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保定市PM2.5和臭氧污染特征分析

李欢欢 张凯 牛璨 罗宇骞 王涛 支敏康 张迎仲 玄兆坤

李欢欢, 张凯, 牛璨, 罗宇骞, 王涛, 支敏康, 张迎仲, 玄兆坤. 保定市PM2.5和臭氧污染特征分析[J]. 环境科学研究, 2022, 35(3): 683-690. doi: 10.13198/j.issn.1001-6929.2021.12.14
引用本文: 李欢欢, 张凯, 牛璨, 罗宇骞, 王涛, 支敏康, 张迎仲, 玄兆坤. 保定市PM2.5和臭氧污染特征分析[J]. 环境科学研究, 2022, 35(3): 683-690. doi: 10.13198/j.issn.1001-6929.2021.12.14
LI Huanhuan, ZHANG Kai, NIU Can, LUO Yuqian, WANG Tao, ZHI Minkang, ZHANG Yingzhong, XUAN Zhaokun. PM2.5 and O3 Pollution Characteristics in Baoding City[J]. Research of Environmental Sciences, 2022, 35(3): 683-690. doi: 10.13198/j.issn.1001-6929.2021.12.14
Citation: LI Huanhuan, ZHANG Kai, NIU Can, LUO Yuqian, WANG Tao, ZHI Minkang, ZHANG Yingzhong, XUAN Zhaokun. PM2.5 and O3 Pollution Characteristics in Baoding City[J]. Research of Environmental Sciences, 2022, 35(3): 683-690. doi: 10.13198/j.issn.1001-6929.2021.12.14

保定市PM2.5和臭氧污染特征分析

doi: 10.13198/j.issn.1001-6929.2021.12.14
基金项目: 河北省社会科学基金项目(No.HB17SH010)
详细信息
    作者简介:

    李欢欢(1996-),女,河北保定人,1501690865@qq.com

    通讯作者:

    张凯(1977-),女,山东青州人,研究员,博士,主要从事大气环境和大气化学研究,zhangkai@craes.org.cn

  • 中图分类号: X51

PM2.5 and O3 Pollution Characteristics in Baoding City

Funds: Hebei Social Science Foundation of China (No.HB17SH010)
  • 摘要: 为深入了解保定市空气质量状况,揭示PM2.5与臭氧(O3)的变化特征及相互关系,利用小波分析法对保定市2013—2020年每年4—9月AQI、PM2.5、O3-8 h (O3日最大8 h滑动平均值)和NO2浓度的逐日数据进行分析. 结果表明:①2013—2018年保定市O3污染呈逐年加重趋势,最大日浓度达到347 μg/m3;随着治理措施的颁布与实施,PM2.5超标天数由2013年的97 d减至2020年的1 d,PM2.5超标情况逐年改善. ②O3超标天数由2013年的3 d增至2018年的95 d,2020年减至61 d;O3超标天数占PM2.5和O3超标总天数的比例从2013年的3%增至2020年的98%,说明O3逐渐成为影响保定市空气质量的主要污染物. ③2013年保定市O3-8 h浓度低于“2+26”城市均值,2014—2020年O3-8 h浓度高于或接近“2+26”城市均值,说明近年来保定市O3-8 h浓度的升幅已超过“2+26”城市的平均水平. ④小波分析发现,2013—2020年(除2015年和2018年外)AQI与PM2.5污染序列的第1主周期相近,从2017年开始,AQI与O3-8 h污染序列的第1主周期和第2主周期均一致,说明近年来保定市空气污染逐渐由PM2.5污染转为PM2.5与O3复合污染. ⑤在同一时间尺度范围内,PM2.5与O3-8 h污染序列的震荡频率基本一致,说明二者存在较明显的正相关关系;2015—2019年,NO2与O3-8 h污染序列的震荡频率趋于一致,说明保定市O3-8 h浓度受前体物NO2影响较大,2020年震荡频率有较大差异,这可能与新冠肺炎疫情复工后生产规模尚未完全恢复,致使NO2、PM2.5等污染物排放强度同比降低有关. 因此,减少NO2排放,协同控制多污染物是实现保定市空气质量改善的主要途径.

     

  • 图  1  2013—2020年保定市PM2.5与O3-8 h日均浓度变化趋势

    Figure  1.  Variation trends of the daily average concentrations of PM2.5 and O3-8 h in Baoding City from 2013 to 2020

    图  2  2013—2020年保定市污染物超标天数及O3超标天数占比的变化

    Figure  2.  Days of exceeding secondary limit of NAAQS for each pollutant during summer in Baoding City from 2013 to 2020

    图  3  2013—2020年AQI的小波系数实部与小波方差

    Figure  3.  The wavelet power and variance for AQI from 2013 to 2020

    图  4  2013—2020年PM2.5的小波系数实部与小波方差

    Figure  4.  The wavelet power and variance for PM2.5 from 2013 to 2020

    图  5  2013—2020年O3-8 h的小波系数实部与小波方差

    Figure  5.  The wavelet power and variance for O3-8 h from 2013 to 2020

    图  6  2013—2020年NO2的小波系数实部与小波方差

    Figure  6.  The wavelet power and variance for NO2 from 2013 to 2020

    表  1  2013—2020年保定市与“2+26”城市主要污染物浓度的距平结果

    Table  1.   Anomalous results of main pollutant anomalies between Baoding and the ‘2+26’ cities from 2013 to 2020

    年份AQIPM2.5浓度O3-8 h浓度NO2浓度
    2013 0.15 0.05 −0.29 −0.09
    2014 0.15 0.14 0.17 −0.14
    2015 0.05 0.11 0.21 0.01
    2016 0.06 0.15 0.02 0.08
    2017 0.06 0.15 0.14 0.14
    2018 0.01 0.07 0.10 0.10
    2019 −0.05 −0.02 0.04 0.04
    2020 −0.10 −0.13 0.01 0.01
    注:数值=(保定市值−“2+26”城市均值)/“2+26”城市均值.
    下载: 导出CSV
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  • 收稿日期:  2021-07-31
  • 修回日期:  2021-11-17
  • 网络出版日期:  2022-03-22

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