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Climate induced thermocline change has an effect on the methyl mercury cycle in small boreal lakes

机译:气候导致的温跃层变化对小型北方湖泊中的甲基汞循环有影响

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摘要

We conducted a whole-lake experiment by manipulating the stratification pattern (thermocline depth) of a small polyhumic, boreal lake (Halsjarvi) in southern Finland and studying the impacts on lake mercury chemistry.The experimental lake was compared to a nearby reference site (Valkea-Kotinen Lake). During the first phase of the experiment the thermocline of Halsjarvi was lowered in order to simulate the estimated increase in wind speed and in total lake heat content (high-change climate scenario). The rate of methyl mercury (MeHg) production during summer stagnation (May-August) was calculated from water profiles before the treatment (2004), during treatment (2005,2006) and after treatment (2007). We also calculated fluxes of MeHg from the epilimnion and from the hypolimnion to the sediments using sediment traps. Experimental mixing with a submerged propeller caused a 1.5-2 m deepening of the thermocline and oxycline. Methyl mercury production occurred mostly in the oxygen free layers in both lakes. In the experimental lake there was no net increase in MeHg during the experiment and following year; whereas the reference lake showed net production for all years. We conclude that the new exposed epilimneticsediments caused by a lowering of the thermocline were a major sink for MeHg in the epilimnion. The results demonstrate that in-lake MeHg production can be manipulated in small lakes with anoxic hypolimnia during summer. The climate change induced changes in small boreal lakes most probably affect methyl mercury production and depend on the lake characteristics and stratification pattern. The results support the hypothesis that possible oxygen related changes caused by climate change are more important than possible temperature changes in small polyhumic lakes with regularly occurring oxygen deficiency in the hypolimnion.
机译:我们通过控制芬兰南部一个小型多栖性北方湖(Halsjarvi)的分层模式(热线深度)进行了全湖实验,并研究了其对湖中汞化学的影响,并将该实验湖与附近的参考点(Valkea)进行了比较-Kotinen湖)。在实验的第一阶段,降低了Halsjarvi的温床,以模拟估计的风速和总湖热含量的增加(气候变化很大的情况)。根据处理之前(2004年),处理期间(2005年,2006年)和处理后(2007年)的水分剖面计算夏季停滞(5月至8月)期间甲基汞(MeHg)的产生速率。我们还使用沉积物陷阱计算了从上层和下层到沉积物的MeHg通量。用浸没式螺旋桨进行的实验混合使温跃层和氧跃层深化了1.5-2 m。甲基汞的产生主要发生在两个湖泊的无氧层中。在实验湖中,实验期间和次年的MeHg没有净增加;而参考湖显示了所有年份的净产量。我们得出的结论是,由温跃层降低引起的新的暴露的表皮沉积物是上表皮中MeHg的主要沉陷。结果表明,在夏季缺氧性低氧的小湖中可以控制湖中甲基汞的生产。气候变化引起的小型北方湖泊变化很可能会影响甲基汞的生产,并取决于湖泊的特征和分层模式。结果支持以下假设:与气候有关的可能的与氧气有关的变化比在小层多栖湖泊中可能发生的与氧气有关的变化更为重要,而湖泊中定期发生缺氧。

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  • 来源
    《Science of the total environment》 |2010年第17期|P.3639-3647|共9页
  • 作者单位

    Finnish Environment Institute (SYKE), P.O. Box 140, FI-00251 Helsinki, Finland;

    rnFinnish Environment Institute (SYKE), P.O. Box 140, FI-00251 Helsinki, Finland;

    rnFinnish Environment Institute (SYKE), P.O. Box 140, FI-00251 Helsinki, Finland;

    rnFinnish Environment Institute (SYKE), P.O. Box 140, FI-00251 Helsinki, Finland;

    rnPyhaejaervi Institute, Ruukinpuisto, Sepaentie 7, FI-2S700 Kauttua, Finland;

    rnIVL Swedish Environment Research Institute Ltd, P.O. Box 3502, Gothenburg, Sweden;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    methyl mercury; methylation; demethylation; climate change; lakes;

    机译:甲基汞;甲基化脱甲基气候变化;湖泊;
  • 入库时间 2022-08-17 13:56:16

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