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Investigation of causal factors influencing mercury concentrations in fish tissues in five Nevada reservoirs.

机译:内华达州五个水库中鱼类组织中汞浓度的影响因素研究。

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摘要

Mercury (Hg) concentrations in fish are of widespread concern due to human health risks. Recent data compiled by the Nevada Department of Wildlife showed Hg concentrations in fish muscle tissue that exceeded the human fish consumption advisory for several Nevada water bodies with no clear watershed source. To assess the reason for the elevated fish tissue concentrations this project focused on measuring Hg concentrations in fish, water, and sediments, and other relevant parameters, for five managed water bodies in northern Nevada: Ruby Lake, and Rye Patch, Chimney Dam, Wildhorse, and South Fork Reservoirs. The results of this study provide insight to potential parameters influencing fish Hg concentrations in rural Nevada water bodies. Chapter 2 of this thesis presents a discussion of the aquatic chemistry of these water bodies. These data showed that total Hg and MeHg concentrations in water and sediment were within the concentration range reported for uncontaminated systems with the exception of total Hg in Chimney Dam Reservoir and methylmercury (MeHg) in Ruby Lake. MeHg concentrations were highest in the winter months when samples were collected from under ice cover. Data collected in this study indicate that land- and atmospheric-based sources contribute to Hg loading to these water bodies. Chapter 3 examines Hg concentrations in biota from these water bodies and the relative importance of trophic position and water chemistry to Hg bioaccumulation. All five water bodies had fish with Hg concentrations exceeding the 0.3 mug/g EPA criterion value. Hg concentrations were greatest in fish of the highest trophic position as identified using N isotope ratios. Based on the data collected, bioaccumulation is the most important factor influencing fish Hg concentrations for the fish species and water bodies in this study.
机译:由于人类健康风险,鱼中的汞(Hg)浓度受到广泛关注。内华达州野生动物局收集的最新数据显示,鱼内脏组织中的汞含量超过了内华达州几个水体的鱼类摄入量建议,没有明确的分水岭源。为了评估鱼类组织浓度升高的原因,该项目着重于测量内华达州北部五个受管理水体中的鱼类,水和沉积物中的汞浓度以及其他相关参数:红宝石湖和黑麦补丁,烟囱水坝,野马和南叉水库。这项研究的结果为了解内华达州农村水体中鱼类汞浓度的潜在参数提供了见识。本文的第二章介绍了这些水体的水生化学。这些数据表明,除烟囱水坝水库中的总汞和红宝石湖中的甲基汞(MeHg)外,水和沉积物中的总Hg和MeHg浓度均在未污染系统的报告浓度范围内。在冬季,当从冰盖下收集样品时,MeHg浓度最高。这项研究中收集的数据表明,陆地和大气来源的汞会增加这些水体中的汞含量。第3章研究了这些水体中生物区中的汞浓度,以及营养位置和水化学对汞生物积累的相对重要性。所有五个水体的鱼类中汞含量均超过0.3杯/克EPA标准值。使用N同位素比确定,在最高营养位置的鱼类中Hg浓度最高。根据收集的数据,在本研究中,生物富集是影响鱼类中鱼类和水体中汞含量的最重要因素。

著录项

  • 作者

    Markee, Melissa M.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Biogeochemistry.;Biology Limnology.;Agriculture Fisheries and Aquaculture.;Environmental Sciences.
  • 学位 M.S.
  • 年度 2011
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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