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Impact of emission controls on air quality in Beijing during APEC 2014: lidar ceilometer observations

机译:2014年APEC期间排放控制对北京空气质量的影响:激光雷达云高仪观测

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摘要

The implementation of emission reductions during the 2014 Asia-Pacific Economic Cooperation (APEC) summit provides a valuable opportunity to study air pollution in Beijing. From 15 October to 30 November 2014, the height of the atmospheric mixing layer and the vertical attenuated backscattering coefficient profiles were observed online using a~lidar ceilometer. Compared with fine particulate matter (PM2.5) and aerosol optical depth (AOD) data, the attenuated backscattering coefficients measured by the lidar ceilometer were strongly correlated with the PM2.5 concentration and AOD (correlation coefficients of 0.89 and 0.86, respectively). This result demonstrated the reliability of the vertical distribution of particles measured by the lidar ceilometer. By classifying different degrees of air pollution based on visibility, we found that during the transition period of air pollution, which was affected by transport of southerly flows in the mixing layer, the attenuated backscattering coefficient from 0 to 1500 m was enhanced by approximately 1.4 Mm−1 sr−1 (140 %). During the polluted period, the attenuated backscattering coefficient from 0 to 300 m suddenly increased, and the coefficient near the surface peaked (approximately 14 Mm−1 sr−1); however, the attenuated backscattering coefficient from 300 to 900 m decreased gradually, and the average value from 0 to 1500 m decreased by 0.5 Mm−1sr−1 (20 %). The height of the mixing layer gradually decreased, and the ratio of CO / SO2 gradually increased, which indicate that the polluted period was dominated by local contribution. Due to the emission reductions during APEC (DAPEC), the concentration of PM2.5 decreased by 59.2 and 58.9 % and visibility improved by 70.2 and 56.0 % compared to before (BAPEC) and after APEC (AAPEC), respectively. The contribution of regional transport in DAPEC decreased by approximately 36 and 25 %, and the local contribution decreased by approximately 48 and 54 % compared to BAPEC and AAPEC, respectively. The most effective method of controlling air pollution in the Beijing area is to reduce regional emissions during the transition period and reduce local emissions during the polluted period.
机译:2014年亚太经济合作组织(APEC)峰会期间减排的实施为研究北京的空气污染提供了宝贵的机会。 2014年10月15日至11月30日,使用激光雷达云高仪在线观测了大气混合层的高度和垂直衰减的反向散射系数曲线。与细颗粒​​物(PM 2.5 )和气溶胶光学深度(AOD)数据相比,激光雷达云高仪测量的衰减后向散射系数与PM 2.5 浓度和AOD(相关系数分别为0.89和0.86)。该结果证明了由激光雷达云高仪测量的颗粒垂直分布的可靠性。通过基于可见度对不同程度的空气污染进行分类,我们发现,在空气污染的过渡时期,受混合层中南流的传输的影响,从0到1500 m的衰减后向散射系数提高了约1.4 Mm -1 sr -1 (140%)。在污染期间,衰减后向散射系数从0到300 m突然增加,地表附近的系数达到峰值(约14 Mm -1 sr -1 );但是,从300到900 m的衰减后向散射系数逐渐减小,从0到1500 m的平均值减小了0.5 Mm -1 sr -1 (20%) 。混合层的高度逐渐减小,CO / SO 2 的比例逐渐增大,表明污染期主要由局部贡献控制。由于APEC(DAPEC)期间的减排,PM 2.5 的浓度与APEC之前(BAP​​EC)和之后(AAPEC)相比分别降低了59.2和58.9%,可见度提高了70.2和56.0%,分别。与BAPEC和AAPEC相比,在DAPEC中区域运输的贡献分别下降了约36%和25%,在本地的贡献下降了约48%和54%。在北京地区,控制空气污染最有效的方法是在过渡时期减少区域排放,在污染时期减少局部排放。

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