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Dynamic modeling of chemical fate and transport in multimedia environments at watershed scale—Ⅰ: Theoretical considerations and model implementation

机译:分水岭规模的多媒体环境中化学命运和运输的动态建模——Ⅰ:理论考虑和模型实现

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摘要

A geo-referenced environmental fate model was developed for analyzing unsteady-state dispersion and distribution of chemicals in multimedia environmental systems. Chemical transport processes were formulated in seven environmental compartments of air, canopy, surface soil, root-zone soil, vadose-zone soil, surface water, and sediment. The model assumed that the compartments were completely mixed and chemical equilibrium was established instantaneously between the sub-compartments within each compartment. A fugacity approach was utilized to formulate the mechanisms of diffusion, advection, physical interfacial transport, and transformation reactions. The governing equations of chemical mass balances in the environmental compartments were solved simultaneously to reflect the interactions between the compartments. A geographic information system (GIS) database and geospatial analysis were integrated into the chemical transport simulation to provide spatially explicit estimations of model parameters at watershed scale. Temporal variations of the environmental properties and source emissions were also considered in the parameter estimations. The outputs of the model included time-dependent chemical concentrations in each compartment and its sub-compartments, and inter-media mass fluxes between adjacent compartments at daily time steps.
机译:建立了地理参考环境命运模型,用于分析多媒体环境系统中化学物质的非稳态分散和分布。在空气,冠层,地表土壤,根区土壤,渗流区土壤,地表水和沉积物的七个环境区室中制定了化学运输过程。该模型假定隔室完全混合,并且每个隔室内的子隔室之间即刻建立了化学平衡。逸度法被用来制定扩散,对流,物理界面迁移和转化反应的机理。同时解决了环境隔室中化学物质平衡的控制方程,以反映各个隔室之间的相互作用。将地理信息系统(GIS)数据库和地理空间分析集成到化学迁移模拟中,以在分水岭范围内提供模型参数的空间显式估计。在参数估计中还考虑了环境特性和源排放的时间变化。该模型的输出包括每个隔间及其子隔间中随时间变化的化学浓度,以及每天时间步长相邻隔间之间的介质间质量通量。

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