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道路车辆排放的非挥发性颗粒数量以小于 23 纳米的颗粒为主。

Sub-23 nm Particles Dominate Non-Volatile Particle Number Emissions of Road Traffic.

机构信息

Aerosol Physics Laboratory, Physics Unit, Tampere University, Tampere 33720, Finland.

Airmodus Oy, Helsinki 00560, Finland.

出版信息

Environ Sci Technol. 2023 Jul 25;57(29):10763-10772. doi: 10.1021/acs.est.3c03221. Epub 2023 Jul 13.

Abstract

Ultrafine particles (<100 nm) in urban air are a serious health hazard not yet fully understood. Therefore, particle number concentration monitoring was recently included in the WHO air quality guidelines. At present, e.g., the EU regulates particle number only regarding the emissions of solid particles larger than 23 nm emitted by vehicles. The aim of this study was to examine the non-volatile fraction of sub-23 nm particles in a traffic-influenced urban environment. We measured the number concentration of particles larger than 1.4, 3, 10, and 23 nm in May 2018. Volatile compounds were thermally removed in the sampling line and the line losses were carefully determined. According to our results, the sub-23 nm particles dominated the non-volatile number concentrations. Additionally, based on the determined particle number emission factors, the traffic emissions of non-volatile sub-10 nm particles can be even 3 times higher than those of particles larger than 10 nm. Yet, only a fraction of urban sub-10 nm particles consisted of non-volatiles. Thus, while the results highlight the role of ultrafine particles in the traffic-influenced urban air, a careful consideration is needed in terms of future particle number standards to cover the varying factors affecting measured concentrations.

摘要

城市空气中的超细颗粒(<100nm)是一种严重的健康危害,但尚未被充分了解。因此,最近世界卫生组织的空气质量指南中已纳入了对颗粒物数量浓度的监测。目前,例如欧盟仅针对车辆排放的大于 23nm 的固体颗粒物的排放量来规定颗粒物数量。本研究的目的是检测受交通影响的城市环境中小于 23nm 的亚微米颗粒的非挥发性部分。我们在 2018 年 5 月测量了大于 1.4、3、10 和 23nm 的颗粒的数浓度。挥发性化合物在采样线上被热去除,并且仔细确定了线损失。根据我们的结果,亚 23nm 颗粒主导了非挥发性数浓度。此外,根据确定的颗粒数排放因子,交通排放的非挥发性小于 10nm 的颗粒甚至可能比大于 10nm 的颗粒高 3 倍。然而,城市亚 10nm 颗粒中只有一部分是非挥发性的。因此,虽然这些结果突出了超细颗粒在受交通影响的城市空气中的作用,但在制定未来的颗粒数标准时,需要仔细考虑影响测量浓度的各种因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d739/10373488/a3aa9ef50526/es3c03221_0002.jpg

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