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柴油颗粒过滤器对道路交通中超细颗粒物排放的影响有限。

Limited impact of diesel particle filters on road traffic emissions of ultrafine particles.

作者信息

Damayanti Seny, Harrison Roy M, Pope Francis, Beddows David C S

机构信息

School of Geography, Earth & Environmental Sciences, University of Birmingham, Birmingham B15 2TT, United Kingdom.

School of Geography, Earth & Environmental Sciences, University of Birmingham, Birmingham B15 2TT, United Kingdom.

出版信息

Environ Int. 2023 Apr;174:107888. doi: 10.1016/j.envint.2023.107888. Epub 2023 Mar 21.

Abstract

Diesel engines are a major contributor to emissions of both Black Carbon (BC) and ultrafine particles. Analysis of data from the only roadside monitoring site in Europe with a continuous dataset for size-segregated particle number count (Marylebone Road, London) from 2010 to 2021 reveals that the growing number of vehicles fitted with a Diesel Oxidation Catalyst (DOC) and Diesel Particle Filter (DPF) has been very effective in controlling the emissions of solid particles and hence BC, but that there has been little change in the liquid mode (<30 nm) particles, and that concentrations of ultrafine particles (<100 nm) still well exceed the threshold for "high" concentrations (>10 cm /24-hour mean) defined by WHO. BC declined by 81% between 2014 and 2021, but the ultrafine particle (<100 nm) count declined by only 26%. Consequently, in locations worldwide with heavy diesel traffic, concentrations of ultrafine particles are likely to remain "high" for the foreseeable future unless more effective abatement technologies are implemented.

摘要

柴油发动机是黑碳(BC)和超细颗粒物排放的主要来源。对欧洲唯一拥有2010年至2021年按粒径分类的颗粒物数量连续数据集的路边监测站点(伦敦马里波恩路)的数据进行分析后发现,越来越多配备柴油氧化催化剂(DOC)和柴油颗粒过滤器(DPF)的车辆在控制固体颗粒物排放以及由此控制黑碳排放方面非常有效,但液态模式(<30纳米)颗粒物几乎没有变化,并且超细颗粒物(<100纳米)的浓度仍远超过世界卫生组织定义的“高”浓度阈值(>10厘米/24小时平均值)。2014年至2021年间,黑碳下降了81%,但超细颗粒物(<100纳米)数量仅下降了26%。因此,在全球柴油交通繁忙的地区,除非实施更有效的减排技术,超细颗粒物浓度在可预见的未来可能仍将处于“高”水平。

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