Atmospheric mercury uptake and accumulation in forests dependent on climatic factors†

IF 3.9 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL
Yo Han Yang, Min-Seob Kim, Jaeseon Park and Sae Yun Kwon
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Abstract

The environmental and climatic factors dictating atmospheric mercury (Hg) uptake by foliage and accumulation within the forest floor are evaluated across six mountain sites, South Korea, using Hg concentration and Hg stable isotope analyses. The isotope ratios of total gaseous Hg (TGM) at six mountains are explained by local anthropogenic Hg emission influence and partly by mountain elevation and wind speed. The extent to which TGM is taken up by foliage is not dependent on the site-specific TGM concentration, but by the local wind speed, which facilitates TGM passage through dense deciduous canopies in the Korean forests. This is depicted by the significant positive relationship between wind speed and foliage Hg concentration (r2 = 0.92, p < 0.05) and the magnitude of δ202Hg shift from TGM to foliage (r2 = 0.37, p > 0.05), associated with TGM uptake and oxidation by foliar tissues. The litter and topsoil Hg concentrations and isotope ratios reveal relationships with a wide range of factors, revealing lower Hg level and greater isotopic fractionation at sites with low elevation, high wind speed, and high mean warmest temperature. We attribute this phenomenon to active TGM re-emission from the forest floor at sites with high wind speed and high temperature, caused by turnover of labile organic matter and decomposition. In contrast to prior studies, we observe no significant effect of precipitation on forest Hg accumulation but precipitation appears to reduce foliage-level Hg uptake by scavenging atmospheric Hg species available for stomata uptake. The results of this study would enable better prediction of future atmospheric and forest Hg influence under climate change.

Abstract Image

森林对大气汞的吸收和积累取决于气候因素
通过汞浓度和汞稳定同位素分析,评估了韩国六座山区的环境和气候因素对大气汞(Hg)被树叶吸收和在林地中积累的影响。六座山区总气态汞(TGM)的同位素比值受当地人为汞排放的影响,部分受山区海拔和风速的影响。TGM 被树叶吸收的程度并不取决于特定地点的 TGM 浓度,而是取决于当地的风速,风速有助于 TGM 穿过韩国森林中茂密的落叶树冠。风速与叶片汞浓度(r2 = 0.92,p< 0.05)和δ202Hg 从 TGM 向叶片转移的程度(r2 = 0.37,p> 0.05)之间存在显著的正相关关系,这与叶片组织吸收和氧化 TGM 有关。枯落物和表层土壤的汞浓度和同位素比值与多种因素有关,在海拔低、风速大和平均最热温度高的地点,汞含量较低,同位素分馏程度较高。我们将这一现象归因于风速高、温度高的地点因易变有机物的更替和分解而导致的森林底层对 TGM 的主动再释放。与之前的研究相反,我们观察到降水对森林汞积累没有显著影响,但降水似乎通过清除大气中可供气孔吸收的汞来减少叶片对汞的吸收。这项研究的结果将有助于更好地预测未来气候变化对大气和森林汞的影响。
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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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