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Spatial Distribution and Temporal Trend of Tropospheric NO2 over the Wanjiang City Belt of China

机译:皖江城市带对流层二氧化氮的空间分布和时空趋势

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We utilize the tropospheric NO2 columns derived from the observations of Ozone Monitoring Instrument (OMI) onboard AURA to analyze the spatial distributions and temporal trends of NO2 in Wanjiang City Belt (WCB) of China from 2005 to 2016. The aim of this study is to assess the effect of industrial transfer policy on the air quality in WCB. Firstly, we used the surface in situ NO2 concentrations to compare with the OMI-retrieved tropospheric NO2 columns in order to verify the accuracy of the satellite data over the WCB area. Although it is difficult to compare the two datasets directly, the comparison results prove the accuracy of the OMI-retrieved tropospheric NO2 columns in cities of WCB. Then, the spatial distributions of the annual averaged tropospheric NO2 total columns over Anhui Province show that NO2 columns were considerably higher in WCB than those in other areas of Anhui. Also, we compared the spatial distributions of the total NO2 columns in 2005 through 2010 and in 2011 through 2016 and found that the total NO2 columns in WCB increased by 19.9%, while the corresponding value increased only 13.9% in other Anhui areas except the WCB area. Furthermore, the temporal variations of NO2 columns show that although the NO2 columns over WCB and Anhui increased significantly from 2005 to 2011, they decreased sharply from 2011 to 2016 due to the strict emission reduction measures in China. Finally, the HYSPLIT model was used to analyze the origins of NO2 and transport pathways of air masses in a typical city, Ma’anshan city.
机译:我们利用从AURA板上的臭氧监测仪(OMI)观测得到的对流层NO2柱,分析了2005年至2016年中国皖江城市带(WCB)中NO2的空间分布和时空趋势。评估产业转移政策对WCB中空气质量的影响。首先,我们使用地表原地NO2浓度与OMI回收的对流层NO2柱进行比较,以验证WCB区域上卫星数据的准确性。尽管很难直接比较这两个数据集,但比较结果证明了在WCB城市中OMI回收的对流层NO2柱的准确性。然后,安徽省年平均对流层NO2总柱的空间分布表明,WCB中的NO2柱明显高于安徽其他地区。此外,我们比较了2005年至2010年以及2011年至2016年NO2总量的空间分布,发现WCB中的NO2总量增加了19.9%,而除WCB以外的其他安徽地区相应值仅增加了13.9%。区。此外,NO2柱的时间变化表明,尽管WCB和安徽的NO2柱在2005年至2011年间显着增加,但由于中国采取了严格的减排措施,它们在2011年至2016年间急剧下降。最后,使用HYSPLIT模型分析典型城市马鞍山市的NO2起源和气团的输送路径。

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