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Exploring the nitrous acid (HONO) formation mechanism in winter Beijing: direct emissions and heterogeneous production in urban and suburban areas

机译:探索北京冬季冬季亚硝酸的形成机理:城市和郊区的直接排放和异构生产

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摘要

Continuous measurements of nitrous acid (HONO) were performed from December 12 to December 22, 2015 in both urban and suburban areas of Beijing to study the formation mechanism of HONO. The measurement campaign in both sites included a clean-haze-clean transformation process. HONO concentrations showed similar variations in the two sites, while they were always higher in the urban area. Moreover, correlations of HONO with NOx, NO2, NO, PM2.5 and relative humidity (RH) were studied to explore possible HONO formation pathways, and the contributions of direct emissions, heterogeneous reactions, and homogeneous reactions were also calculated. This showed that HONO in urban and suburban areas underwent totally different formation procedures, which were affected by meteorological conditions, PM2.5 concentrations, direct emissions, homogeneous reactions and heterogeneous reactions. PM2.5 concentrations and RH would influence the NO2 conversion efficiency. Heterogeneous reactions of NO2 were more efficient in suburban areas and in clean periods while direct emissions and homogeneous reactions contributed more in urban areas and in polluted periods when the concentrations of NOx and NO were at a high level.
机译:2015年12月12日至12月22日在北京市区和郊区连续测量亚硝酸(HONO),以研究HONO的形成机理。这两个地点的测量活动都包括了一个整洁,干净的转换过程。 HONO浓度在两个地点显示相似的变化,而在市区中始终较高。此外,研究了HONO与NOx,NO2,NO,PM2.5和相对湿度(RH)的相关性,以探索可能的HONO形成途径,并计算了直接排放,非均相反应和均相反应的贡献。这表明城市和郊区的HONO经历了完全不同的形成过程,受气象条件,PM2.5浓度,直接排放,均相反应和异质反应的影响。 PM2.5浓度和相对湿度会影响NO2转化效率。在郊区和清洁时期,NO2的异质反应效率更高,而在城市地区和污染时期(NOx和NO浓度较高),直接排放和均相反应的贡献更大。

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