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Climate Change and Mercury Accumulation in Canadian High and Subarctic Lakes

机译:加拿大高和亚北极湖泊的气候变化和汞积累

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摘要

Mercury (Hg) profiles were compared to profiles of climate indicators including microfossil remains and algal-derived or S2 carbon (C) in dated sediment cores from 14 lakes spanning latitudinal and longitudinal gradients across the Canadian high and subarctic. Hg fluxes increased postindustrialization (post-~1850) in 11 of these lakes (postindustrialization Hg fluxes (AHgFr.) = 2-24 μm~(-2) γ~(-1)). Correction of HgF_F for catchment contributions demonstrated that Hg deposition originating from catchment-independent factors, such as atmospheric deposition, increased since industrialization in all 14 lakes. Several of these lakes also showed postjndustrial shifts in algal assemblages consistent with climate-induced changes. Eleven lakes showed post-1850s increases in S2F_F, suggesting that lake primary productivity has recently increased in the majority of our sites (AS2Ff = 0.1-4 g ~(-2) γ~(-1)). Other studies have interpreted significant relationships between Hg:S2 concentrations in Arctic sediment as support for the algal scavenging hypothesis, which postulates that Hg fluxes to Arctic sediments are largely driven by S2. However, in six of our lakes we observed no Hg:S2 relationship, and in one lake a significant negative Hg:S2 relationship was observed due to increased Hg and decreased S2 C deposition during the postindustrialization period. In six of the seven lakes where a significant positive Hg:S2 relationship was observed, algal assemblages either did not change through time or the timing of the shifts did not correspond to changes in Hg deposition. Our results demonstrate that although Arctic lakes are experiencing a myriad of changes, including increased Hg and S2 deposition or changing algal assemblages, increased lake primary productivity does not appear to be driving changes in Hg fluxes to sediments.
机译:将汞(Hg)分布图与气候指标的分布图进行了比较,包括来自加拿大高和亚北极的经纬度和纵向梯度的14个湖泊中过期的沉积物核心中的微化石残留物和藻类衍生的或S2碳(C)。在这些湖泊中的11个中,汞通量增加了工业化后(〜1850年后)(工业化后汞通量(AHgFr。= 2-24μm〜(-2)γ〜(-1)))。 HgF_F对流域贡献的校正表明,自所有14个湖泊工业化以来,源自与流域无关的因素(如大气沉积)的Hg沉积量均增加了。这些湖泊中的几个还显示出与气候引起的变化相一致的藻类组合的工业后变化。 11个湖泊显示了1850年代后S2F_F的增加,这表明我们大多数地区的最近湖泊初级生产力都已提高(AS2Ff = 0.1-4 g〜(-2)γ〜(-1))。其他研究已经解释了北极沉积物中Hg:S2浓度之间的显着关系,这为藻类清除假说提供了支持,该假说假设了汞向北极沉积物中的通量主要由S2驱动。但是,在我们的六个湖泊中,我们没有观察到Hg:S2关系,而在一个湖泊中,由于在工业化后的时期内Hg的增加和S2 C沉积的减少,观察到了显着的负Hg:S2关系。在观察到显着正Hg:S2关系的七个湖中的六个中,藻类组合没有随时间变化,或者变化的时机不对应于Hg沉积的变化。我们的结果表明,尽管北极湖泊正经历着无数的变化,包括增加的Hg和S2沉积或不断变化的藻类组合,但增加的湖泊初级生产力似乎并没有推动汞向沉积物的通量变化。

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  • 来源
    《Environmental Science & Technology》 |2011年第3期|p.964-970|共7页
  • 作者单位

    Aquatic Ecosystem Protection Research Division, EnvironmentCanada, Burlington, ON, Canada L7R 4A6;

    rnAquatic Ecosystem Protection Research Division, EnvironmentCanada, Burlington, ON, Canada L7R 4A6;

    rnAquatic Ecosystem Protection Research Division, EnvironmentCanada, Burlington, ON, Canada L7R 4A6;

    rnCanadian Circumpolar Institute, University of Alberta, Edmonton, AB, Canada TBG IKS, Algal Taxonomy;

    rnAquatic Ecosystem Protection Research Division, EnvironmentCanada, Burlington, ON, Canada L7R 4A6;

    rnAquatic Ecosystem Protection Research Division, EnvironmentCanada, Burlington, ON, Canada L7R 4A6;

    rnEcology, Winnipeg, MB, Canada R3T 2X8;

    rnDepartment of Geography, Queen's University, Kingston, ON, Canada K7L 3N6;

    rnSETI Institute, Mountain View,California 94043-2172, United States;

    rnCentre d'etudes nordiques, University Laval, Quebec, QC, Canada G1V 0A6;

    rnDepartment of Biology, Queen's University, Kingston, ON, Canada K7L 3N6;

    rnDepartment of Biology, Queen's University, Kingston, ON, Canada K7L 3N6;

    rnAquatic Ecosystem Protection Research Division, EnvironmentCanada, Burlington, ON, Canada L7R 4A6;

    rnCentre d'etudes nordiques, University Laval, Quebec, QC, Canada G1V 0A6;

  • 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 14:03:25

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