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首页> 外文期刊>Atmospheric chemistry and physics >Summertime fine particulate nitrate pollution in the North China Plain: increasing trends, formation mechanisms and implications for control policy
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Summertime fine particulate nitrate pollution in the North China Plain: increasing trends, formation mechanisms and implications for control policy

机译:华北平原夏季细颗粒硝酸盐污染:趋势,形成机制及其对控制政策的影响

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摘要

Nitrate aerosol makes up a significant fraction of fine particles and plays a key role in regional air quality and climate. The North China Plain (NCP) is one of the most industrialized and polluted regions in China. To obtain a holistic understanding of the nitrate pollution and its formation mechanisms over the NCP region, intensive field observations were conducted at three sites during summertime in 2014–2015. The measurement sites include an urban site in downtown Jinan – the capital city of Shandong Province –, a rural site downwind of Jinan city, and a remote mountain site at Mt.?Tai (1534 m a.s.l.). Elevated nitrate concentrations were observed at all three sites despite distinct temporal and spatial variations. Using historical observations, the nitrate ∕ PMsub2.5/sub and nitrate ∕ sulfate ratios have statistically significantly increased in Jinan (2005–2015) and at Mt.?Tai (from 2007 to 2014), indicating the worsening situation of regional nitrate pollution. A multiphase chemical box model (RACM–CAPRAM) was deployed and constrained by observations to elucidate the nitrate formation mechanisms. The principal formation route is the partitioning of gaseous HNOsub3/sub to the aerosol phase during the day, whilst the nocturnal nitrate formation is dominated by the heterogeneous hydrolysis of Nsub2/subOsub5/sub. The daytime nitrate production in the NCP region is mainly limited by the availability of NOsub2/sub and to a lesser extent by Osub3/sub and NHsub3/sub. In comparison, the nighttime formation is controlled by both NOsub2/sub and Osub3/sub. The presence of NHsub3/sub contributes to the formation of nitrate aerosol during the day, while there is slightly decreasing nitrate formation at night. Our analyses suggest that controlling NOsubx/sub and Osub3/sub is an efficient way, at the moment, to mitigate nitrate pollution in the NCP region, where NHsub3/sub is usually in excess in summer. This study provides observational evidence of a rising trend of nitrate aerosol as well as scientific support for formulating effective control strategies for regional haze in China.
机译:硝酸盐气溶胶占很大一部分,在区域空气质量和气候中起关键作用。华北平原(NCP)是中国工业化程度最高和污染最严重的地区之一。为了全面了解NCP地区的硝酸盐污染及其形成机理,2014-2015年夏季在三个地点进行了密集的实地观测。测量地点包括位于山东省省会济南市区的城市场地,位于济南市顺风的农村场地以及位于太子山(1534 m.s.l.)的偏远山区。尽管在时间和空间上存在明显的差异,但在所有三个位置均观察到硝酸盐浓度升高。根据历史观察,济南(2005-2015年)和泰山(2007年至2014年)硝酸盐∕ PM 2.5 和硝酸盐∕硫酸盐的比例有统计学上的显着增加,这表明of南的状况正在恶化。区域硝酸盐污染。部署了多相化学箱模型(RACM–CAPRAM)并通过观察加以约束,以阐明硝酸盐的形成机理。主要的形成途径是白天将气态HNO 3 分配到气溶胶相,而夜间硝酸盐的形成则主要由N 2 O 5 。 NCP地区白天的硝酸盐生产主要受NO 2 可用性的限制,在较小程度上受O 3 和NH 3 的限制。相比之下,夜间形成受NO 2 和O 3 的控制。 NH 3 的存在有助于白天形成硝酸盐气溶胶,而晚上则略有减少。我们的分析表明,目前控制NO x 和O 3 是减轻NCP区NH 3 通常在夏天过多。该研究提供了硝酸盐气溶胶上升趋势的观测证据,并为制定中国区域霾的有效控制策略提供了科学支持。

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