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New Constraints on Terrestrial Surface-Atmosphere Fluxes of Gaseous Elemental Mercury Using a Global Database

机译:使用全球数据库对气态元素汞的地面表面-大气通量的新约束

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摘要

Despite 30 years of study, gaseous elemental mercury (Hg~0) exchange magnitude and controls between terrestrial surfaces and the atmosphere still remain uncertain. We compiled data from 132 studies, including 1290 reported fluxes from more than 200 000 individual measurements, into a database to statistically examine flux magnitudes and controls. We found that fluxes were unevenly distributed, both spatially and temporally, with strong biases toward Hg-enriched sites, daytime and summertime measurements. Fluxes at Hg-enriched sites were positively correlated with substrate concentrations, but this was absent at background sites. Median fluxes over litter- and snow-covered soils were lower than over bare soils, and chamber measurements showed higher emission compared to micrometeorological measurements. Due to low spatial extent, estimated emissions from Hg-enriched areas (217 Mg·a~(-1)) were lower than previous estimates. Globally, areas with enhanced atmospheric Hg~0 levels (particularly East Asia) showed an emerging importance of Hg~0 emissions accounting for half of the total global emissions estimated at 607 Mg·a~(-1), although with a large uncertainty range (-513 to 1353 Mg·a~(-1) [range of 37.5th and 62.5th percentiles]). The largest uncertainties in Hg~0 fluxes stem from forests (-513 to 1353 Mg·a~(-1) [range of 37.5th and 62.5th percentiles]), largely driven by a shortage of whole-ecosystem fluxes and uncertain contributions of leaf-atmosphere exchanges, questioning to what degree ecosystems are net sinks or sources of atmospheric Hg~0.
机译:尽管进行了30年的研究,但气态元素汞(Hg〜0)的交换量和在地表与大气之间的控制仍然不确定。我们将来自132个研究的数据(包括来自20万多个单独测量的1290个报告的通量)汇总到一个数据库中,以统计方式检查通量大小和控制量。我们发现通量在空间和时间上均分布不均,对富含汞的场所,白天和夏季的测量都有很强的偏差。富汞位点的通量与底物浓度呈正相关,但背景位点却没有。垃圾和积雪覆盖的土壤中的通量低于裸露土壤的通量,与微气象测量相比,室内测量显示出更高的排放量。由于空间范围较小,汞富集地区的估计排放量(217 Mg·a〜(-1))低于先前的估计。在全球范围内,大气中Hg〜0水平升高的地区(尤其是东亚地区)显示出Hg〜0排放的重要性正在上升,占全球总排放量的一半,估计为607 Mg·a〜(-1),尽管不确定范围较大(-513至1353 Mg·a〜(-1)[第37.5和62.5个百分位数的范围])。 Hg〜0通量的最大不确定性来自森林(-513至1353 Mg·a〜(-1)[范围在37.5和62.5个百分位数之间]),这主要是由于整个生态系统通量的短缺和森林的不确定性贡献所致。叶-大气交换,质疑生态系统在多大程度上是净汞或大气Hg〜0的来源。

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  • 来源
    《Environmental Science & Technology》 |2016年第2期|507-524|共18页
  • 作者单位

    Division of Atmospheric Sciences, Desert Research Institute, Reno, Nevada 89523, United States;

    Universite de Toulouse, INP, UPS, EcoLab (Laboratoire Ecologie Fonctionnelle et Environnement), ENSAT, Avenue de l'Agrobiopole, F-31326 Castanet-Tolosan, France,CNRS, EcoLab, F-31326 Castanet-Tolosan, France;

    Division of Atmospheric Sciences, Desert Research Institute, Reno, Nevada 89523, United States;

    Department of Environmental Sciences, Faculty of Science and Engineering, Macquarie University, Sydney, New South Wales, Australia;

    Division of Atmospheric Sciences, Desert Research Institute, Reno, Nevada 89523, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:58:39

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