主办单位:中国气象局沈阳大气环境研究所
国际刊号:ISSN 1673-503X
国内刊号:CN 21-1531/P

气象与环境学报 ›› 2018, Vol. 34 ›› Issue (4): 59-67.doi: 10.3969/j.issn.1673-503X.2018.04.008

• 论文 • 上一篇    下一篇

气象因素对西安市西南城区大气中臭氧及其前体物的影响

李顺姬1 李红2 陈妙1 曹泽磊1 黄宇广1 李澍1   

  1. 1. 西安市环境保护科学研究院,陕西 西安 710061;2. 中国环境科学研究院,北京 100012
  • 收稿日期:2017-08-23 修回日期:2017-12-19 出版日期:2018-08-31 发布日期:2018-09-03

Effect of meteorological parameters on ozone and its precursors in the southwest urban area of Xi’an

LI Shun-ji1 LI Hong2 CHEN Miao1 CAO Ze-lei1 HUANG Yu-guang1 LI Shu1   

  1. 1. Xi’an Academy of Environmental Protection Sciences, Xi’an 710061, China; 2. Chinese Research Academy of Environmental Sciences, Beijing 100012, China
  • Received:2017-08-23 Revised:2017-12-19 Online:2018-08-31 Published:2018-09-03

摘要:

利用西安市连续观测的O3及其前体物NO、NO2和CO质量浓度数据,分析其随时间变化的污染特征,结合气象要素进行相关性分析并拟合方程。结果表明,受局地光化学反应的影响,西安市夏季O3浓度最高,且因O3-8h造成的污染占总污染天数的1/3。冬季光化学反应减弱,但前体物排放源增强,NO、NO2和CO出现最大浓度值。O3浓度日变化呈单峰型,最高值出现在16:00左右,夜间维持较低水平。NO、NO2和CO的日变化呈现白天低,夜间高的双峰型。O3与温度、风速呈正相关,与相对湿度呈负相关,NO、NO2和CO与风速呈负相关。受上风向污染源的影响,在东北、偏北和偏东气流控制下,易出现O3浓度高值。夏季O3质量浓度与气象要素的拟合度较好,可利用常规气象要素对O3浓度趋势进行预测分析。

关键词: 城市臭氧, 气象因素, 相关性

Abstract:

 Based on the observational mass concentrations of surface ozone and its precursors (NO, NO2, and CO) in Xi’an, the temporal variation of ozone pollution was analyzed, and the correlation analysis and fitting equations between ozone and some meteorological parameters were carried out. The results showed that the highest ozone concentration occurs in summer due to the effect of local photochemical reaction of ozone, and the number of pollution days caused by O3-8h accounts for 1/3 of the total number of pollution days. In winter, the photochemical reaction of ozone becomes weak, but the emissions of its precursors increase, which results to the largest NO, NO2, and CO concentrations. Diurnal variation of ozone concentrations is characterized by one peak around 16:00 and a low level at night, while the concentrations of NO, NO2, and CO are lower at daytime and higher at  the night, showing two peaks for their diurnal variations. Ozone has a positive correlation with temperature and wind speed and a negative correlation with relative humidity. The concentrations of NO, NO2, and CO have a negative correlation with wind speed. Under the control of the northeasterly, northerly, and easterly flows, ozone concentration usually increase due to the pollutant transport from the upwind direction. The fitting degree of ozone mass concentration and meteorological parameters in summer is high, which means the routine meteorological parameters can be used to predict the evolution of ozone concentration. 

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