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关于空间分辨率对大气汞建模的影响。

On the effect of spatial resolution on atmospheric mercury modeling.

作者信息

Seigneur Christian, Karamchandani Prakash, Vijayaraghavan Krish, Lohman Kristen, Shia Run-Lie, Levin Leonard

机构信息

Atmospheric and Environmental Research, Inc., 2682 Bishop Drive, Suite #120, San Ramon, CA, USA.

出版信息

Sci Total Environ. 2003 Mar 20;304(1-3):73-81. doi: 10.1016/S0048-9697(02)00558-2.

Abstract

Mathematical modeling of the atmospheric fate and transport of mercury (Hg) was conducted using three nested domains covering global, continental and regional scales with horizontal resolutions of approximately 1000, 100 and 20 km, respectively. Comparisons of modeling results with wet deposition fluxes show a coefficient of determination (r(2)) of 0.45 for the continental simulation and 0.14 for the continental/regional simulation. The poor correlation obtained in the regional simulation results to a large extent from the fact that the model predicts an increasing gradient in Hg wet deposition from Minnesota to Pennsylvania, which is not observed in the monitoring network. The use of a finer spatial resolution (20 km) improves model performance in Minnesota and Wisconsin (upwind of major Hg emission sources) but degrades model performance in Pennsylvania (downwind of major Hg emission sources). We suggest the hypothesis that some key Hg chemical transformations are likely missing in current models of atmospheric Hg.

摘要

利用三个嵌套区域对汞(Hg)在大气中的归宿和传输进行了数学建模,这些区域分别覆盖全球、大陆和区域尺度,水平分辨率约为1000、100和20公里。将模拟结果与湿沉降通量进行比较,大陆模拟的决定系数(r²)为0.45,大陆/区域模拟的决定系数为0.14。区域模拟中得到的较差相关性在很大程度上源于该模型预测从明尼苏达州到宾夕法尼亚州汞湿沉降的梯度增加,而监测网络中并未观察到这一现象。使用更精细的空间分辨率(20公里)可提高明尼苏达州和威斯康星州(主要汞排放源的上风区)的模型性能,但会降低宾夕法尼亚州(主要汞排放源的下风区)的模型性能。我们提出这样一个假设,即当前大气汞模型可能遗漏了一些关键的汞化学转化过程。

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