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Seasonal and spatial variability of surface ozone over China: Contributions from background and domestic pollution

机译:中国表面臭氧的季节和空间变化:背景和家庭污染的贡献

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摘要

Both observations and a 3-D chemical transport model suggest that surface ozone over populated eastern China features a summertime trough and that the month when surface ozone peaks differs by latitude and region. Source-receptor analysis is used to quantify the contributions of background ozone and Chinese anthropogenic emissions on this variability. Annual mean background ozone over China shows a spatial gradient from 55 ppbv in the northwest to 20 ppbv in the southeast, corresponding with changes in topography and ozone lifetime. Pollution background ozone (annual mean of 12.6 ppbv) shows a minimum in the summer and maximum in the spring. On the monthly-mean basis, Chinese pollution ozone (CPO) has a peak of 20g-25 ppbv in June north of the Yangtze River and in October south of it, which explains the peaks of surface ozone in these months. The summertime trough in surface ozone over eastern China can be explained by the decrease of background ozone from spring to summer (by -15 ppbv regionally averaged over eastern China). Tagged simulations suggest that long-range transport of ozone from northern mid-latitude continents (including Europe and North America) reaches a minimum in the summer, whereas ozone from Southeast Asia exhibits a maximum in the summer over eastern China. This contrast in seasonality provides clear evidence that the seasonal switch in monsoonal wind patterns plays a significant role in determining the seasonality of background ozone over China.
机译:观测结果和3-D化学迁移模型均表明,中国东部人口稠密的地面臭氧以夏季低谷为特征,而表面臭氧峰的月份因纬度和地区而异。源-受体分析用于量化背景臭氧和中国人为排放量对这种变异性的贡献。中国的年平均本底臭氧的空间梯度从西北的55 ppbv到东南的20 ppbv,与地形和臭氧寿命的变化相对应。臭氧的污染本底(年均12.6 ppbv)在夏季最低,在春季最高。按月平均,中国污染臭氧(CPO)在长江以北的6月和其以南的10月的峰值为20g-25 ppbv,这可以解释这几个月的表面臭氧峰值。中国东部表层臭氧的夏季低谷可以用春季至夏季本底臭氧的减少来解释(中国东部地区平均水平降低-15 ppbv)。标记的模拟表明,夏季中北部北纬大陆(包括欧洲和北美)的臭氧远距离输送达到最小,而东南亚地区的东南亚臭氧在夏季呈现出最大值。这种季节性差异提供了明确的证据,表明季风风型的季节转换在确定中国背景臭氧的季节性方面起着重要作用。

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