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Nutrient supply and mercury dynamics in marine ecosystems: A conceptual model

机译:海洋生态系统中的营养供应和汞动力学:概念模型

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摘要

There is increasing interest and concern over the impacts of mercury (Hg) inputs to marine ecosystems. One of the challenges in assessing these effects is that the cycling and trophic transfer of Hg are strongly linked to other contaminants and disturbances. In addition to Hg, a major problem facing coastal waters is the impacts of elevated nutrient, particularly nitrogen (N), inputs. Increases in nutrient loading alter coastal ecosystems in ways that should change the transport, transformations and fate of Hg, including increases in fixation of organic carbon and deposition to sediments, decreases in the redox status of sediments and changes in fish habitat. In this paper we present a conceptual model which suggests that increases in loading of reactive N to marine ecosystems might alter Hg dynamics, decreasing bioavailabilty and trophic transfer. This conceptual model is most applicable to coastal waters, but may also be relevant to the pelagic ocean. We present information from case studies that both support and challenge this conceptual model, including marine observations across a nutrient gradient; results of a nutrient-trophic transfer Hg model for pelagic and coastal ecosystems; observations of Hg species, and nutrients from coastal sediments in the northeastern U.S.; and an analysis of fish Hg concentrations in estuaries under different nutrient loadings. These case studies suggest that changes in nutrient loading can impact Hg dynamics in coastal and open ocean ecosystems. Unfortunately none of the case studies is comprehensive; each only addresses a portion of the conceptual model and has limitations. Nevertheless, our conceptual model has important management implications. Many estuaries near developed areas are impaired due to elevated nutrient inputs. Widespread efforts are underway to control N loading and restore coastal ecosystem function. An unintended consequence of nutrient control measures could be to exacerbate problems associated with Hg contamination. Additional focused research and monitoring are needed to critically examine the link between nutrient supply and Hg contamination of marine waters.
机译:对汞(HG)投入对海洋生态系统的影响,增加了兴趣和关注。评估这些效果的挑战之一是HG的循环和营养转移与其他污染物和干扰强烈地联系起来。除了HG之外,面临沿海水域的主要问题是养分,特别是氮气(n),输入的影响。营养加载改变沿海生态系统的增加,即应该改变Hg的运输,转化和命运,包括将有机碳固定的增加和沉积物的沉积增加,沉积物的氧化还原状态和鱼类栖息地的变化降低。在本文中,我们提出了一种概念模型,该模型表明,对海洋生态系统的反应性增加的增加可能会改变HG动态,降低生物缺失和营养转移。这种概念模型最适用于沿海水域,但也可能与木质海洋有关。我们从案例研究中呈现信息,即支持和挑战这种概念模型,包括营养梯度的海洋观察;岩石和沿海生态系统的营养营养转移HG模型的结果;观察HG物种,来自东北U.S的沿海沉积物的营养素。不同营养载荷下河口河流浓度的分析。这些案例研究表明,营养负荷的变化可以影响沿海和开放海洋生态系统中的HG动态。不幸的是,案例研究都没有全面;每个人只能解决概念模型的一部分并具有限制。尽管如此,我们的概念模型具有重要的管理含义。由于营养投入升高,许多靠近发达地区的河口受损。正在进行广泛的努力来控制N加载和恢复沿海生态系统功能。营养控制措施的意外后果可能是加剧与汞污染相关的问题。需要额外的重点研究和监测来批判性地检查营养供应与海水污染菌污染的联系。

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