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徐州市大气PM2.5与O3作用关系的季节变化 被引量:62
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作者 张宇静 赵天良 +4 位作者 殷翀之 王自发 葛宝珠 刘端阳 杜欣欣 《中国环境科学》 EI CAS CSCD 北大核心 2019年第6期2267-2272,共6页
通过2013~2017年徐州市环境监测资料分析季风影响下主要大气复合污染物PM2.5和O3的相关性,并基于气象观测资料进一步探究PM2.5和O3相互作用机制的季节变化特征.结果表明:夏季风季节,PM2.5和O3呈正相关,相关系数高达0.56;冬季风季节,PM2.... 通过2013~2017年徐州市环境监测资料分析季风影响下主要大气复合污染物PM2.5和O3的相关性,并基于气象观测资料进一步探究PM2.5和O3相互作用机制的季节变化特征.结果表明:夏季风季节,PM2.5和O3呈正相关,相关系数高达0.56;冬季风季节,PM2.5和O3呈负相关,相关系数为-0.34,均通过了99%的置信检验,表明徐州市PM2.5和O3相互作用呈现相反的季节变化.夏季风季节,太阳辐射强,气温较高,大气氧化性较强,O3主导大气氧化性,大气氧化性通过促进二次颗粒物生成使得PM2.5浓度升高,夏季风季节以O3对PM2.5的促进作用主导城市大气复合污染变化;冬季风季节,太阳辐射弱,气温较低,大气氧化性较弱,高浓度的PM2.5削弱太阳辐射抑制大气光化学,导致O3生成率降低,冬季风季节以PM2.5对O3的抑制作用主导城市大气复合污染变化. 展开更多
关键词 PM2.5 O3 大气复合污染 大气氧化性 东亚季风
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Spatial Source Contributions Identification of Acid Rain over the Yangtze River Delta Using a Variety of Methods
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作者 ge bao-zhu LIU Ying +2 位作者 CHEN Huan-Sheng PAN Xiao-Le WANG Zi-Fa 《Atmospheric and Oceanic Science Letters》 CSCD 2015年第6期397-402,共6页
The source-receptor relation of wet deposition has been a continuous issue in studies of regional environmental pollution over the past two decades.In the absence of direct observational evidence,the problem is diffic... The source-receptor relation of wet deposition has been a continuous issue in studies of regional environmental pollution over the past two decades.In the absence of direct observational evidence,the problem is difficult to solve—a topic of broad international debate since the turn of the present century.In the present study,a variety of methods focused on the sources of the wet deposition of acidic substances,like sulfate and nitrate,were used to investigate the precipitation chemistry over the Yangtze River Delta(YRD)during 2007.Back-trajectory analysis associated with the observation data and a source tracing method coupled with the Nested Air Quality Prediction Modeling System(NAQPMS)are proved to be effective methods for investigating the sources of wet deposition over the YRD.Comparison among the back-trajectory,footprint,and NAQPMS results shows good consistency,both qualitatively and quantitatively.The most important contributor to acidic substances in the YRD,as well as heavy acid rain over the region,is the anthropogenic pollution from East China,which accounts for more than 70%. 展开更多
关键词 acid RAIN source IDENTIFICATION YANGTZE RIVER Delt
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