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Mercury bioaccumulation in aquatic ecosystems of forested streams in Pennsylvania.

机译:宾夕法尼亚州森林溪流水生生态系统中的汞生物富集。

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摘要

Mercury (Hg) is a persistent element in the environment that has the ability to accumulate in organisms (e.g., plants, fish) and to biomagnify across trophic levels of food chains, with potentially harmful effects for human health and ecosystems. In this study, Hg was characterized in aquatic ecosystems of 36 streams across Pennsylvania. The streams are located in predominantly forested watersheds, within varying climatic and physiographic settings. The status of Hg in streams was characterized by sampling several different types of media: stream water, stream bed sediments, and submerged aquatic mosses (Fontinalis spp.) (in all 36 streams), and tissues of brook trout (Salvelinus fontinalis) (in seven of the streams).;Detectable levels of Hg were found in all media sampled, and concentrations of mercury increased among compartments (stream water stream sediments < brook trout < aquatic mosses). Concentrations of Hg in media were generally low and did not exceed guidelines for human consumption . Stream water samples from all 36 streams were lower than the safe drinking water maximum contaminant level for Hg of 0.002 mg/L Hg as set by the US Environmental Protection Agency (USEPA). Further, fish tissues from the 7 streams where brook trout were sampled did not exceed the fish consumption advisory limit of 0.3 mug/g Hg as set by USEPA. However, samples from six streams exceeded wildlife consumption advisory guidelines for Hg concentrations, in varying media. In particular, three streams had Hg concentration levels in brook trout above the US Fish and Wildlife Service fish-eating bird and wildlife advisory of 0.10 mug/g wet weight, one stream had Hg levels in sediment above a Threshold Effect Concentration (TEC) level of 180ng/g, and two streams had Hg in stream water above US Environmental Protection Agency's fish-eating wildlife level of 1.3ng/L.;Using exploratory statistical analyses, wet atmospheric deposition of Hg, watershed elevation, watershed size, percent of watershed forested, quantity and quality of dissolved organic carbon, and percent organic matter in sediments were found to be significantly correlated with Hg concentration in at least one media (p<0.01). Additionally, mercury concentrations in aquatic mosses were found to be highly correlated (Sr = 0.84, p < 0.01) with mercury in biopsies of brook trout muscle tissues, suggesting that aquatic mosses could be used as a proxy for Hg concentration in brook trout. The use of aquatic mosses as indicators of Hg levels in brook trout is a novel finding of great utility because mosses are relatively easy and inexpensive to sample, and no fish need to be sampled, which is particularly important for small populations of brook trout.;A large range of Hg concentrations were observed in all media among streams across the state, reflecting heterogeneity of environmental conditions and regional differences. Importantly, variations of Hg concentrations were also observed within streams, in the multiple samples of sediments and brook trout that were collected in each reach. A statistical analysis of these field replicate samples showed that as sample size increases, variability in the prediction of mean Hg concentration decreases. This finding has implications for policy and management, and recommendations are made about adequate sample sizes with regard to assessing Hg accumulation in aquatic ecosystems.
机译:汞(Hg)是环境中的持久性元素,能够在生物体(例如植物,鱼类)中积累并在营养级的食物链中生物放大,对人类健康和生态系统具有潜在的有害影响。在这项研究中,在宾夕法尼亚州36条溪流的水生生态系统中对汞进行了表征。溪流位于主要的森林流域,气候和地理环境各不相同。溪流中Hg的状态通过对几种不同类型的介质进行采样来表征:溪流水,溪床沉积物和淹没的水生苔藓(Fontinalis spp。)(在所有36条溪流中)以及溪鳟的组织(Salvelinus fontinalis)(在在所有采样介质中均检测到Hg含量,隔室中汞含量增加(溪流水溪流沉积物<溪鳟鱼<水生苔藓)。媒体中的汞含量一般较低,并未超过人体消费准则。来自所有36条溪流的溪水样品均低于美国环境保护署(USEPA)设定的0.002 mg / L Hg的安全饮用水最大污染物汞含量水平。此外,采样溪鳟鱼的7条溪流中的鱼组织未超过USEPA设定的0.3杯/克汞的鱼类食用建议限量。但是,在不同的介质中,六种溪流的样品均超过了野生动植物食用汞浓度的建议准则。特别是,三条溪流的河鳟中Hg浓度高于美国鱼类和野生动物服务局的鱼类食鸟和野生动物建议,湿重为0.10马克杯/克湿重,其中一条溪流中的沉积物中Hg含量高于阈值浓度(TEC)。流量为180ng / g,两条溪流中的水中Hg高于美国环境保护局的以鱼类为食的野生动物水平,达到1.3ng / L;使用探索性统计分析,湿态Hg大气沉积,分水岭高程,分水岭面积,分水岭百分比在至少一种介质中,发现森林中溶解的有机碳的数量和质量以及沉积物中的有机质百分比与汞浓度显着相关(p <0.01)。此外,发现水生苔藓中的汞浓度与溪鳟肌肉组织活检中的汞高度相关(Sr = 0.84,p <0.01),这表明水生苔藓可以用作溪鳟中Hg浓度的替代物。使用水生苔藓作为溪鳟中Hg含量的一种新发现是非常有用的,因为苔藓相对容易取样且价格便宜,并且不需要取样鱼类,这对于溪鳟的小种群特别重要。在整个州的溪流中,所有介质中都观察到很大范围的汞浓度,反映了环境条件的异质性和区域差异。重要的是,在溪流中,在每个河段收集的多个沉积物和溪鳟的样本中,也观察到汞浓度的变化。对这些野外重复样本的统计分析表明,随着样本量的增加,平均Hg浓度预测的可变性会降低。这一发现对政策和管理具有影响,并就评估水生生态系统中汞的积累方面的适当样本量提出了建议。

著录项

  • 作者

    Grant, Christopher J.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Ecology.;Aquatic sciences.;Environmental science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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