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Chemical cycling and deposition of atmospheric mercury in polar regions: review of recent measurements and comparison with models

机译:极性区域中大气汞的化学循环和沉积:近期测量结果的回顾和与模型的比较

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Mercury (Hg) is a worldwide contaminant that can cause adverse health effects to wildlife and humans. While atmospheric modeling traces the link from emissions to deposition of Hg onto environmental surfaces, large uncertainties arise from our incomplete understanding of atmospheric processes (oxidation pathways, deposition, and re-emission). Atmospheric Hg reactivity is exacerbated in high latitudes and there is still much to be learned from polar regions in terms of atmospheric processes. This paper provides a synthesis of the atmospheric Hg monitoring data available in recent years (2011-2015) in the Arctic and in Antarctica along with a comparison of these observations with numerical simulations using four cutting-edge global models. The cycle of atmospheric Hg in the Arctic and in Antarctica presents both similarities and differences. Coastal sites in the two regions are both influenced by springtime atmospheric Hg depletion events and by summertime snowpack re-emission and oceanic evasion of Hg. The cycle of atmospheric Hg differs between the two regions primarily because of their different geography. While Arctic sites are significantly influenced by northern hemispheric Hg emissions especially in winter, coastal Antarctic sites are significantly influenced by the reactivity observed on the East Antarctic ice sheet due to katabatic winds. Based on the comparison of multi-model simulations with observations, this paper discusses whether the processes that affect atmospheric Hg seasonality and inter-annual variability are appropriately represented in the models and identifies research gaps in our understanding of the atmospheric Hg cycling in high latitudes.
机译:汞(Hg)是一种全球性污染物,会对野生生物和人类造成不利的健康影响。虽然大气建模可以追踪汞排放到环境表面沉积之间的联系,但由于我们对大气过程(氧化途径,沉积和再排放)的不完全了解,因此产生了很大的不确定性。在高纬度地区,大气中汞的反应性加剧,从大气过程的角度来看,从极地地区仍有很多值得学习的地方。本文总结了北极(北极)和南极洲最近几年(2011-2015年)可获得的大气汞监测数据,并将这些观测结果与使用四个前沿全球模型的数值模拟进行了比较。北极和南极大气汞的循环既有相似之处,也有不同之处。这两个地区的沿海地点都受到春季大气汞消耗事件以及夏季积雪的再排放和汞的海洋逃逸的影响。大气Hg的循环在两个区域之间有所不同,主要是因为它们的地理位置不同。虽然北极地区受北半球汞排放的影响很大,尤其是在冬季,但南极沿海地区受卡塔巴特风影响而在东南极冰盖上观测到的反应性显着影响。在将多模型模拟与观测结果进行比较的基础上,本文讨论了在模型中是否适当地代表了影响大气汞季节变化和年际变化的过程,并确定了我们在了解高纬度大气汞循环方面的研究差距。

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