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Influence of the Forest Canopy on Total and Methyl Mercury Deposition in the Boreal Forest

机译:林冠层对北方森林总汞和甲基汞沉积的影响

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摘要

Atmospheric mercury deposition by wet and dry processes contributes mercury to terrestrial and aquatic systems. Factors influencing the amount of mercury deposited to boreal forests were identified in this study. Throughfall and open canopy precipitation samples were collected in 2005 and 2006 using passive precipitation collectors from pristine sites located across the Superior National Forest in northern Minnesota, USA. Samples were collected approximately every 2 weeks and analyzed for total (THg) and methyl mercury (MeHg). Forest canopy type and density were the primary influences on THg and MeHg deposition. Highest THg and MeHg concentrations were measured beneath conifer canopiesrn(THg mean= 19.02 ng L~(-1); MeHg mean=0.28 ng L~(-1)) followed by deciduous throughfall (THg mean= 12.53 ng L~(-1); MeHg mean=0.19 ng L~(-1)) then open precipitation (THg mean=8.19 ng L~(-1); MeHg mean= 0.12 ng L~(-1)). The greater efficiency of conifers at scavenging THg and MeHg from the atmosphere may increase the risk of mercury related water quality issues in conifer-dominated systems.
机译:通过湿法和干法法在大气中沉积汞,可将汞引入陆生和水生系统。在这项研究中,确定了影响北方森林中汞沉积量的因素。 2005年和2006年,使用被动降水收集器从位于美国明尼苏达州北部Superior National Forest上的原始站点收集了穿透和开放的冠层降水样本。大约每2周收集一次样品,并分析其总(THg)和甲基汞(MeHg)。森林冠层类型和密度是影响THg和MeHg沉积的主要因素。在针叶树冠下测量最高的THg和MeHg浓度(THg平均值= 19.02 ng L〜(-1); MeHg平均值= 0.28 ng L〜(-1)),然后是落叶贯穿(THg平均值= 12.53 ng L〜(-1) ); MeHg平均值= 0.19 ng L〜(-1)),然后开始降水(THg平均值= 8.19 ng L〜(-1); MeHg平均值= 0.12 ng L〜(-1))。针叶树从大气中清除THg和MeHg的更高效率可能会增加以针叶树为主的系统中与汞有关的水质问题的风险。

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