[Sensitivity Analysis of Ozone Generation in Guangdong Province Based on OMI Satellite and Ground Observation Data].

Q2 Environmental Science 环境科学 Pub Date : 2024-11-08 DOI:10.13227/j.hjkx.202311261
Yan-Ni Liang, Xing-Hui Wang, Shu-Min Qi, Jian-Min Xu, Run Liu
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Abstract

Based on Ozone (O3) Monitoring Instrument satellite remoting sensing data and reanalysis meteorological data, an analysis was conducted on the spatiotemporal distribution and trends of tropospheric nitrogen dioxide (NO2) and formaldehyde (HCHO) in Guangdong Province from 2015 to 2020. The study also examined the changing characteristics of O3 generation sensitivity in relation to meteorological parameters. The results indicated that during 2015-2020, the tropospheric NO2 column concentration in Guangdong Province exhibited a distribution pattern with the Pearl River Delta (PRD) Region as the high-value center gradually decreasing towards the surrounding areas, with the most substantial decline observed in the Pearl River Delta. The HCHO column concentration showed a pattern of higher values in the PRD and lower values in the other regions. While most areas exhibited a decreasing trend in HCHO column concentration, the spatial distribution was more dispersed compared to that of NO2. In most regions, the ratio of HCHO to NO2 (FNR) showed an increasing trend. The area under VOCs-NOx synergistic control decreased, whereas the area under NOx control increased. By 2020, the proportions of VOCs control area, VOCs-NOx synergistic control area, and NOx control area in Guangdong Province were 0.5%, 13.1%, and 86.4%, respectively. The FNR value showed an increasing trend; a positive correlation with 2 m temperature, relative humidity, downward surface shortwave radiation, and boundary layer height; and a negative correlation with 10 m wind speed and sea level pressure. The three most influential meteorological factors were downward surface shortwave radiation(DSSR), relative humidity, and 2 m temperature, impacting the FNR value the most.

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[基于OMI卫星和地面观测资料的广东省臭氧生成敏感性分析]。
基于臭氧(O3)监测仪卫星遥感资料和再分析气象资料,分析了2015 - 2020年广东省对流层二氧化氮(NO2)和甲醛(HCHO)的时空分布及变化趋势。研究还考察了臭氧生成敏感性随气象参数的变化特征。结果表明:2015-2020年,广东省对流层NO2柱浓度呈以珠三角地区为高值中心向周边逐渐降低的分布格局,其中以珠三角地区下降幅度最大;HCHO柱浓度呈珠三角高、其他地区低的趋势。大部分地区HCHO柱浓度呈下降趋势,但空间分布较NO2分散。在大部分地区,HCHO / NO2 (FNR)呈上升趋势。VOCs-NOx协同控制面积减小,NOx协同控制面积增大。到2020年,广东省VOCs控制区、VOCs-NOx协同控制区和NOx控制区占比分别为0.5%、13.1%和86.4%。FNR值呈增加趋势,与2 m温度、相对湿度、地面向下短波辐射、边界层高度呈正相关,与10 m风速、海平面气压呈负相关。对FNR影响最大的3个气象因子是向下地面短波辐射(DSSR)、相对湿度和2 m温度。
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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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