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MAX-DOAS measurements of NO2, HCHO and CHOCHO at a rural site in Southern China

机译:Max-Doas在中国南部农村遗址的No2,Hcho和Chocho的测量

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We performed MAX-DOAS measurements during the PRIDE-PRD2006 campaign in the Pearl River Delta region (PRD), China, for 4 weeks in July 2006 at a site located 60 km north of Guangzhou. The vertical distributions of NO2, HCHO, and CHOCHO were independently retrieved by an automated iteration method. The NO2 mixing ratios measured by MAX-DOAS showed reasonable agreement with the simultaneous, ground based in-situ data. The tropospheric NO2 vertical column densities (VCDs) observed by OMI on board EOS-Aura satellite were higher than with those by MAX-DOAS. The 3-D chemical transport model CMAQ overestimated the NO2 VCDs as well as the surface concentrations by about 65%. From this observation, a reduction of NOx emission strength in CMAQ seems to be necessary in order to well reproduce the NO2 observations. The average mixing ratios of HCHO and CHOCHO were 7 ppb and 0.4 ppb, respectively, higher than in other rural or semirural environments. The high ratio of 0.062 between CHOCHO and HCHO corresponds to the high VOCs reactivity and high HOx turnover rate consistent with other observations during the campaign.
机译:我们在珠江三角洲地区(珠三角),中国珠江三角洲地区(PRD)的Pride-PRD2006活动期间进行了Max-Doas测量,于2006年7月在广州60公里处占地4周。通过自动迭代方法独立地检索NO2,HCHO和CHOCHO的垂直分布。 MAX-DOA测量的NO2混合比率显示与基于同时地面的原位数据进行合理的协议。 OMI在eos-aura卫星船上观察到的对流层No2垂直柱密度(VCD)高于Max-Doa的那些。 3-D化学传输模型CMAQ高估NO2 VCD,以及表面浓度约65%。从该观察开始,CMAQ中的NOx排放强度的降低似乎是必要的,以便良好再现NO2观察结果。 HCHO和CHOCHO的平均混合比分别为7ppb和0.4ppb,高于其他农村或神话环境。 Chocho和Hcho之间的高比率为0.062对应于在活动期间与其他观测结果一致的高VOCS反应性和高霍氏周转率。

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