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Temporal trends, lake-to-lake variation, and climate effects on Arctic char (Salvelinus alpinus) mercury concentrations from six High Arctic lakes in Nunavut, Canada

机译:时间趋势,湖到湖泊变异,以及北极焦炭(Salvelinus Alpinus)赤霉盛(Salvelinus Alpinus)汞浓度从加拿大纳韦特六个高北极湖泊的汞浓度

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摘要

Climate warming and mercury (Hg) are concurrently influencing Arctic ecosystems, altering their functioning and threatening food security. Non-anadromous Arctic char (Salvelinus alpinus) in small lakes were used to biomonitor these two anthropogenic stressors, because this iconic Arctic species is a long-lived top predator in relatively simple food webs, and yet population characteristics vary greatly, reflecting differences between lake systems. Mercury concentrations in six landlocked Arctic char populations on Comwallis Island, Nunavut have been monitored as early as 1989, providing a novel dataset to examine differences in musde (Hg] among char populations, temporal trends, and the relationship between climate patterns and Arctic char [Hg]. We found significant lake-to-lake differences in length-adjusted Arctic char muscle (Hg], which varied by up to 9-fold Arctic char muscle [Hg] was significantly correlated to dissolved and particulate organic carbon concentrations in water: neither watershed area or vegetation cover explained differences. Three lakes exhibited significant temporal declines in length-adjusted (Hg] in Arctic char; the other three lakes had no significant trends. Though precipitation, temperature, wind speed, and sea ice duration were tested, no single climate variable was significantly correlated to length-adjusted [Hg] across populations. However, Arctic char Hg in Resolute Lake exhibited a significant correlation with sea ice duration, which is likely closely linked to lake ice duration, and which may impact Hg processing in lakes. Additionally, Arctic char [Hg] in Amituk Lake was significantly correlated to snow fall, which may be linked to Hg deposition. The lack of consistent temporal trends in neighboring char populations indicates that currently, within lake processes are the strongest drivers of [Hg] in char in the study lakes and potentially in other Arctic lakes, and that the influence of climate change will likely vary from lake to lake. Crown Copyright (C) 2019 Published by Elsevier B.V. All rights reserved.
机译:气候变暖和汞(HG)同时影响北极生态系统,改变其运作和威胁粮食安全。小湖中的非芳族北极炭(Salvelinus Alpinus)用于这些两个人为压力源,因为这种标志性的北极物种是一种相对简单的食物网的长寿顶部捕食者,但人口特征大大变化,反映了湖泊之间的差异系统。六个内陆北极炭群落在Comwallis Island的汞浓度已被监测为1989年,提供了一个新的数据集,用于检查群体人群,时间趋势以及气候模式与北极模式之间的关系中的穆斯德(HG]的差异[ Hg]。我们发现长度调节的北极炭肌(Hg]的湖到湖差异,多达9倍的北极炭肌[Hg]变化与水中的溶解和颗粒有机碳浓度有显着相关:流域区或植被覆盖都没有解释差异。三个湖泊在北极炭肿胀的长度调节(Hg]中表现出显着的时间下降;其他三个湖泊没有明显的趋势。虽然降水,温度,风速和海冰持续时间进行了测试,没有单一的气候变量与群体的长度调整的[Hg]显着相关。然而,苏克特湖的北极炭汞表现出了重要的同源与海冰持续时间的抗升离,这可能与湖冰持续时间紧密相关,这可能会影响湖泊中的HG处理。此外,Amituk湖中的北极炭γ与雪落显着相关,这可能与Hg沉积相关联。邻近炭群体的缺乏一致的时间趋势表明,目前,在湖泊过程中,在研究湖泊中的焦炭中最强的驱动因素,并且可能在其他北极湖泊中,并且气候变化的影响可能会因湖泊而异到湖。皇家版权(c)2019由elestvier b.v出版。保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第15期|801-812|共12页
  • 作者单位

    Univ Windsor Great Lakes Inst Environm Res Windsor ON N9B 3P4 Canada|Univ Quebec INRS Ctr Eau Terre Environm Quebec City PQ G1K 9A9 Canada;

    Environm & Climate Change Canada Canada Ctr Inland Waters Burlington ON L7S 1A1 Canada;

    Univ Quebec INRS Ctr Eau Terre Environm Quebec City PQ G1K 9A9 Canada|Alberta Environm & Pk Environm Monitoring & Sci Div Calgary AB T2E 7L7 Canada;

    Inst Interdisciplinary Mt Res A-6020 Innsbruck Austria;

    Hamlet Resolute Bay Resolute Bay NU X0A 0V0 Canada;

    Environm & Climate Change Canada Canada Ctr Inland Waters Burlington ON L7S 1A1 Canada;

    Environm & Climate Change Canada Canada Ctr Inland Waters Burlington ON L7S 1A1 Canada;

    Univ Quebec INRS Ctr Eau Terre Environm Quebec City PQ G1K 9A9 Canada|Univ Alaska Fairbanks Water & Environm Res Ctr Fairbanks AK 99775 USA;

    Univ Windsor Great Lakes Inst Environm Res Windsor ON N9B 3P4 Canada;

    Univ Windsor Great Lakes Inst Environm Res Windsor ON N9B 3P4 Canada;

    Univ Windsor Great Lakes Inst Environm Res Windsor ON N9B 3P4 Canada;

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

    Climate; Lacustrine; Heavy metals; 25-year record; Land-locked Arctic char;

    机译:气候;湖泊;重金属;25年的记录;陆地锁定北极炭;
  • 入库时间 2022-08-18 22:36:00

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