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A new method for quantitatively characterizing atmospheric oxidation capacity

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【Author】 CHENG YanLi1,2, WANG XueSong1, LIU ZhaoRong1, BAI YuHua1 & LI JinLong1 1 College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China; 2 Chinese Academy of Meteorological Sciences, Beijing 100081, China

【摘要】 Based on atmospheric chemical kinetics, the rate constant of overall pseudo-first order oxidation re-moval of gaseous pollutants (Kpor,T) is proposed to characterize the atmospheric oxidation capacity in troposphere. Being a quantitative parameter, Kpor,T can be used to address the issues related to at-mospheric oxidation capacity. By applying this method, the regional oxidation capacity of the atmos-phere in Pearl River Delta (PRD) is numerically simulated based on CBM-IV chemical mechanism. Re-sults show the significant spatio-temporal variation of the atmospheric oxidation capacity in PRD. It is found that OH initiated oxidations, heterogeneous oxidation of SO2, and photolysis of aldehydes are the three most important oxidation processes influencing the atmospheric oxidation capacity in PRD.

【Abstract】 Based on atmospheric chemical kinetics, the rate constant of overall pseudo-first order oxidation re-moval of gaseous pollutants (Kpor,T) is proposed to characterize the atmospheric oxidation capacity in troposphere. Being a quantitative parameter, Kpor,T can be used to address the issues related to at-mospheric oxidation capacity. By applying this method, the regional oxidation capacity of the atmos-phere in Pearl River Delta (PRD) is numerically simulated based on CBM-IV chemical mechanism. Re-sults show the significant spatio-temporal variation of the atmospheric oxidation capacity in PRD. It is found that OH initiated oxidations, heterogeneous oxidation of SO2, and photolysis of aldehydes are the three most important oxidation processes influencing the atmospheric oxidation capacity in PRD.

【基金】 the National Basic Research Program of China (Grant Nos: 2005CB422204, 2002CB410802, and 2002CB410801)
  • 【文献出处】 Science in China(Series B:Chemistry) ,中国科学(B辑:化学)(英文版) , 编辑部邮箱 ,2008年11期
  • 【分类号】X51
  • 【被引频次】1
  • 【下载频次】37
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