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Effects of Asian air pollution transport and photochemistry on carbon monoxide variability and ozone production in subtropical coastal south China  

机译:亚洲空气污染的输送和光化学对中国南方亚热带沿海地区一氧化碳变异性和臭氧产生的影响

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摘要

Surface ozone and carbon monoxide (CO) measured from a relatively remote coastal station in Hong Kong are analyzed to study the effects of pollutant transport and associated ozone production on CO and ozone variations in the subtropical south China region. CO and ozone concentrations show a common minimum in summer and in the maritime air masses from the South China Sea and Pacific Ocean. They have higher values in other seasons and in the continental air masses that have passed over mainland Asia and the East Asian coast. CO shows the maximum monthly median of 457–552 ppbv in winter while ozone shows a maximum of 40–50 ppbv in autumn and a distinct peak of 41–43 ppbv in spring. The CO concentrations especially in the continental air masses (median of 277 to 428 ppbv) are very high when compared with measurements in most parts of the world. This suggests that the south China region is under the strong influence of pollutant transport from the Asian continent and East Asian coast. Ozone and CO show strong positive correlations in the polluted maritime air masses and from late spring to early autumn (May–September) with the linear regression slopes of the ozone-CO plot from 0.08 to 0.22 (with respective standard errors from 0.01 to 0.03). The strong correlations and slopes plus the high CO levels indicate that there is substantial ozone production from pollution in the polluted maritime air masses and in the late spring to early autumn period.
机译:分析了从香港一个相对偏远的沿海站点测得的地表臭氧和一氧化碳(CO),以研究污染物输送和相关臭氧生产对华南亚热带地区CO和臭氧变化的影响。一氧化碳和臭氧浓度在夏季以及南中国海和太平洋的海洋气团中显示出最低的共同值。它们在其他季节和遍及亚洲大陆和东亚海岸的大陆气团中具有较高的价值。一氧化碳显示冬季最高月中位数为457–552 ppbv,而臭氧秋季最高显示40–50 ppbv,春季最高峰值为41–43 ppbv。与世界上大多数地区的测量值相比,CO含量尤其是大陆气团(中值277至428 ppbv)中的CO浓度非常高。这表明,华南地区受到来自亚洲大陆和东亚沿海地区污染物迁移的强烈影响。臭氧和一氧化碳在受污染的海洋气团中以及从春季末到初秋(5月至9月)显示出很强的正相关,而臭氧一氧化碳的线性回归斜率从0.08到0.22(标准误从0.01到0.03)。 。强烈的相关性和斜率加上高的CO水平表明,在受污染的海洋气团中以及从春末至初秋期间,由于污染而产生了大量的臭氧。

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