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Comparison between Back-Trajectory Based Modeling and Lagrangian Backward Dispersion Modeling for Locating Sources of Reactive Gaseous Mercury

机译:基于回弹轨迹的模型与拉格朗日向后扩散模型在反应性气态汞源定位中的比较

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摘要

Reactive gaseous mercury (RGM) was measured using an annular denuder coated with potassium chloride at three rural sites (Potsdam, Stockton, and Sterling) in New York State from April 2002 to April 2003. Concentrations of RGM ranged from 0.1 to 84.6 pg m{sup}(-3) with large spatial and temporal variation. Potential source contribution function (PSCF), a common receptor modeling tool, was used with these measurements, and source-receptor relationships were calculated using back-dispersion and deposition as well as back-trajectories. Modeling results were compared with the RGM emissions inventory, and Spearman rank-order correlation coefficients were calculated. PSCF results incorporating backward dispersion and deposition were better correlated with the emissions inventory than PSCF based on back-trajectories alone. This difference was determined to be mainly due to the inclusion of dispersion rather than deposition. The main sources of RGM were suggested to be coal-fired power plants in New York and Pennsylvania, the large copper smelter in Quebec, and the taconite mining areas around the Great Lakes.
机译:从2002年4月至2003年4月,在纽约州的三个农村地区(波茨坦,斯托克顿和斯特林)使用涂有氯化钾的环形剥蚀仪测量了活性气态汞(RGM)。RGM的浓度范围为0.1至84.6 pg m { sup}(-3),时空变化较大。这些测量使用了潜在的源贡献函数(PSCF)(一种常见的受体建模工具),并使用反向扩散和沉积以及反向轨迹来计算源-受体关系。将建模结果与RGM排放清单进行比较,并计算Spearman等级相关系数。与仅基于后向轨迹的PSCF相比,结合了向后分散和沉积的PSCF结果与排放清单之间的相关性更好。确定该差异主要是由于包含分散而不是沉积。 RGM的主要来源被建议为纽约和宾夕法尼亚州的燃煤发电厂,魁北克的大型铜冶炼厂以及大湖区的ta石矿产区。

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