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Remote sensing of on-road vehicle emissions: Mechanism, applications and a case study from Hong Kong

机译:道路车辆排放的遥感:机制,应用和来自香港的案例研究

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摘要

Vehicle emissions are a major contributor to air pollution in cities and have serious health impacts to their inhabitants. On-road remote sensing is an effective and economic tool to monitor and control vehicle emissions. In this review, the mechanism, accuracy, advantages and limitations of remote sensing were introduced. Then the applications and major findings of remote sensing were critically reviewed. It was revealed that the emission distribution of on-road vehicles was highly skewed so that the dirtiest 10% vehicles accounted for over half of the total fleet emissions. Such findings highlighted the importance and effectiveness of using remote sensing for in situ identification of high-emitting vehicles for further inspection and maintenance programs. However, the accuracy and number of vehicles affected by screening programs were greatly dependent on the screening criteria. Remote sensing studies showed that the emissions of gasoline and diesel vehicles were significantly reduced in recent years, with the exception of NO emissions of diesel vehicles in spite of greatly tightened automotive emission regulations. Thirdly, the experience and issues of using remote sensing for identifying high emitting vehicles in Hong Kong (where remote sensing is a legislative instrument for enforcement purposes) were reported. That was followed by the first time ever identification and discussion of the issue of frequent false detection of diesel high-emitters using remote sensing. Finally, the challenges and future research directions of on-road remote sensing were elaborated.
机译:车辆排放是造成城市空气污染的主要因素,对居民的健康产生严重影响。公路遥感是监视和控制车辆排放的有效且经济的工具。本文介绍了遥感的机理,准确性,优势和局限性。然后,对遥感的应用和主要发现进行了严格审查。据透露,公路车辆的排放分布严重偏斜,因此最脏的10%的车辆占车队排放总量的一半以上。这些发现突出了使用遥感技术对高排放车辆进行现场识别以进行进一步检查和维护计划的重要性和有效性。但是,受筛选程序影响的车辆的准确性和数量在很大程度上取决于筛选标准。遥感研究表明,尽管汽车排放法规大大严格,但近年来,汽油和柴油车辆的排放量已大大减少,但柴油车辆的NO排放量除外。第三,报告了在香港使用遥感识别高排放车辆的经验和问题(在遥感中,遥感是用于执行目的的立法手段)。随后是首次使用遥感技术对柴油高排放物进行频繁误检测的识别和讨论。最后,阐述了道路遥感技术的挑战和未来的研究方向。

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