Primary sources of HONO vary during the daytime: Insights based on a field campaign

亚硝酸 白天 环境科学 大气科学 氮氧化物 微粒 空气污染 特大城市 混合比 大气化学 气象学 环境化学 臭氧 化学 燃烧 物理 无机化学 经济 有机化学 经济 地质学
作者
Dongyang Chen,Li Zhou,Song Liu,Chaofan Lian,Weigang Wang,Hefan Liu,Chunyuan Li,Yuelin Liu,Lan Luo,Kuang Xiao,Yong Chen,Yang Qiu,Qinwen Tan,Maofa Ge,Yang Chen
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:903: 166605-166605 被引量:7
标识
DOI:10.1016/j.scitotenv.2023.166605
摘要

Nitrous acid (HONO) is an established precursor of hydroxyl (OH) radical and has significant impacts on the formation of PM2.5 and O3. Despite extensive research on HONO observation in recent years, knowledge regarding its sources and sinks in urban areas remains inadequate. In this study, we monitored the atmospheric concentrations of HONO and related pollutants, including gaseous nitric acid and particulate nitrate, simultaneously at a supersite in downtown Chengdu, a megacity in southwestern China during spring, when was chosen due to its tolerance for both PM2.5 and O3 pollution. Furthermore, we employed the random forest model to fill the missing data of HONO, which exhibited good predictive performance (R2 = 0.96, RMSE = 0.36 ppbv). During this campaign, the average mixing ratio of HONO was measured to be 1.0 ± 0.7 ppbv. Notably, during periods of high O3 and PM2.5 concentrations, the mixing ratio of HONO was >50 % higher compared to the clean period. We developed a comprehensive parameterization scheme for the HONO budget, and it performed well in simulating diurnal variations of HONO. Based on the HONO budget analysis, we identified different mechanisms that dominate HONO formation at different times of the day. Vehicle emissions and NO2 heterogeneous conversions were found to be the primary sources of HONO during nighttime (21.0 %, 30.2 %, respectively, from 18:00 to 7:00 the next day). In the morning (7:00-12:00), NO2 heterogeneous conversions and the reaction of NO with OH became the main sources (35.0 %, 32.2 %, respectively). However, in the afternoon (12:00-18:00), the heterogeneous photolysis of HNO3 on PM2.5 was identified as the most substantial source of HONO (contributing 52.5 %). This study highlights the significant variations in primary HONO sources throughout the day.
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