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Emissions of Aminesand Their Derivatives from Heavy-DutyDiesel Vehicles: The Reverse Side of NOx Control

胺气处理 化学 柴油 粒子(生态学) 空气质量指数 水溶液 环境化学 柴油机排气 微粒 硫酸 甲胺 柴油废气油液 催化作用 环境科学 尿素 超低硫柴油 冷凝 气溶胶 废气再循环 化学工程 烟气脱硫 空气污染 废气 柴油机
作者
Lewei Zeng,Zhaojin An,Xuan Zheng (424907),Liqiang He (6202814),Y N Liang,Xiao He (223527),Chongzhi Zhong,Yongliang Lu,Yiqi Zhao,Yuting Yu,Yanyan Yang (412382),Bin Zhao (276445),Shaojun Zhang (106522),Jun Zheng (207297),Shuxiao Wang (1406992),Jingkun Jiang (644743),Ye Wu (171928),Jiming Hao (1407004)
出处
期刊: [Figshare (United Kingdom)]
标识
DOI:10.1021/acs.est.6c00707.s001
摘要

Amines are important atmospheric basic gases that contribute to secondary particle formation via acid–base reactions, affecting air quality and human health. In urban atmospheres, their clustering with sulfuric acid is the key pathway driving new particle formation and growth into cloud condensation nuclei, with consequences for climate. Elevated amine levels have been observed in traffic environments, yet direct tailpipe evidence remains scarce. Here, we provide unambiguous identification and quantification of amines and their derivatives in the exhaust of heavy-duty diesel vehicles (HDDVs). Our results show that these compounds originate predominantly from transformations of ammonia (NH3) released during overdosing of diesel exhaust fluid (DEF, an aqueous urea solution) in selective catalytic reduction (SCR) systems. Instantaneous patterns further demonstrate that amine formation requires the coexistence of NH3 and oxygenated volatile organic compounds. The tested China VI fleet exhibited lower NOx emissions than China V vehicles, but more pronounced NH3 overdosing, likely leading to higher amine-related emission factors (EFs). Furthermore, both amine and NH3 EFs increased with vehicle mileage, indicating emission deterioration associated with aging SCR-related aftertreatment components. Our findings highlight that the environmental implications of SCR-based NOx control extend beyond NOx reduction, as excessive NH3 dosing enhances amine emissions and also stimulates secondary particle formation, with broader impacts on air quality and climate.
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