空燃比对摩托车尾气排放的影响

O.A. Odunlami , O.K. Oderinde , F.A. Akeredolu , J.A. Sonibare , O.R. Obanla , M.E. Ojewumi
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引用次数: 9

摘要

本文从尼日利亚西南部汽油发动机摩托车的排气管数据出发,给出了车辆排放的实际AFR。它还表示实际空气燃料比(AFRactual)和理想/化学计量空气燃料比(AFRideal)之间的比率,称为等效空气燃料比或lambda (λ)。这与废气排放催化技术的lambda期望值(1(±5%))进行了比较。在这项研究中,超过95%的抽样摩托车的lambda值高于预期,从而排放出非常高浓度的一氧化碳(CO)、碳氢化合物(HC)和二氧化碳(CO2)。便携式,手持式,电池供电的凯恩汽车4-气体分析仪与检测管(模型汽车4-1)被用来测量汽车排放。空燃比是汽油机性能控制与调校、防治汽车尾气排放污染原因的重要指标和重要措施[1]。内燃汽油发动机的废气排放在很大程度上主要取决于空燃比。对于以汽油为燃料的发动机,一氧化碳(CO)、碳氢化合物(HC)和氮氧化物(NOx)废气的排放受空燃比的显著影响。CO和HC主要是在富空气燃料混合物中产生或产生的,而NOx则是在贫空气燃料混合物中产生的,这意味着没有一种固定的空气燃料混合物可以使其在所有废气排放中达到最小[2]。这项研究可以帮助减少燃料消耗,提高燃料燃烧质量,减少尼日利亚的汽车尾气排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The effect of air-fuel ratio on tailpipe exhaust emission of motorcycles

The effect of air-fuel ratio on tailpipe exhaust emission of motorcycles

This article presents the actual AFR of the vehicular emission from the tailpipe data of motorcycles with petrol engine in Southwest Nigeria. It also presents the ratio between the actual air-fuel ratio (AFRactual) and the ideal/stoichiometric air-fuel ratio (AFRideal) known as the equivalence air-fuel ratio or lambda (λ). This was compared with the expected value for lambda by the catalytic technology for exhaust gases emission, which is 1 (± 5%). In this study, over 95% of the sampled motorcycles have higher lambda values than expected, thereby emitting very high concentrations of carbon monoxide (CO), hydrocarbon (HC), and carbon dioxide (CO2). The Portable, Hand-Held, battery-operated Kane automotive 4-gas analyser with detector tube (Model Auto 4-1) was used to measure the automobile emissions. The air-fuel ratio is a significant indicator and very important measure for gasoline engine performance controlling and tuning, and anti vehicles exhaust emissions pollution reasons [1]. Internal combustion (IC) gasoline fuelled engines exhaust gases emission depend heavily and mainly on the air-fuel ratio. For a gasoline fuelled engine, carbon monoxide (CO), hydrocarbons (HC), and nitrogen oxides (NOx) exhaust gases emission are significantly influenced by air-fuel ratio. CO and HC are majorly generated or produced with rich air–fuel mixture, while NOx with lean air-fuel mixtures which mean that there is no fixed air-fuel mixture for which it can obtain the minimum for all exhaust gases emission [2]. This study can help in reducing fuel consumption, improving the quality of fuel combustion and reducing vehicle exhaust emissions in Nigeria.

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