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DOI10.5194/acp-20-5231-2020
Nitrous acid (HONO) emissions under real-world driving conditions from vehicles in a UK road tunnel
Kramer L.J.; Crilley L.R.; Adams T.J.; Ball S.M.; Pope F.D.; Bloss W.J.
发表日期2020
ISSN1680-7316
起始页码5231
结束页码5248
卷号20期号:9
英文摘要

Measurements of atmospheric boundary layer nitrous acid (HONO) and nitrogen oxides (NOx) were performed in summer 2016 inside a city centre road tunnel in Birmingham, United Kingdom. HONO and NOx mixing ratios were strongly correlated with traffic density, with peak levels observed during the early evening rush hour as a result of traffic congestion in the tunnel. A day-Time "HONOĝˆ• "NOx ratio of 0.85 % (0.72 % to 1.01 %, 95 % confidence interval) was calculated using reduced major axis regression for the overall fleet average (comprising 59 % diesel-fuelled vehicles). A comparison with previous tunnel studies and analysis on the composition of the fleet suggest that goods vehicles have a large impact on the overall HONO vehicle emissions; however, new technologies aimed at reducing exhaust emissions, particularly for diesel vehicles, may have reduced the overall direct HONO emission in the UK. This result suggests that in order to accurately represent urban atmospheric emissions and the OH radical budget, fleet-weighted HONOĝˆ•NOx ratios may better quantify HONO vehicle emissions in models, compared with the use of a single emissions ratio for all vehicles. The contribution of the direct vehicular source of HONO to total ambient HONO concentrations is also investigated and results show that, in areas with high traffic density, vehicle exhaust emissions are likely to be the dominant HONO source to the boundary layer.

. © 2020 BMJ Publishing Group. All rights reserved.
语种英语
scopus关键词air quality; atmospheric pollution; boundary layer; emission inventory; nitrogen oxides; nitrous acid; pollutant source; quantitative analysis; temporal variation; traffic congestion; traffic emission; tunnel; Birmingham [Birmingham (DST)]; Birmingham [England]; England; United Kingdom
来源期刊Atmospheric Chemistry and Physics
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/141371
作者单位School of Geography, Earth and Environmental Sciences, University of Birmingham, Birmingham, United Kingdom; School of Chemistry, University of Leicester, Leicester, United Kingdom; Department of Chemistry, York University, Toronto, ON, Canada; Ricardo Energy and Environment, Harwell, Oxon, United Kingdom
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GB/T 7714
Kramer L.J.,Crilley L.R.,Adams T.J.,et al. Nitrous acid (HONO) emissions under real-world driving conditions from vehicles in a UK road tunnel[J],2020,20(9).
APA Kramer L.J.,Crilley L.R.,Adams T.J.,Ball S.M.,Pope F.D.,&Bloss W.J..(2020).Nitrous acid (HONO) emissions under real-world driving conditions from vehicles in a UK road tunnel.Atmospheric Chemistry and Physics,20(9).
MLA Kramer L.J.,et al."Nitrous acid (HONO) emissions under real-world driving conditions from vehicles in a UK road tunnel".Atmospheric Chemistry and Physics 20.9(2020).
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