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上海城区多环芳烃的多介质归趋模拟研究
中国环境科学 2011,31(6) :984~990 China Environmental Science
上海城区多环芳烃的多介质归趋模拟研究
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汪祖丞,刘 敏 ,杨 毅,谢雨杉 (华东师范大学地理系,教育部地理信息科学重点实验室,上海 200062)
摘要:利用城市多介质逸度模型模拟了稳态假设下上海城区 16 种 PAHs 在大气、水体、沉积物和植物等中的浓度分布,与实测值进行对
比,并根据模拟结果计算了相间迁移通量.结果表明,大气直接排放输入是 PAHs 进入环境的主要途径,迁移过程包括扩散、沉降和侵蚀等,平
流输出是其在系统中损失的主要途径; 土壤和沉积物是 PAHs 主要的汇( 占 94.4%), 其在不透水层上覆盖的膜中浓度达到最大
(156g/m3),PAHs 在沉积物和土壤中停留时间最长;随着环数的增加, PAHs 在水体、植被和土壤中的降解损失所占比例从 2.3%逐渐增加至
48.9%,而在大气中的降解损失则从 91.5%减少至 4.0%.模型计算浓度与实测浓度吻合较好,验证了模型的可靠性,并通过灵敏度分析,确定了
模型的关键参数.
关键词:逸度模型;多环芳烃;多介质归趋;上海
中图分类号:X142 文献标识码:A 文章编号:1000-6923(2011)06-0990-07
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Simulation of multimedia fate of PAHs in Shanghai City. WANG Zu-cheng, LIU Min , YANG Yi, XIE Yu-shan(Key
Laboratory of Geographic Information Science, Ministry of Education, Department of Geography, East China Normal
University, Shanghai 200062, China). China Environmental Science, 2011,31(6):984~990
Abstract :The MUM model was used to simulate the concentration distribution of PAHs in air, water, sediment, soil and
plants in Shanghai city. Atmospheric emission was the dominant PAHs. The transport processes included diffusion,
sedimentation , erosion ect.; while advective transport caused the main loss in the system. Sediment/soil was the main sink
of PAHs (up to 94.4% of total mass), and the highest PAHs concentration was calculated in the film above aquifuge. The
retention time of PAHs was highest in sediment/soil, and with the increasing rings, the reaction loss proportion of PAHs in
water, plant and soil was increasing, while it was decreasing in air. The reliability of the model was verified by the
agreement between the calculated and measured the concentrations. The key model parameters were selected
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