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The Influence of Climate Change on Atmospheric Deposition of Mercury in the Arctic—A Model Sensitivity Study

机译:气候变化对北极大气汞沉积的影响-模型敏感性研究

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Mercury (Hg) is a global pollutant with adverse health effects on humans and wildlife. It is of special concern in the Arctic due to accumulation in the food web and exposure of the Arctic population through a rich marine diet. Climate change may alter the exposure of the Arctic population to Hg. We have investigated the effect of climate change on the atmospheric Hg transport to and deposition within the Arctic by making a sensitivity study of how the atmospheric chemistry-transport model Danish Eulerian Hemispheric Model (DEHM) reacts to climate change forcing. The total deposition of Hg to the Arctic is 18% lower in the 2090s compared to the 1990s under the applied Special Report on Emissions Scenarios (SRES-A1B) climate scenario. Asia is the major anthropogenic source area (25% of the deposition to the Arctic) followed by Europe (6%) and North America (5%), with the rest arising from the background concentration, and this is independent of the climate. DEHM predicts between a 6% increase (Status Quo scenario) and a 37% decrease (zero anthropogenic emissions scenario) in Hg deposition to the Arctic depending on the applied emission scenario, while the combined effect of future climate and emission changes results in up to 47% lower Hg deposition.
机译:汞(Hg)是一种全球污染物,对人类和野生生物具有不利的健康影响。由于食物网中的积累以及通过丰富的海洋饮食使北极人口暴露在北极,北极尤其令人关注。气候变化可能会改变北极人口对汞的暴露。通过对大气化学迁移模型丹麦欧拉半球模型(DEHM)对气候变化强迫的反应进行敏感性研究,我们研究了气候变化对大气中汞向北极迁移和在北极内部沉积的影响。在适用的排放情景特别报告(SRES-A1B)气候情景下,到2090年代,北极的汞总沉积量与1990年代相比减少了18%。亚洲是主要的人为来源地(占北极沉积的25%),其次是欧洲(6%)和北美(5%),其余的是背景浓度,这与气候无关。 DEHM预测,根据应用的排放情景,北极汞的沉积量将增加6%(现状情景)到37%的减少量(零人为排放情景),而未来气候和排放变化的综合影响将导致汞沉积降低47%。

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