Diurnal and inter-annual variability of surface ozone in Baicheng region, China

With the rapid development of industry and economy, the problem of ozone (O3) pollution in China is of increasing concern in recent years. The problem of ozone pollution has become worse in Baicheng City which belongs to the province of Jilin. We analyze the spatial and temporal distribution of surf...

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Main Authors: Tingting Qin, Ju Wang, Ran Li, Chunsheng Fang
Format: Article
Language:English
Published: Taylor & Francis Group 2021-01-01
Series:Tellus: Series B, Chemical and Physical Meteorology
Subjects:
Online Access:http://dx.doi.org/10.1080/16000889.2021.1894879
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spelling doaj-91fabc276dce4c2c95019cad056133052021-03-18T15:12:47ZengTaylor & Francis GroupTellus: Series B, Chemical and Physical Meteorology1600-08892021-01-0173111010.1080/16000889.2021.18948791894879Diurnal and inter-annual variability of surface ozone in Baicheng region, ChinaTingting Qin0Ju Wang1Ran Li2Chunsheng Fang3College of New Energy and Environment, Jilin UniversityCollege of New Energy and Environment, Jilin UniversityCollege of New Energy and Environment, Jilin UniversityCollege of New Energy and Environment, Jilin UniversityWith the rapid development of industry and economy, the problem of ozone (O3) pollution in China is of increasing concern in recent years. The problem of ozone pollution has become worse in Baicheng City which belongs to the province of Jilin. We analyze the spatial and temporal distribution of surface ozone and its correlation with precursors and meteorological factors during 2015 and 2019 using data from the automatic Atmospheric Environmental Quality Monitoring Station located in Baicheng. Results showed that the daily and monthly mean values of O3 concentration were both single-peak patterns, and interannual variation presented a inverted ‘V’ pattern in Baicheng. The high concentration of O3 in a year generally occurs from May to July, with the highest daily concentration occurring in the afternoon. The total number of days with O3 concentration exceeding the limits was 35 days from 2015 to 2019, among which the number of days exceeding the maximal daily average eight-hour (MDA8) O3 of 100 μg/m3 was the highest in 2018, and the 90th percentile MDA8 showed an overall growth pattern. Seasonal variations in O3 concentration in 2018 and 2019 were not consistent with the three previous years.http://dx.doi.org/10.1080/16000889.2021.1894879o3 concentrationvariationprecursormeteorological factors
collection DOAJ
language English
format Article
sources DOAJ
author Tingting Qin
Ju Wang
Ran Li
Chunsheng Fang
spellingShingle Tingting Qin
Ju Wang
Ran Li
Chunsheng Fang
Diurnal and inter-annual variability of surface ozone in Baicheng region, China
Tellus: Series B, Chemical and Physical Meteorology
o3 concentration
variation
precursor
meteorological factors
author_facet Tingting Qin
Ju Wang
Ran Li
Chunsheng Fang
author_sort Tingting Qin
title Diurnal and inter-annual variability of surface ozone in Baicheng region, China
title_short Diurnal and inter-annual variability of surface ozone in Baicheng region, China
title_full Diurnal and inter-annual variability of surface ozone in Baicheng region, China
title_fullStr Diurnal and inter-annual variability of surface ozone in Baicheng region, China
title_full_unstemmed Diurnal and inter-annual variability of surface ozone in Baicheng region, China
title_sort diurnal and inter-annual variability of surface ozone in baicheng region, china
publisher Taylor & Francis Group
series Tellus: Series B, Chemical and Physical Meteorology
issn 1600-0889
publishDate 2021-01-01
description With the rapid development of industry and economy, the problem of ozone (O3) pollution in China is of increasing concern in recent years. The problem of ozone pollution has become worse in Baicheng City which belongs to the province of Jilin. We analyze the spatial and temporal distribution of surface ozone and its correlation with precursors and meteorological factors during 2015 and 2019 using data from the automatic Atmospheric Environmental Quality Monitoring Station located in Baicheng. Results showed that the daily and monthly mean values of O3 concentration were both single-peak patterns, and interannual variation presented a inverted ‘V’ pattern in Baicheng. The high concentration of O3 in a year generally occurs from May to July, with the highest daily concentration occurring in the afternoon. The total number of days with O3 concentration exceeding the limits was 35 days from 2015 to 2019, among which the number of days exceeding the maximal daily average eight-hour (MDA8) O3 of 100 μg/m3 was the highest in 2018, and the 90th percentile MDA8 showed an overall growth pattern. Seasonal variations in O3 concentration in 2018 and 2019 were not consistent with the three previous years.
topic o3 concentration
variation
precursor
meteorological factors
url http://dx.doi.org/10.1080/16000889.2021.1894879
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AT chunshengfang diurnalandinterannualvariabilityofsurfaceozoneinbaichengregionchina
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