Electrically heated catalyst enabling pollutants reduction in hybrid vehicles fueled with ethanol

IF 2.2 4区 工程技术 Q2 ENGINEERING, MECHANICAL
Frederico Falcão Weissinger, Caio Henrique Rufino, Alexander Peñaranda Mendoza, André Luiz Martelli, Eugênio Coelho, Vincent Bigliardi, P. Teixeira Lacava
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Abstract

Plug-in hybrid electric vehicles (PHEV) have the potential of combining the benefits of a renewable electric mix with biofuels. More recently, PHEV have been designed to be equipped with a small combustion engine known as range extender (RE), thus allowing an improvement in vehicle’s range while converting fuel energy through a highly efficient path. Despite being a convenient strategy for decarbonizing light vehicles, the intermittent operation of the engine may create issues regarding the catalytic conversion of pollutants, yielding an increase in local harmful emissions. This drawback may be intensified depending on the used fuel. Hydrous ethanol is a promising alternative for gasoline and is already available in some countries, such as Brazil. However, ethanol has a great enthalpy of vaporization and it results in a charge cooling, affecting the catalyst warm-up and making the intermittent operation with ethanol more challenging. Hence, this study was motivated by the need of improving the catalytic efficiency of flexfuel RE operating with both gasoline and hydrous ethanol. Thus, a calibration was firstly performed to shorten the warm-up phase with ethanol. Then, an electrical heater was employed for accelerated catalyst heating, further improving emissions from ethanol operation, aiming at attaining future emissions regulations. Experimental tests were conducted in a vehicle under FTP72 cycle using a chassis dynamometer. The calibration adjustments resulted in a warm-up phase for ethanol <10 s longer than that for gasoline. The stable operation phase resulted in similar emissions for both fuels. On the cycle average, a reduction in CO for ethanol was observed, and although the methane and NOx emissions were slightly increased due to colder catalyst operation, significant improvements were obtained on a well-to-wheel (WTW) analysis. The use of an electrically heated catalyst (EHC) improved the emissions during the warm-up phase, significantly reducing the emission of NOx and non-methane organic compounds.
电加热催化剂可减少以乙醇为燃料的混合动力汽车的污染物排放量
插电式混合动力电动汽车(PHEV)具有将可再生电力组合与生物燃料相结合的潜力。最近,PHEV 在设计上配备了被称为增程器(RE)的小型内燃机,从而在通过高效路径转换燃料能量的同时,提高了车辆的续航里程。尽管这是实现轻型车辆脱碳的一种便捷策略,但发动机的间歇性运行可能会造成污染物催化转化方面的问题,从而增加当地的有害气体排放。使用的燃料不同,这一缺点也会加剧。含水乙醇是一种很有前途的汽油替代品,在巴西等一些国家已经可以使用。然而,乙醇的汽化焓很高,会导致装料冷却,影响催化剂预热,使乙醇的间歇运行更具挑战性。因此,本研究的动机是提高使用汽油和含水乙醇的柔性燃料 RE 的催化效率。因此,首先进行了校准,以缩短乙醇的预热阶段。然后,采用电加热器加速催化剂加热,进一步改善乙醇运行时的排放,以达到未来排放法规的要求。使用底盘测功机对 FTP72 循环下的车辆进行了实验测试。通过校准调整,乙醇的预热阶段比汽油长 10 秒。在稳定运行阶段,两种燃料的排放量相似。从循环平均值来看,乙醇的一氧化碳排放量有所减少,虽然甲烷和氮氧化物排放量因催化剂低温运行而略有增加,但在从井到车轮(WTW)的分析中却得到了显著改善。电加热催化剂(EHC)的使用改善了预热阶段的排放,显著减少了氮氧化物和非甲烷有机化合物的排放。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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