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Development of a particle number and particle mass vehicle emissions inventory for an urban fleet

机译:为城市车队开发微粒数量和微粒车辆排放清单

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Motor vehicles are major emitters of gaseous and paniculate matter pollution in urban areas, and exposure to paniculate matter pollution can have serious health effects, ranging from respiratory and cardiovascular disease to mortality. Motor vehicle tailpipe particle emissions span a broad size range from 0.003 to 10 μm, and are measured as different subsets of particle mass concentrations or particle number count. However, no comprehensive inventories currently exist in the international published literature covering this wide size range.rnThis paper presents the first published comprehensive inventory of motor vehicle tailpipe particle emissions covering the full size range of particles emitted. The inventory was developed for urban South-East Queensland by combining two techniques from distinctly different disciplines, from aerosol science and transport modelling. A comprehensive set of particle emission factors were combined with transport modelling, and tailpipe particle emissions were quantified for particle number (ultrafine particles), PM_1, PM_(2.5) and PM10 for light and heavy duty vehicles and buses. A second aim of the paper involved using the data derived in this inventory for scenario analyses, to model the particle emission implications of different proportions of passengers travelling in light duty vehicles and buses in the study region, and to derive an estimate of fleet particle emissions in 2026.rnIt was found that heavy duty vehicles (HDVs) in the study region were major emitters of paniculate matter pollution, and although they contributed only around 6% of total regional vehicle kilometres travelled, they contributed more than 50% of the region's particle number (ultrafine particles) and PM_1 emissions. With the freight task in the region predicted to double over the next 20 years, this suggests that HDVs need to be a major focus of mitigation efforts. HDVs dominated particle number (ultrafine particles) and PM_1 emissions; and LDV PM_(2.5) and PM_(10) emissions. Buses contributed approximately 1-2% of regional particle emissions.
机译:机动车辆是城市地区气态和微粒物质污染的主要排放者,暴露于微粒物质污染会严重影响健康,从呼吸系统疾病和心血管疾病到死亡。机动车排气管的颗粒物排放范围很广,范围从0.003到10μm,被测量为颗粒质量浓度或颗粒数计数的不同子集。但是,在国际上公开的文献中,目前尚无涵盖该大范围颗粒物的全面清单。本文介绍了首次发布的涵盖整个排放范围的汽车尾气管颗粒物排放的综合清单。该清单是为昆士兰东南部城市开发的,它结合了来自气溶胶科学和运输模型的两个截然不同学科的技术。一套完整的颗粒物排放因子与运输模型相结合,并对轻,重型车辆和公共汽车的颗粒物数量(超细颗粒物),PM_1,PM_(2.5)和PM10进行了量化。本文的第二个目标涉及使用此清单中得出的数据进行情景分析,对研究区域中轻型车辆和公共汽车中不同比例的乘客所产生的颗粒物排放进行建模,并得出车队颗粒物排放量的估算值在2026年.rn发现研究区域的重型车辆(HDV)是微粒物质污染的主要排放者,尽管它们仅贡献了该地区行驶总公里数的6%,但它们却贡献了该地区50%以上的颗粒物数量(超细颗粒)和PM_1排放。预计该地区的货运任务将在未来20年内增加一倍,这表明HDV需要成为缓解工作的主要重点。 HDV占主导地位的颗粒数(超细颗粒)和PM_1排放; LDV PM_(2.5)和PM_(10)排放。公共汽车贡献了约1-2%的区域颗粒物排放。

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