Research on ozone formation sensitivity based on observational methods: Development history, methodology, and application and prospects in China

中国 污染 环境科学 大气污染 控制(管理) 灵敏度(控制系统) 空气污染 领域(数学) 环境规划 观察研究 臭氧 气象学 污染防治 环境污染 环境保护 环境资源管理 风险分析(工程) 臭氧消耗 研究开发
作者
Wanghui Chu,Hong Li,Yuanyuan Ji,Xin Zhang,Likun Xue,Jian Gao,Cong An
出处
期刊:Journal of Environmental Sciences-china [Elsevier]
卷期号:138: 543-560 被引量:34
标识
DOI:10.1016/j.jes.2023.02.052
摘要

Observation-based method for O3 formation sensitivity research is an important tool to analyze the causes of ground-level O3 pollution, which has broad application potentials in determining the O3 pollution formation mechanism and developing prevention and control strategies. This paper outlined the development history of research on O3 formation sensitivity based on observational methods, described the principle and applicability of the methodology, summarized the relative application results in China and provided recommendations on the prevention and control of O3 pollution in China based on relevant study results, and finally pointed out the shortcomings and future development prospects in this field in China. The overview study showed that the O3 formation sensitivity in some urban areas in China in recent years presented a gradual shifting tendency from the VOC-limited regime to the transition regime or the NOx-limited regime due to the implementation of the O3 precursors emission reduction policies; O3 pollution control strategies and precursor control countermeasures should be formulated based on local conditions and the dynamic control capability of O3 pollution control measures should be improved. There are still some current deficiencies in the study field in China. Therefore, it is recommended that a stereoscopic monitoring network for atmospheric photochemical components should be further constructed and improved; the atmospheric chemical mechanisms should be vigorously developed, and standardized methods for determining the O3 formation sensitivity should be established in China in the near future.
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