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首页> 外文期刊>Biofuels, bioproducts & biorefining: Biofpr >Exhaust emissions and conversion efficiency of catalytic converter for an ethanol-fueled spark ignition engine
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Exhaust emissions and conversion efficiency of catalytic converter for an ethanol-fueled spark ignition engine

机译:乙醇燃料火花点火发动机催化转化器的废气排放及转化效率

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The effects of the air-fuel (A/F) ratio and spark timing on exhaust emissions and thermal efficiency were analyzed under part load conditions using an ethanol-fueled spark ignition (SI) engine. The conversion efficiency of exhaust emissions after the application of a three-way catalyst (TWC) to a gasoline engine was also evaluated. The cycle-resolved measurement of hydrocarbon (HC) and NOx emissions was attempted, to investigate phenomena in the exhaust port with a fast-response exhaust gas analyzer, and this was compared under different operating conditions. The different HC emission trends for the relative A/F ratios, as measured by a conventional exhaust gas analyzer and by the fast response analyzer, are thought to be due to differences in measuring location and the oxidation reaction of HC in the exhaust system. To optimize the ethanol A/F ratio to improve the conversion efficiency of TWC, it is thought that a slightly richer or leaner A/F ratio than stoichiometry would be better depending on the operating conditions and the levels of HC, CO, and NOx emissions, because the conversion efficiency of HC and CO is better with a leaner A/F ratio and the conversion efficiency of NOx is increased with a richer A/F ratio. (c) 2019 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:使用乙醇燃料的火花点火(Si)发动机在部分负载条件下分析了空气燃料(A / F)比和火花正时对废气排放和热效率的影响。还评估了将三元催化剂(TWC)施加到汽油发动机后废气排放的转化效率。尝试了烃(HC)和NOx排放的循环分辨测量,以在快速响应废气分析仪中调查排气口中的现象,并在不同的操作条件下进行比较。通过传统的废气分析仪和快速响应分析仪测量的相对A / F比的不同HC发射趋势被认为是由于排气系统中HC的测量位置和氧化反应的差异。为了优化乙醇A / F的比率以提高TWC的转化效率,认为稍微富有或稀微的A / F比率取决于HC,CO和NOx排放的操作条件和水平更好,因为HC和CO的转化效率更好地具有更好的A / F比,并且NOx的转换效率随着富有的A / F比而增加。 (c)2019年化学工业协会和约翰瓦里和儿子有限公司

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