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首页> 外文期刊>Journal of the air & waste management association >Comparison of Exhaust Emissions Resulting from Cold- and Hot-Start Motorcycle Driving Modes
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Comparison of Exhaust Emissions Resulting from Cold- and Hot-Start Motorcycle Driving Modes

机译:冷启动和热启动摩托车行驶模式导致的尾气排放比较

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摘要

This study investigated the emissions of criteria air pollutants (carbon monoxide [CO], hydrocarbons [HCs], and oxides of nitrogen [NO_x]) from motorcycle exhaust at cold- and hot-start driving cycles on a chassis dynamometer. Seven four-stroke carburetors and two fuel-injection motorcycles were tested. As expected, the emission factors (g/km) of CO and HCs increased during cold-start driving. The ratio of emission factors (g/km) for cold- and hot-start driving cycles ranged from 1.1-1.5 (for CO) to 1.2-2.8 (for HCs). However, the difference of NO_x emissions between the cold- and hot-start cycles was not pronounced. Further, the cold-/hot-start ratios of CO and HCs from 50-cm~3 motorcycles were higher than those of 100- and 125-cm~3 motorcycles; however, the carbon dioxide (CO_2) emission was the lowest for the four-stroke motorcycles. High engine temperature and poor combustion efficiency of smaller cylinder-capacity motorcycles may contribute a significant amount of exhaust emission. Additionally, the fuel-base emission factor (g/L-fuel) ratios were low compared with the distance-base emission factor (g/km) in cold- and hot-start driving. This indicates that the effect of catalyst efficiency was greater than the effect of fuel combustion in the tested motorcycles. A comparison of emission ratios of motorcycles and passenger cars shows that the warm-up may be more important for cars, especially under low-temperature conditions. However, the motorcycle contributes a large proportion of CO and HC emissions in many Asian counties. The difference between cold- and hot-start emissions may affect inventoryrnaccuracy, especially in HC emissions. For those tropical or subtropical countries in which motorcycles are one of the dominant air pollution sources, optimizing the engine combustion efficiency and developing new catalyst technology of motorcycles at cold-start conditions are the key issues to be improved.
机译:这项研究调查了底盘测功机在冷启动和热启动时从摩托车排气中排放标准空气污染物(一氧化碳[CO],碳氢化合物[HCs]和氮氧化物[NO_x])的情况。测试了七辆四冲程化油器和两辆燃油喷射摩托车。正如预期的那样,在冷启动驾驶过程中,CO和HC的排放因子(g / km)有所增加。冷启动和热启动行驶周期的排放因子比(g / km)在1.1-1.5(对于CO)到1.2-2.8(对于HCs)之间。但是,冷启动和热启动循环之间的NO_x排放差异并不明显。此外,50 cm〜3摩托车的CO和HCs的冷/热启动比高于100 cm和125 cm〜3摩托车的CO / HCs。但是,四冲程摩托车的二氧化碳排放量最低。较小气缸容量的摩托车的较高发动机温度和较差的燃烧效率可能会导致大量废气排放。此外,与冷启动和热启动驾驶中的基于距离的排放因子(g / km)相比,基于燃料的排放因子(g / L-燃料)比率低。这表明在测试的摩托车中,催化剂效率的影响大于燃料燃烧的影响。摩托车和乘用车的排放比的比较表明,预热对于汽车尤其重要,尤其是在低温条件下。但是,在许多亚洲县,摩托车造成了很大一部分的CO和HC排放。冷启动和热启动排放之间的差异可能会影响库存准确性,尤其是在HC排放方面。对于那些摩托车是主要空气污染源之一的热带或亚热带国家,优化发动机燃烧效率和在冷启动条件下开发摩托车的新型催化技术是需要改进的关键问题。

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  • 来源
    《Journal of the air & waste management association》 |2009年第11期|1339-1346|共8页
  • 作者单位

    Department of Environmental Engineering, and Sustainable Environment Research Center, National Cheng Kung University, Tainan, Taiwan, Republic of China;

    Department of Environmental Engineering, and Sustainable Environment Research Center, National Cheng Kung University, Tainan, Taiwan, Republic of China;

    Department of Environmental Engineering, and Sustainable Environment Research Center, National Cheng Kung University, Tainan, Taiwan, Republic of China;

    Department of Health Risk Management, China Medical University, Taichung, Taiwan, Republic of China;

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