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乘用车在轮胎与路面接触处排放颗粒的物理和化学特性。

Physical and chemical characteristics of particles emitted by a passenger vehicle at the tire-road contact.

作者信息

Beji Asma, Deboudt Karine, Muresan Bogdan, Khardi Salah, Flament Pascal, Fourmentin Marc, Lumiere Laurence

机构信息

Laboratory of Physics and Chemistry of the Atmosphere (LPCA), Université du Littoral Côte d'Opale (ULCO), 59140, Dunkerque, France; Environment-Planning, Safety and Eco-design (EASE-AME) Laboratory, Gustave Eiffel University, 77454, Marne-la-Vallée, France.

Laboratory of Physics and Chemistry of the Atmosphere (LPCA), Université du Littoral Côte d'Opale (ULCO), 59140, Dunkerque, France.

出版信息

Chemosphere. 2023 Nov;340:139874. doi: 10.1016/j.chemosphere.2023.139874. Epub 2023 Aug 19.

Abstract

Non-exhaust emissions are now recognized as a significant source of atmospheric particulate matter and the trend towards a reduction of conventionally fueled internal combustion engine vehicles on the road is increasing their contribution to air pollution due to lower exhaust emissions. These particles include brake wear particles (BWP) and tire-road contact particles (TRCP), which are composed of tire wear particles (TWP), road wear particles (RWP) and resuspended road dust (RRD). The goal of this study has therefore been to design an original experimental approach to provide insight into the chemical composition of particles emitted at the tire-road contact, focusing on the micron (PM) and submicron (PM) fractions. Through this characterization, an examination of the different TRCP generated by different materials (tire, road surface, brake system) was conducted. To achieve this, TRCP were collected at the rear of the wheel of an instrumented vehicle during road and track tests, and a SEM-EDX analysis was performed. Our experimental conditions have allowed us to demonstrate that, at the individual particle scale, TRCP are consistently associated with road dust materials and particles solely composed of tire or road materials are practically non-existent. The contribution of BWP to TRCP is marked by the emission of Fe-rich particles, including heavy metals like Ba, Mn and Cr. TWP, which result from rubber abrasion, consist of C-rich particles abundant in Si, Zn, and S. RWP, mainly composed of Al, Si, Fe, and Ca, can be either part of RRD or internally mixed with emitted TWP. The findings of this study highlight the substantial role of RRD to TRCP emissions under real driving conditions. Consequently, it underscores the importance of examining them simultaneously to achieve a more accurate estimation of on-road traffic emissions beyond the vehicle exhaust.

摘要

非尾气排放现已被公认为大气颗粒物的重要来源,随着道路上传统燃油内燃机车辆数量的减少,其尾气排放量降低,这使得非尾气排放对空气污染的贡献日益增加。这些颗粒物包括制动磨损颗粒(BWP)和轮胎-路面接触颗粒(TRCP),后者由轮胎磨损颗粒(TWP)、道路磨损颗粒(RWP)和再悬浮道路灰尘(RRD)组成。因此,本研究的目标是设计一种原创的实验方法,以深入了解轮胎-路面接触时排放颗粒的化学成分,重点关注微米级(PM)和亚微米级(PM)颗粒。通过这种表征,对不同材料(轮胎、路面、制动系统)产生的不同TRCP进行了研究。为实现这一目标,在道路和赛道测试期间,在一辆装有仪器的车辆的车轮后部收集TRCP,并进行扫描电子显微镜-能量色散X射线光谱(SEM-EDX)分析。我们的实验条件使我们能够证明,在单个颗粒尺度上,TRCP始终与道路灰尘物质相关联,仅由轮胎或道路材料组成的颗粒实际上并不存在。BWP对TRCP的贡献以富含铁的颗粒排放为特征,包括钡、锰和铬等重金属。由橡胶磨损产生的TWP由富含碳的颗粒组成,这些颗粒富含硅、锌和硫。主要由铝、硅、铁和钙组成的RWP可以是RRD的一部分,也可以与排放的TWP内部混合。本研究结果突出了RRD在实际驾驶条件下对TRCP排放的重要作用。因此,它强调了同时检查它们对于更准确估计车辆尾气以外的道路交通排放的重要性。

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