首页> 外文期刊>AMBIO: A Journal of the Human Environment >Net Methylmercury Production as a Basis for Improved Risk Assessment of Mercury-contaminated Sediments
【24h】

Net Methylmercury Production as a Basis for Improved Risk Assessment of Mercury-contaminated Sediments

机译:甲基汞净产量作为改进汞污染沉积物风险评估的基础

获取原文
获取原文并翻译 | 示例
       

摘要

Sediments contaminated by various sources of mercury (Hg) were studied at 8 sites in Sweden covering wide ranges of climate, salinity, and sediment types. At all sites, biota (plankton, sediment living organisms, and fish) showed enhanced concentrations of Hg relative to corresponding organisms at nearby reference sites. The key process determining the risk at these sites is the net transformation of inorganic Hg to the highly toxic and bioavailable methylmercury (MeHg). Accordingly, Hg concentrations in Perca fluviatilis were more strongly correlated to MeHg (p < 0.05) than to inorganic Hg concentrations in the sediments. At all sites, except one, concentrations of inorganic Hg (2–55 μg g−1) in sediments were significantly, positively correlated to the concentration of MeHg (4–90 ng g−1). The MeHg/Hg ratio (which is assumed to reflect the net production of MeHg normalized to the Hg concentration) varied widely among sites. The highest MeHg/Hg ratios were encountered in loose-fiber sediments situated in southern freshwaters, and the lowest ratios were found in brackish-water sediments and firm, minerogenic sediments at the northernmost freshwater site. This pattern may be explained by an increased MeHg production by methylating bacteria with increasing temperature, availability of energy-rich organic matter (which is correlated with primary production), and availability of neutral Hg sulfides in the sediment pore waters. These factors therefore need to be considered when the risk associated with Hg-contaminated sediments is assessed.
机译:在瑞典的8个地点对被各种汞(Hg)污染的沉积物进行了研究,涵盖了广泛的气候,盐度和沉积物类型。在所有地点,生物区系(浮游生物,沉积生物和鱼类)相对于附近参考地点的相应生物均显示出较高的Hg浓度。确定这些地点风险的关键过程是无机汞净转化为剧毒和可生物利用的甲基汞(MeHg)。因此,Perca fluviatilis中的Hg浓度与MeHg(p <0.05)的相关性比与沉积物中无机Hg浓度的相关性更强。除一个站点外,在所有站点,沉积物中无机汞的浓度(2–55μgg -1 )均显着,与MeHg的浓度(4–90 ng g −1)呈正相关)。 MeHg / Hg之比(假定反映了归一化为Hg浓度的MeHg的净产量)在站点之间变化很大。 MeHg / Hg比值最高的位于南部淡水的松散纤维沉积物中,而最低的比例位于淡水最北端的咸淡水沉积物和坚硬的成矿沉积物中。可以通过以下方式解释这种模式:甲基化细菌随着温度的升高而甲基化汞的产生增加,富含能量的有机物的可用性(与初级生产有关)以及沉积物孔隙水中的中性Hg硫化物的可用性。因此,在评估与汞污染的沉积物相关的风险时,需要考虑这些因素。

著录项

  • 来源
    《AMBIO: A Journal of the Human Environment》 |2007年第6期|437-442|共6页
  • 作者单位

    Ulf Skyllberg is a professor in soil chemistry. His research focuses on chemical speciation of metals under varying redox conditions in soils, sediment, and surface waters, with special interest in the role of natural organic matter. His address: Department of Forest Ecology and Management, Swedish University of Agricultural Sciences, SE-901 83 Ume?, Sweden. E-mail: ulf.skyllberg@sek.slu.se;

    Andreas Drott is a PhD student specializing in mercury speciation and species transformations in contaminated sediments and their controlling factors. His address: Department of Forest Ecology and Management, Swedish University of Agricultural Sciences, SE ?901 83 Ume?, Sweden. E-mail: andreas.drott@sek.slu.se;

    Lars Lambertsson, PhD in analytical chemistry, is a specialist in mercury speciation analysis. His research is aimed at mercury biogeo- and petrochemistry. His address: Department of Chemistry, Ume? University, SE-901 87 Ume?, Sweden. E-mail: lars.lambertsson@chem.umu.se;

    Erik Bj?rn is an assistant professor in chemistry. His research focuses on fundamental aspects, methodological developments, and applications of speciation analysis of trace elements in environmental, biological, and industrial samples. His address: Department of Chemistry, Ume? University, SE-901 87 Ume?, Sweden. E-mail: erik.bjorn@chem.umu.se;

    Torbj?rn Karlsson is a doctor of forestry in the subject of soil science. He studies the speciation of metals in soils and surface waters. He is presently working as a postdoctoral fellow in the Department of Chemistry. His address: Department of Chemistry, Ume? University, SE-901 87 Ume?, Sweden. E-mail: torbjorn.karlsson@chem.umu.se;

    Torbj?rn Johnson, PhD, is performing environmental investigations at the consultant company Pelagia. Many of the investigations are related to contaminated areas, with a focus on pollutants in sediments, animals, and plants. His address: Pelagia Milj?konsult AB, Sj?bod 2, Str?mpilsplatsen 12, SE-907 43 Ume?, Sweden. E-mail: t.johnson@pelagia.se;

    Sven-?ke Heinemo has a BSc in geoscience. His experience of environmental issues is mostly related to refuse management, sea pollution, contaminated sediments, and brownfields. Since 1996 he has focused on investigations and remediation plans for contaminated sites and sediments. He is presently working at the Municipality of Sundsvall. His address: Municipality of Sundsvall, S-85185 Sundsvall, Sweden. E-mail: sven-ake.heinemo@sundsvall.se;

    Henning Holmstr?m, PhD in geochemistry, is living in Str?ngn?s, Sweden. He has been working with environmental problems, mostly related to mining waste and contaminated sediments, for more than 10 years. His address: Geological Survey of Sweden, Box 16247, SE-103 24 Stockholm, Sweden. E-mail: henning.holmstrom@sgu.se;

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

  • 入库时间 2022-08-17 23:31:27

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号