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Ozone pollution around a coastal region of South China Sea: interaction between marine and continental air

机译:臭氧污染南海沿海地区:海洋和大陆空气之间的互动

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Marine atmosphere is usually considered to be a clean environment, but this study indicates that the near-coast waters of the South China Sea (SCS) suffer from even worse air quality than coastal cities. The analyses were based on concurrent field measurements of target air pollutants and meteorological parameters conducted at a suburban site (Tung Chung, TC) and a nearby marine site (Wan Shan, WS) from August to November?2013. The observations showed that the levels of primary air pollutants were significantly lower at WS than those at TC, while the ozone (O3) value was greater at WS. Higher O3 levels at WS were attributed to the weaker NO titration and higher O3 production rate because of stronger oxidative capacity of the atmosphere. However, O3 episodes were concurrently observed at both sites under certain meteorological conditions, such as tropical cyclones, continental anticyclones and sea–land breezes (SLBs). Driven by these synoptic systems and mesoscale recirculations, the interaction between continental and marine air masses profoundly changed the atmospheric composition and subsequently influenced the formation and redistribution of O3 in the coastal areas. When continental air intruded into marine atmosphere, the O3 pollution was magnified over the SCS, and the elevated O3 (???100?ppbv) could overspread the sea boundary layer ?~??8 times the area of Hong Kong. In some cases, the exaggerated O3 pollution over the SCS was recirculated to the coastal inshore by sea breeze, leading to aggravated O3 pollution in coastal cities. The findings are applicable to similar mesoscale environments around the world where the maritime atmosphere is potentially influenced by severe continental air pollution.
机译:海洋气氛通常被认为是一个干净的环境,但本研究表明,南中国海(SCS)的近岸水域患有比沿海城市更糟糕的空气质量。该分析基于在郊区网站(东涌,TC)和8月至11月在郊区网站(东涌,TC)和附近的海洋网站(WAN Shan,WS)进行的目标空气污染物和气象参数的并行现场测量。2013年。观察结果表明,在Ws的初级空气污染物水平明显低于Tc,而WS的臭氧(O 3)值较大。 WS的较高O3水平归因于由于大气的氧化能力较强的氧化能力较弱,较弱的滴定和较高的O3生产率。然而,在四种气象条件下的两个地点同时观察O3发作,例如热带旋风,欧式反气旋和海上堤坝(SLB)。由这些天气系统和Messcore再循环驱动,大陆和海洋空气群体之间的相互作用深刻地改变了大气组成,随后影响了沿海地区O3的形成和再分配。当欧式空气侵入海洋气氛时,O3污染在SCS上放大,升高的O3(??? 100?PPBV)可以过度涂抹海边层?〜?? 8次香港地区。在某些情况下,通过海风沿海近海沿海近海呼吁夸大的O3污染,导致沿海城市的O3污染加剧。这些调查结果适用于世界各地的类似Mescale环境,其中海上氛围可能受到严重的大陆空气污染的影响。

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