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Response of mercury in a forest stream to lime application: Accelerated watershed recovery.

机译:森林溪流中的汞对石灰的响应:加快流域恢复。

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摘要

Following decreases in acid deposition, some impacted surface waters in northern Europe and the northeastern USA are beginning to recover. The resultant increases in pH in these waters has coincided with increased dissolved organic carbon concentrations, which is also correlated with increases in both total mercury and methylmercury concentrations. Understanding how ecosystem mercury dynamics respond to recovery from acid deposition has important implications for fisheries and human exposure. Honnedaga Lake is one of seven lakes in the Adirondack Park of New York State with a heritage Brook trout ( Salvelinus fontinalis) population, making the bioavailability and trophic transfer of mercury (Hg) a particular concern. Lime was applied to a tributary watershed of Honnedaga Lake in 2013 in an effort to accelerate biological recovery from acid deposition. Significant increases in DOC, THg and MeHg were evident in streamwater after treatment (maximum THg post-treatment=5.5 ng/L, maximum THg reference=2.15 ng/L). Six months after treatment, there was no significant difference in MeHg concentrations from reference values, while DOC and THg remained significantly higher than pre-treatment and reference values. This pattern suggests that Hg is leaching at elevated levels from the treated watershed, but that short-lived increases in MeHg could not be sustained due to limitations in either the net methylation rate or the transport of MeHg to the stream.
机译:随着酸沉降的减少,北欧和美国东北部一些受到影响的地表水开始恢复。这些水中pH值的增加与溶解有机碳浓度的增加同时发生,这也与总汞和甲基汞浓度的增加有关。了解生态系统汞动力学如何响应酸沉积的恢复对渔业和人类暴露具有重要意义。 Honnedaga湖是纽约州阿迪朗达克公园(Adirondack Park)的七个湖泊之一,拥有大量的布鲁克鳟鱼(Salvelinus fontinalis)种群,因此特别关注汞的生物利用度和营养传递。石灰于2013年应用于Honnedaga湖的支流流域,旨在加速从酸沉降中恢复生物。处理后的废水中DOC,THg和MeHg明显增加(处理后最大THg = 5.5 ng / L,最大THg参考值= 2.15 ng / L)。治疗后六个月,MeHg浓度与参考值无显着差异,而DOC和THg仍显着高于治疗前和参考值。这种模式表明汞从处理过的分水岭中以较高的水平浸出,但是由于净甲基化速率或MeHg向河流的迁移限制,MeHg的短暂增加无法持续。

著录项

  • 作者

    Millard, Geoffrey Dean.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Environmental engineering.;Biogeochemistry.
  • 学位 M.S.
  • 年度 2016
  • 页码 45 p.
  • 总页数 45
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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