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首页> 外文期刊>Atmospheric environment >A process-oriented inter-comparison of a box model and an atmospheric chemistry transport model: Insights into model structure using α-HCH as the modelled substance
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A process-oriented inter-comparison of a box model and an atmospheric chemistry transport model: Insights into model structure using α-HCH as the modelled substance

机译:盒模型与大气化学迁移模型的过程比对:以α-六氯环己烷为模型物质的模型结构的见解

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摘要

Two models that use different approaches to model the environmental distribution and fate of persistent organic pollutants (POPs) and feature different approaches to the description of environmental processes are compared. The European Variant Berkeley-Trent model (EVn-BETR) is a fugacity based box model using long-term averaged environmental input to drive inter-compartmental and inter-regional exchange processes. The POP version of the Danish Eulerian Hemispheric Model (DEHM-POP) is a 3-D atmospheric chemistry transport model using dynamic meteorological input to drive atmospheric transport and deposition to the surface. It is expanded with surface modules to describe the post-depositional re-emission processes of POPs. Seasonally averaged air, soil and water α-hexaclorocyclohexane (α-HCH) concentrations and distribution patterns within the European region are compared for a number of emissions scenarios. There is generally a good agreement between the predicted distribution patterns of the two models. Discrepancies in environmental concentrations are attributed to the difference in efficiency of atmospheric removal processes arising from the differences in model parameterisation.
机译:比较了使用不同方法对持久性有机污染物(POPs)的环境分布和命运进行建模并使用不同方法描述环境过程的两个模型。欧洲版本Berkeley-Trent模型(EVn-BETR)是基于散逸度的盒子模型,它使用长期平均环境输入来驱动部门间和区域间的交换过程。丹麦欧拉半球模型(DEHM-POP)的POP版本是一种3-D大气化学迁移模型,使用动态气象输入来驱动大气迁移和沉积到地表。它通过表面模块进行了扩展,以描述POPs的沉积后再排放过程。针对许多排放情景,比较了欧洲区域内季节性平均空气,土壤和水的α-六氯环己烷(α-HCH)浓度和分布模式。通常,在两个模型的预测分布模式之间有很好的一致性。环境浓度的差异归因于模型参数化的差异引起的大气去除过程效率的差异。

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