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Investigation of effects of varying model inputs on mercury deposition estimates in the Southwest US

机译:不同模型投入对美国西南部汞沉积估计的影响调查

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摘要

The Community Multiscale Air Quality (CMAQ) model version 4.7.1 was used to simulate mercury wet and dry deposition for a domain covering the continental United States (US). The simulations used MM5-derived meteorological input fields and the US Environmental Protection Agency (EPA) Clear Air Mercury Rule (CAMR) emissions inventory. Using sensitivity simulations with different boundary conditions and tracer simulations, this investigation focuses on the contributions of boundary concentrations to deposited mercury in the Southwest (SW) US. Concentrations of oxidized mercury species along the boundaries of the domain, in particular the upper layers of the domain, can make significant contributions to the simulated wet and dry deposition of mercury in the SW US. In order to better understand the contributions of boundary conditions to deposition, inert tracer simulations were conducted to quantify the relative amount of an atmospheric constituent transported across the boundaries of the domain at various altitudes and to quantify the amount that reaches and potentially deposits to the land surface in the SW US. Simulations using alternate sets of boundary concentrations, including estimates from global models (Goddard Earth Observing System-Chem (GEOS-Chem) and the Global/Regional Atmospheric Heavy Metals (GRAHM) model), and alternate meteorological input fields (for different years) are analyzed in this paper. CMAQ dry deposition in the SW US is sensitive to differences in the atmospheric dynamics and atmospheric mercury chemistry parameterizations between the global models used for boundary conditions.
机译:社区多尺度空气质量(CMAQ)型号4.7.1用于模拟覆盖美国大陆(美国)的领域的汞湿和干沉积。模拟使用MM5衍生的气象投入领域和美国环境保护局(EPA)清除空气汞规则(CAMR)排放量库存。使用具有不同边界条件和示踪模拟的灵敏度模拟,这项调查侧重于边界浓度在西南(SW)中沉积汞的贡献。沿域的边界的浓度氧化汞种,特别是域的上层,可以对SW US中的模拟湿和干燥沉积进行显着贡献。为了更好地了解沉积边界条件的贡献,进行了惰性示踪剂模拟以量化在各个高度的域的边界上传输的大气成分的相对量,并量化到达并潜在沉积在土地上的量表面在SW美国。使用替代边界集中的模拟,包括来自全球模型的估计(戈达德地球观察系统 - Chem(Geos-Chem)和全球/区域大气重金属(Grahm)模型),以及替代气象投入领域(不同年份)是本文分析。 SW US中的CMAQ干沉积对用于边界条件的全球模型之间的大气动力学和大气汞化学参数的差异敏感。

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