首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Chemical cycling and deposition of atmospheric mercury in polar regions:review of recent measurements and comparison with models
【24h】

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

机译:极地地区大气汞的化学循环和沉积:综述近期测量和与模型的比较

获取原文
           

摘要

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 interannual 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)是全球污染物,可对野生动物和人类产生不利的健康影响。虽然大气建模迹线从排放的排放迹线到环境表面上的沉积中,因此来自我们对大气过程的不完全理解(氧化途径,沉积和再排放)产生了大的不确定因素。大纬度地区大气的HG反应性加剧,并且在大气过程方面仍然从极地区域从极地区域学习。本文在北极和南极洲近年来(2011-2015)提供了近年来提供的大气HG监测数据的合成,以及使用四个尖端全球模型的数值模拟的这些观察结果的比较。北极和南极洲大气Hg的循环呈现相似性和差异。这两个地区的沿海网站都受到春天大气HG消耗事件的影响,并通过夏季积雪再排放和海洋逃避的HG。大气HG的循环主要因其不同地理位置而主要不同。虽然北极地点受到北半球汞排放的显着影响,但在冬季,沿海南极部位受到由于Katabatic风的反应性观察到的反应性影响。基于多模型模拟与观察比较,探讨是否影响大气汞季节性和年际变化过程中的模型并确定适当代表研究我们在高纬度地区的大气汞循环的理解差距。
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号