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对流层O_3区域输送的定量评估方法研究
引用本文:李杰,王自发,吴其重.对流层O_3区域输送的定量评估方法研究[J].气候与环境研究,2010,15(5):529-540.
作者姓名:李杰  王自发  吴其重
作者单位:1. 中国科学院大气物理研究所竺可桢-南森国际研究中心,北京,100029;中国科学院大气物理研究所大气边界层物理和大气化学国家重点实验室,北京,100029
2. 中国科学院大气物理研究所竺可桢-南森国际研究中心,北京,100029;中国科学院研究生院,北京,100049
基金项目:国家自然科学青年基金40805051和国家重点基础研究发展计划项目2005CB422205
摘    要:主要介绍一个可用于化学输送模式的对流层O3来源和过程追踪技术。该方法可定量估算不同区域的光化学反应通过输送过程对目标地区O3浓度的贡献,并且克服了光化学非线性特征对估算结果的影响。以研究2001年中国南部和北部光化学生成O3的输送为例,通过与改进的敏感性分析方法比较,系统评估了该方法的合理性。比较结果表明,两种方法的估算结果在水平、垂直分布和典型输送个例等方面具有良好的一致性,说明污染物来源和过程追踪技术可以为量化区域输送对目标地区O3浓度的影响提供合理结果。个例模拟分析的结果也表明,中国南部和北部光化学生成的O3可以通过输送对整个东亚O3产生重要影响,并且在不同的季节呈现不同的特征。

关 键 词:对流层O3  区域输送  污染物来源过程追踪技术

A Study of the Quantitative Diagnosis for the Regional Transport of Tropospheric O3 Concentrations
LI Jie,WANG Zifa and WU Qizhong.A Study of the Quantitative Diagnosis for the Regional Transport of Tropospheric O3 Concentrations[J].Climatic and Environmental Research,2010,15(5):529-540.
Authors:LI Jie  WANG Zifa and WU Qizhong
Institution:LI Jie1,2,WANG Zifa1,and WU Qizhong1,31 Nansen-Zhu International Research Centre,Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029 2 State Key Laboratory of Atmospheric Boundary Physics and Atmospheric Chemistry,Beijing 100029 3 Graduate University of Chinese Academy of Sciences,Beijing 100049
Abstract:An online tracer-tagged method coupled into a chemical transport model was described. Without the errors caused by the non-linear character of O3 photochemistry, the online tracer-tagged method can be used to estimate the contributions from the photochemistry over various regions to the total O3 concentrations in the targeted region in one simulation. To evaluate the results, taking the contributions from the photochemistry over the tagged northern and southern parts of China as an example, the online tracer-tagged method was compared with the revised sensitivity analysis. The comparison suggested that the online tracer-tagged method can reproduce the horizontal and vertical distributions of the contributions from two tagged regions to the O3 concentrations in East Asia, and also capture the typical heavy regional transport episode. This indicated the tracer-tagged method in this study can be used to quantitatively assess the impact of the regional transport on the tropospheric O3. The analysis also showed that the photochemistry in the southern and northern parts of China had a noticeable impact on O3 in East Asia, and varied with the seasons.
Keywords:tropospheric O3  regional transport  online tracer-tagged method
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