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Characteristics of ozone and particles in the near-surface atmosphere in the urban area of the Yangtze River Delta, China

机译:长江三角洲市区近地表大气中臭氧和颗粒的特征

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Aerosols and ozone have significant influences on air qualities, human health, and climate changes. To further understand the characteristics and interactions among different urban air pollutants in the west Yangtze River Delta (YRD) region, continuous measurements of low-layer atmospheric particles and trace gases have been performed at an urban site in Nanjing from September?2016 to February?2017 in this study. In the urban area of the west YRD, the mean PM sub10/sub and Osub3/sub concentrations are 86.3 μ g?m sup?3/sup and 37.7?ppb, respectively, with significant seasonal and diurnal variations. Particles, which are dominated by fine aerosols, are relatively scattering. And most of their optical properties have similar variations to the aerosol concentrations. Results also show that the west YRD could still suffer severe air pollution, although the seasonal mean aerosol concentrations have decreased in recent years. Even in cold seasons, Osub3/sub could exceed the National Ambient Air Quality Standards for about 40?days during the sampling period. Most of polluted episodes are caused by local and subregional emissions. A case study for a typical Osub3/sub and PM sub2.5/sub episode in December?2016 demonstrates that the episode was generally associated with regional transport and a stable weather system. Air pollutants were mostly transported from the western areas with high emissions, as well as with an anticyclone and high-pressure system in this region. Correlation analysis reveals that the interactions between Osub3/sub and PM are complex, with a combination of inhibition and promotion under different conditions. The inhibition effect might result from the reduction of photolysis frequency near the surface due to aerosols in addition to their positive correlations with precursors, while the promotion effect is from the formation of secondary aerosols under high concentrations of oxidants and solar radiation. However, the interaction between Osub3/sub and BC shows an inhibiting effect due to its chemical stability. This also indicated a VOC-sensitive regime for photochemical production of Osub3/sub in this region. This study further improves insight into the characteristics and interactions of main pollutants and may contribute to the improvement of the simulation and prediction of aerosols and gases in the urban area of the YRD.
机译:气溶胶和臭氧对空气质量,人类健康和气候变化具有重大影响。为了进一步了解长江三角洲西部地区不同城市空气污染物的特征和相互作用,自2016年9月至2016年2月,在南京市区对低层大气颗粒和微量气体进行了连续测量。 2017年在这项研究中。在长三角西部的市区,PM 10 和O 3 的平均浓度为86.3μg?m ?3 和37.7?ppb分别具有明显的季节性和昼夜变化。以细小气溶胶为主的颗粒相对散射。并且它们的大多数光学性质与气溶胶浓度具有相似的变化。结果还表明,尽管近几年季节性平均气溶胶浓度有所下降,但西部长三角地区仍可能遭受严重的空气污染。即使在寒冷季节,采样期间O 3 仍可能超过国家环境空气质量标准约40天。大部分污染事件是由当地和次区域排放引起的。以2016年12月典型的O 3 和PM 2.5 事件为例,该事件通常与区域交通和稳定的天气系统有关。空气污染物大部分是从西部地区排放的,排放量很高,而且该地区还装有反气旋和高压系统。相关分析表明,O 3 与PM之间的相互作用很复杂,在不同条件下都具有抑制和促进作用。除了与前体的正相关关系外,抑制作用还可能是由于气溶胶引起的表面附近光解频率降低,而促进作用则是由于在高浓度氧化剂和太阳辐射下形成了次级气溶胶。然而,O 3 与BC之间的相互作用由于其化学稳定性而显示出抑制作用。这也表明该地区O 3 的光化学生产具有VOC敏感性。这项研究进一步提高了对主要污染物的特征和相互作用的认识,并可能有助于改善长三角地区市区气溶胶和气体的模拟和预测。

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