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Bioethanol/gasoline blends for fuelling conventional and hybrid scooter. Regulated and unregulated exhaust emissions

机译:生物乙醇/汽油混合物,可为常规和混合动力摩托车加油。受管制和不受管制的废气排放

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The aim of this experimental activity was to evaluate the influence of ethanol fuel on the pollutant emissions measured at the exhaust of a conventional and a hybrid scooter. Both scooters are 4-stroke, 125 cm(3) of engine capacity and Euro 3 compliant. They were tested on chassis dynamometer for measuring gaseous emissions of CO, HC, NOx, CO2 and some toxic micro organic pollutants, such as benzene, 1,3-butadiene, formaldehyde and acetaldehyde. The fuel consumption was estimated throughout a carbon balance on the exhaust species. Moreover, total particles number with diameter between 20 nm up to 1 mu m was measured. Worldwide and European test cycles were carried out with both scooters fuelled with gasoline and ethanol/gasoline blends (10/90, 20/80 and 30/70% vol). According to the experimental results relative to both scooter technologies, the addiction of ethanol in gasoline reduces CO and particles number emissions. The combustion of conventional scooter becomes unstable when a percentage of 30%v of bioethanol is fed; as consequence a strong increasing of hydrocarbon is monitored, including carcinogenic species. The negative effects of ethanol fuel are related to the increasing of fuel consumption due to the less carbon content for volume unit and to the increasing of formaldehyde and acetaldehyde due to the higher oxygen availability. Almost 70% of Ozone Formation Potential is covered by alkenes and aromatics. (C) 2016 Elsevier Ltd. All rights reserved.
机译:该实验活动的目的是评估乙醇燃料对常规和混合动力摩托车尾气中污染物排放的影响。两个踏板车均为4冲程,发动机容量为125 cm(3),并符合Euro 3。它们在底盘测功机上进行了测试,以测量CO,HC,NOx,CO2和某些有毒的微量有机污染物(如苯,1,3-丁二烯,甲醛和乙醛)的气体排放。在废气种类的碳平衡中,估计了燃油消耗。此外,测量了直径在20nm至1μm之间的总颗粒数。在全世界和欧洲的测试周期中,踏板车均以汽油和乙醇/汽油混合物(体积分数为10 / 90、20 / 80和30/70%)为燃料进行了测试。根据相对于两种踏板车技术的实验结果,汽油中乙醇的成瘾作用降低了CO和颗粒物的排放。当进料百分比为30%v的生物乙醇时,常规踏板车的燃烧变得不稳定。结果,监测到包括致癌物质在内的碳氢化合物的大量增加。乙醇燃料的不利影响与燃料消耗增加有关,这是因为单位体积的碳含量较少,以及由于氧气的利用率较高而导致甲醛和乙醛增加。几乎70%的臭氧形成潜力都被烯烃和芳烃所覆盖。 (C)2016 Elsevier Ltd.保留所有权利。

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