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DOI | 10.5194/acp-22-10703-2022 |
Evaluation of correlated Pandora column NO2 and in situ surface NO2 measurements during GMAP campaign | |
Chang, Lim-Seok; Kim, Donghee; Hong, Hyunkee; Kim, Deok-Rae; Yu, Jeong-Ah; Lee, Kwangyul; Lee, Hanlim; Kim, Daewon; Hong, Jinkyu; Jo, Hyun-Young; Kim, Cheol-Hee | |
发表日期 | 2022 |
ISSN | 1680-7316 |
EISSN | 1680-7324 |
起始页码 | 10703 |
结束页码 | 10720 |
卷号 | 22期号:16页码:18 |
英文摘要 | To validate the Geostationary Environment Monitoring Spectrometer (GEMS), the GEMS Map of Air Pollution (GMAP) campaign was conducted during 2020-2021 by integrating Pandora Asia Network, aircraft, and in situ measurements. In the present study, GMAP-2020 measurements were applied to evaluate urban air quality and explore the synergy of Pandora column (PC) NO2 measurements and surface in situ (SI) NO2 measurements for Seosan, South Korea, where large point source (LPS) emissions are densely clustered. Due to the difficulty of interpreting the effects of LPS emissions on air quality downwind of Seosan using SI monitoring networks alone, we explored the combined analysis of both PC-NO2 and SI-NO2 measurements. Agglomerative hierarchical clustering using vertical meteorological variables combined with PC-NO2 and SI-NO2 yielded three distinct conditions: synoptic wind-dominant (SD), mixed (MD), and local wind-dominant (LD). These results suggest meteorology-dependent correlations between PC-NO2 and SI-NO2. Overall, yearly daytime mean (11:00-17:00 KST) PC-NO2 and SI-NO2 statistical data showed good linear correlations (R =similar to 0.73); however, the differences in correlations were largely attributed to meteorological conditions. SD conditions characterized by higher wind speeds and advected marine boundary layer heights suppressed fluctuations in both PC-NO2 and SI-NO2, driving a uniform vertical NO2 structure with higher correlations, whereas under LD conditions, LPS plumes were decoupled from the surface or were transported from nearby cities, weakening correlations through anomalous vertical NO2 gradients. The discrepancies suggest that using either PC-NO2 or SI-NO2 observations alone involves a higher possibility of uncertainty under LD conditions or prevailing transport processes. However, under MD conditions, both pollution ventilation due to high surface wind speeds and daytime photochemical NO2 loss contributed to stronger correlations through a decline in both PC-NO2 and SI-NO2 towards noon. Thus, Pandora Asia Network observations collected over 13 Asian countries since 2021 can be utilized for detailed investigation of the vertical complexity of air quality, and the conclusions can be also applied when performing GEMS observation interpretation in combination with SI measurements. |
学科领域 | Environmental Sciences; Meteorology & Atmospheric Sciences |
语种 | 英语 |
WOS研究方向 | Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences |
WOS记录号 | WOS:000843212700001 |
来源期刊 | ATMOSPHERIC CHEMISTRY AND PHYSICS
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文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/273074 |
作者单位 | National Institute of Environmental Research (NIER), Republic of Korea; National Institute of Environmental Research (NIER), Republic of Korea; Pukyong National University; Yonsei University; Pusan National University; Pusan National University |
推荐引用方式 GB/T 7714 | Chang, Lim-Seok,Kim, Donghee,Hong, Hyunkee,et al. Evaluation of correlated Pandora column NO2 and in situ surface NO2 measurements during GMAP campaign[J],2022,22(16):18. |
APA | Chang, Lim-Seok.,Kim, Donghee.,Hong, Hyunkee.,Kim, Deok-Rae.,Yu, Jeong-Ah.,...&Kim, Cheol-Hee.(2022).Evaluation of correlated Pandora column NO2 and in situ surface NO2 measurements during GMAP campaign.ATMOSPHERIC CHEMISTRY AND PHYSICS,22(16),18. |
MLA | Chang, Lim-Seok,et al."Evaluation of correlated Pandora column NO2 and in situ surface NO2 measurements during GMAP campaign".ATMOSPHERIC CHEMISTRY AND PHYSICS 22.16(2022):18. |
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