首页 | 本学科首页   官方微博 | 高级检索  
     检索      

乌鲁木齐市疫情期间交通流量对空气质量影响的分析
引用本文:袁波波,马艳华,张蕾,段小兵,赵祥辉.乌鲁木齐市疫情期间交通流量对空气质量影响的分析[J].交通节能与环保,2021,17(2):16-20.
作者姓名:袁波波  马艳华  张蕾  段小兵  赵祥辉
作者单位:新疆维吾尔自治区交通运输环境保护工程研究中心,新疆 乌鲁木齐 830000
摘    要:选取环境空气中PM2.5、PM10、CO、NO2、O3污染物及空气质量指数(AQI)分析乌鲁木齐市疫情期间交通流量对空气质量的影响。结果表明,在乌鲁木齐市两次疫情交通管制期间,交通流量显著降低,环境空气中PM2.5、PM10、CO、NO2、O3污染物浓度及AQI随之降低,尤其是PM10、CO和NO2浓度下降较为显著。自乌鲁木齐市解除交通管制,车辆恢复正常通行后,PM10、CO及NO2浓度逐渐增加甚至反超同期。鉴于PM、CO及NO2是汽车尾气的主要污染物,因此可推测交通流量增加或降低,环境空气质量也会随之发生变化,尤其是空气中PM10、CO及NO2污染物浓度呈正相关变化。

关 键 词:汽车尾气  交通流量  空气质量  污染物

Analysis of the Impact of Traffic Flow on Air Quality During the Epidemic in Urumqi
YUAN Bobo,MA Yanhua,ZHANG Lei,DUAN Xiaobing,ZHAO Xianghui.Analysis of the Impact of Traffic Flow on Air Quality During the Epidemic in Urumqi[J].Marine Energy Saving,2021,17(2):16-20.
Authors:YUAN Bobo  MA Yanhua  ZHANG Lei  DUAN Xiaobing  ZHAO Xianghui
Institution:(Xinjiang Uygur Autonomous Region Transportation Environmental Protection Engineering Research Center,Urumqi Xinjiang 830000,China)
Abstract:Select PM2.5,PM10,CO,NO2,O3 pollutants in ambient air and air quality index(AQI)to analyze the impact of traffic flow on air quality during the epidemic in Urumqi.The results showed that during the two epidemic traffic control periods in Urumqi,the traffic flow was significantly reduced,and the concentration of PM2.5,PM10,CO,NO2,O3 pollutants and AQI in the ambient air decreased accordingly,especially the concentration of PM10,CO,and NO2 decreased.More significant.Since Urumqi City lifted traffic control and vehicles resumed normal traffic,the concentrations of PM10,CO and NO2 have gradually increased and even exceeded the same period.Since PM,CO,and NO2 are the main pollutants of automobile exhaust,it can be inferred that the increase or decrease of traffic flow will also change the ambient air quality,especially the concentration of PM10,CO and NO2 pollutants in the air are positively correlated.
Keywords:automobile exhaust  traffic flow  air quality  pollutants
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号