Grigoratos Theodoros, Martini Giorgio
European Commission, Joint Research Centre, Sustainable Transport Unit (STU), Institute for Energy and Transport (IET), Via E Fermi 2749, 21027, Ispra, Italy,
Environ Sci Pollut Res Int. 2015 Feb;22(4):2491-504. doi: 10.1007/s11356-014-3696-8. Epub 2014 Oct 17.
Traffic-related sources have been recognized as a significant contributor of particulate matter particularly within major cities. Exhaust and non-exhaust traffic-related sources are estimated to contribute almost equally to traffic-related PM10 emissions. Non-exhaust particles can be generated either from non-exhaust sources such as brake, tyre, clutch and road surface wear or already exist in the form of deposited material at the roadside and become resuspended due to traffic-induced turbulence. Among non-exhaust sources, brake wear can be a significant particulate matter (PM) contributor, particularly within areas with high traffic density and braking frequency. Studies mention that in urban environments, brake wear can contribute up to 55 % by mass to total non-exhaust traffic-related PM10 emissions and up to 21 % by mass to total traffic-related PM10 emissions, while in freeways, this contribution is lower due to lower braking frequency. As exhaust emissions control become stricter, relative contributions of non-exhaust sources-and therefore brake wear-to traffic-related emissions will become more significant and will raise discussions on possible regulatory needs. The aim of the present literature review study is to present the state-of-the-art of the different aspects regarding PM resulting from brake wear and provide all the necessary information in terms of importance, physicochemical characteristics, emission factors and possible health effects.
与交通相关的污染源已被公认为是颗粒物的重要来源,尤其是在大城市中。据估计,与交通相关的尾气和非尾气污染源对PM10排放的贡献几乎相同。非尾气颗粒物可由制动、轮胎、离合器和路面磨损等非尾气源产生,也可能以路边沉积物质的形式存在,并因交通引起的湍流而重新悬浮。在非尾气源中,制动磨损可能是颗粒物(PM)的重要来源,尤其是在交通密度和制动频率较高的区域。研究表明,在城市环境中,制动磨损对与交通相关的非尾气PM10排放的质量贡献可达55%,对与交通相关的PM10排放总量的质量贡献可达21%,而在高速公路上,由于制动频率较低,这一贡献较低。随着尾气排放控制变得更加严格,非尾气源(因此制动磨损)对与交通相关排放的相对贡献将变得更加显著,并将引发关于可能的监管需求的讨论。本综述研究的目的是介绍制动磨损产生的颗粒物不同方面的最新情况,并在重要性、物理化学特性、排放因子和可能的健康影响方面提供所有必要信息。