And Unregulated Emissions Of A Light Duty Vehicle Operated On Diesel/palm-based Methyl Ester Blends Over Nedc And A Non-legislated Driving Cycle
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Regulated And Unregulated Emissions Of A Light Duty Vehicle Operated On Diesel/palm-based Methyl Ester Blends Over Nedc And A Non-legislated Driving Cycle

机译:柴油/棕榈基甲基酯混合物上的轻型车辆在Nedc上的有管制和无管制排放以及非法规性驾驶循环

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In this study, regulated, unregulated exhaust emissions and fuel consumption with diesel fuel and palm-based biodiesel blends at proportions of 5%, 20% and 40% (v/v) have been investigated. A Euro 3 compliant light duty vehicle was tested on a chassis dynamometer over the new European driving cycle (NEDC) and the non-legislated Athens driving cycle (ADC). The experimental results showed that the addition of biodiesel increased NO_x emissions. This increase was more significant with the use of B20 over both cycles (13.7% and 23.2% over the NEDC and ADC, respectively). Biodiesel addition resulted to increases in CO emissions with the highest increase being 11.78% for B20 over NEDC and 11.62% for B40 over ADC. HC emissions increased with biodiesel over the NEDC, while over the ADC the addition of biodiesel led to reductions with the highest being with the use of B40 (about 26.47%). The same observation holds for PM emissions. Over the ADC the most beneficial reduction was in the order of 50% for the B40. CO_2 emissions and fuel consumption followed similar patterns. B20 led to increases up to 6.16% and 2.94% in fuel consumption over NEDC and ADC, respectively. Some PAH compounds demonstrated an increase with biodiesel, while nitro-PAHs decreased with most of them being almost undetectable. Most carbonyl emissions decreased with biodiesel.
机译:在这项研究中,对比例为5%,20%和40%(v / v)的柴油和棕榈基生物柴油混合物的受控,不受控废气排放和燃料消耗进行了研究。在新的欧洲行驶周期(NEDC)和非立法的雅典行驶周期(ADC)的底盘测功机上对符合Euro 3要求的轻型车辆进行了测试。实验结果表明,添加生物柴油会增加NO_x的排放量。在两个周期内使用B20时,这种增加更为显着(分别比NEDC和ADC分别高出13.7%和23.2%)。生物柴油的添加导致CO排放量的增加,最高的增加是B20比NEDC高11.78%,B40比ADC高11.62%。与NEDC相比,生物柴油的HC排放量增加,而与ADC相比,生物柴油的增加导致减少量最多,其中B40的使用最高(约26.47%)。对于PM排放也有相同的观察结果。与ADC相比,B40的最有利的降低约为50%。 CO_2排放和燃料消耗遵循相似的模式。 B20导致燃油消耗分别比NEDC和ADC高出6.16%和2.94%。一些PAH化合物在生物柴油中表现出增加,而硝基PAHs在下降,其中大多数几乎无法检测到。大多数羰基化合物的排放随着生物柴油的减少而降低。

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