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NOx emission estimates during the 2014 Youth Olympic Games in Nanjing

机译:南京2014年青年奥运会期间的NOx排放估计

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The Nanjing Government applied temporary environmental regulations to guarantee good air quality during the Youth Olympic Games (YOG) in 2014. We study the effect of those regulations by applying the emission estimate algorithm DECSO (Daily Emission estimates Constrained by Satellite Observations) to measurements of the Ozone Monitoring Instrument (OMI). We improved DECSO by updating the chemical transport model CHIMERE from v2006 to v2013 and by adding an Observation minus Forecast (OmF) criterion to filter outlying satellite retrievals due to high aerosol concentrations. The comparison of model results with both ground and satellite observations indicates that CHIMERE v2013 is better performing than CHIMERE v2006. After filtering the satellite observations with high aerosol loads that were leading to large OmF values, unrealistic jumps in the emission estimates are removed. Despite the cloudy conditions during the YOG we could still see a decrease of tropospheric NO2 column concentrations of about 32% in the OMI observations when compared to the average NO2 columns from 2005 to 2012. The results of the improved DECSO algorithm for NOx emissions show a reduction of at least 25% during the YOG period and afterwards. This indicates that air quality regulations taken by the local government have an effect in reducing NOx emissions. The algorithm is also able to detect an emission reduction of 10% during the Chinese Spring Festival. This study demonstrates the capacity of the DECSO algorithm to capture the change of NOx emissions on a monthly scale. We also show that the observed NO2 columns and the derived emissions show different patterns that provide complimentary information. For example, the Nanjing smog episode in December 2013 led to a strong increase in NO2 concentrations without an increase in NOx emissions. Furthermore, DECSO gives us important information on the non-trivial seasonal relation between NOx emissions and NO2 concentrations on a local scale.
机译:南京政府在2014年在青年奥运会(YOG)期间申请临时环境法规,以保障青年奥运会(YOG)的良好空气质量。我们通过应用排放估计算法DECSO(卫星观察限制的每日排放估计)来研究这些规定的效果臭氧监测仪(OMI)。通过从V2006到V2013更新化学传输模型Chimere并通过添加观察减去预测(OMF)标准来改善Decso,以通过高气溶胶浓度来过滤偏远的卫星检索。模型结果与地面和卫星观察的比较表明,Chimere V2013比Chimere V2006更好地表现。过滤具有导致大OMF值的高气溶胶载荷的卫星观察,消除发射估计中的不切实际的跳跃。尽管在截止日期间的情况下,与2005年至2012年的平均NO2列相比,仍然可以看到OMI观察中的对流层No2柱浓度的降低约为32%。NOx排放的改进DECSO算法的结果显示在瑜伽期间和之后减少至少25%。这表明当地政府采取的空气质量法规对减少NOX排放产生效力。该算法还能够在中国春节期间检测10%的排放减少。本研究展示了DECSO算法在每月规模上捕获NOx排放变化的能力。我们还表明,观察到的NO2列和派生排放显示了提供免费信息的不同模式。例如,2013年12月南京烟雾集导致No2浓度的强劲增加,而不会增加NOx排放。此外,Decso为我们提供了关于NOx排放与NO2浓度之间的非琐碎季节关系的重要信息。

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