[Analysis of Characteristics and Sensitivity of Photochemical Pollution During High Ozone Season in Shanghai from 2016 to 2020].

Q2 Environmental Science
Dan Jin
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引用次数: 0

Abstract

The sensitivity analysis of ozone generation in key ozone-polluted regions and cities is an important basis for the prevention and control of near-surface ozone (O3) pollution. Based on the five-year data of ozone, VOCs, and NOx from three typical stations in Shanghai, namely Dianshan Lake Station (suburban area), Pudong Station (urban area), and Xinlian Station (industrial area) from 2016 to 2020, the nonlinear relationship between ozone and precursors (VOCs and NOx) during the high-ozone season in the five years was quantitatively analyzed using an observation model. The results showed that the peak months of near-surface ozone in Shanghai were from April to September during 2016 to 2020, with the highest values appearing from June to August. The volume fraction of VOCs and NO2 concentration had a strong indicative significance for the O3 concentration at Pudong Station. The O3 concentration at Dianshan Lake Station was mainly influenced by regional environment, meteorological factors, and cross-regional transmission. The ozone concentration at Xinlian Station was a combination of environmental background concentration and industrial area photochemical pollution. Pudong Station and Dianshan Lake Station were in the VOCs control zone. Xinlian Station was gradually closer to the NOx control zone from 2016 to 2019, transitioning to the VOCs control zone since 2020. The L·OH of Pudong Station, Dianshan Lake Station, and Xinlian Station were: NOx control area>collaborative control area>VOCs control area.

[2016-2020年上海臭氧高发季节光化学污染特征及敏感性分析]。
对重点臭氧污染区域和城市的臭氧生成情况进行敏感性分析,是预防和控制近地面臭氧(O3)污染的重要依据。污染的重要依据。基于上海淀山湖站(郊区)、浦东站(城区)和新联站(工业区)三个典型站点2016-2020年五年的臭氧、VOCs和NOx数据,采用非线性模型分析了近地面臭氧、VOCs和NOx的变化趋势。从 2016 年到 2020 年,臭氧与前体物质(挥发性有机物和氮氧化物)在高臭氧季节的非线性关系的非线性关系进行了定量分析。结果表明,2016-2020年期间,上海近地面臭氧的峰值月份为4-9月,最高值出现在6-8月。浦东站的 VOCs 体积分数和 NO2 浓度对 O3 浓度有较强的指示意义。淀山湖站的臭氧浓度主要受区域环境、气象因素和跨区域传输的影响。新联站的臭氧浓度是环境本底浓度和工业区光化学污染的综合结果。浦东站和淀山湖站处于 VOCs 控制区。新联站从 2016 年至 2019 年逐渐接近 NOx 控制区,2020 年起过渡到 VOCs 控制区。浦东站、淀山湖站和新联站的 L-OH 均为: NOx 控制区>协同控制区>VOCs 控制区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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