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菲在长江口的多介质归趋模拟
引用本文:汪祖丞,刘敏,杨毅,王丽丽.菲在长江口的多介质归趋模拟[J].环境科学,2011,32(8):2444-2449.
作者姓名:汪祖丞  刘敏  杨毅  王丽丽
作者单位: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
基金项目:国家自然科学基金项目(40971268,40801201,);博士点基金项目(20090076110020);上海市教委“晨光计划”项目(09CG19)
摘    要:利用LevelⅢ逸度模型模拟了稳态假设下菲在长江口中大气、水体、沉积物和植物中的分布,根据模拟结果计算了相间迁移通量,并通过灵敏度分析确定了模型的关键参数.结果表明,大气平流是研究区菲的主要来源,大气和水的平流输出则是菲从研究区环境中消失的主要途径;在反应损失中,气相中的反应损失最大,沉积物的反应损失最小;大气是菲的主...

关 键 词:逸度模型    长江口  灵敏度  多介质归趋
收稿时间:2010/9/27 0:00:00
修稿时间:2010/12/10 0:00:00

Simulation of Multimedia Fate of Phenanthrene in the Yangtze Estuary
WANG Zu-cheng,LIU Min,YANG Yi and WANG Li-li.Simulation of Multimedia Fate of Phenanthrene in the Yangtze Estuary[J].Chinese Journal of Environmental Science,2011,32(8):2444-2449.
Authors:WANG Zu-cheng  LIU Min  YANG Yi and WANG Li-li
Institution:Key Laboratory of Geographic Information Science of the Ministry of Education, Department of Geography, East China Normal University, Shanghai 200062, China.
Abstract:A Level III fugacity model is used to simulate the concentration distribution of phenanthrene in air, water, sediment and plants in the Yangtze estuary. Based on simulation results, transfer fluxes among-phase are calculated, and also, the key model parameters are determined by means of sensitivity analysis. The results indicated that the advection of air is the main source of phenanthrene in this area, while the main disappeared way from the study region is the advection of air and water. The degradation of phenanthrene in air is the most and the degradation in sediment is the least. The air is the major store of phenanthrene, where phenanthrene was found accounts for 86.36% of the total amount, however, the phenanthrene concentrations is only 0.5 x 10(-7) mol x m(-3). The phenanthrene concentrations are higher in sediment and plants which are 1.5 x 10(-6) mol x m(-3) and 4.4 x 10(-6) mol x m(-3), respectively. The distribute coefficient and the sedimentation rate of the phenanthrene control the distribution of the phenanthrene in each medium.
Keywords:fugacity model  phenanthrene  Yangtze estuary  sensitivity  multimedia fate
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