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Investigation of the competitive effects of copper and zinc on fulvic acid complexation: Modeling and analytical approaches.

机译:铜和锌对黄腐酸络合的竞争影响研究:建模和分析方法。

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摘要

Cu and Zn are physiologically vital metals facilitating the proper functioning of many enzymes. However, a flux in anthropogenic activities have elevated the concentrations of these metals in natural waters causing the biological requirements to be exceeded and raising concern in how these metals will affect aquatic organisms. When multiple metals exist in natural waters, a non-additive toxicological effect can occur, where the sum of the metal concentrations becomes more or less harmful than that of the individual metals themselves. The most bioavailable, and thus the most toxic solution species, of both Cu and Zn are the divalent metal cations (Cu2+ and Zn2+ ). Metal speciation in natural waters is controlled by many water chemistry parameters, most importantly pH and the presence of organic and inorganic ligands. The use of both modeling and analytical techniques can help quantify the chemical species and examine their role in aquatic toxicity.;This thesis gives insight into the competition of trace metals in natural waters for complexation to organic and inorganic ligands. The purpose of this work was to help explain the observed synergistic toxicological effects on the tested specimen, D. magna, occurring when Cu and Zn are together in solution. A series of geochemical models were generated in Visual MINTEQ to identify the major complexes and ions resulting from the toxicity testing conditions. These modeled results were a basis for setting up a series of experiments and were also used for explaining the resulting analytical data. The two analytical approaches were the Cu2+-ISE and Fl FFF-ICP-MS. Modeling and ISE results provide support for the hypothesis that Cu and Zn compete for complexation with organic ligands. Although Fl FFF-ICPMS did not provide quantitative support for this, it did prove to be useful for characterizing metal-DOC complexes.
机译:铜和锌是生理重要金属,可促进许多酶的正常运行。但是,人为活动的变化导致天然水中这些金属的浓度升高,从而超出了生物学要求,并引起人们对这些金属如何影响水生生物的关注。当天然水中存在多种金属时,会发生非累加的毒理学作用,其中金属浓度之和变得比个别金属本身的危害更大或更小。 Cu和Zn的生物利用度最高,毒性最高的溶液是二价金属阳离子(Cu 2 + 和Zn 2 + )。天然水中的金属形态受许多水化学参数控制,最重要的是pH值以及有机和无机配体的存在。建模和分析技术的结合使用可以帮助量化化学物种并检验其在水生毒性中的作用。本论文深入研究了天然水中痕量金属与有机和无机配体络合的竞争。这项工作的目的是帮助解释观察到的对标本D的协同毒理作用。当镁和锌一起溶解时会发生在Visual MINTEQ中生成了一系列地球化学模型,以识别由毒性测试条件产生的主要络合物和离子。这些建模结果是建立一系列实验的基础,还用于解释所得的分析数据。两种分析方法分别是Cu 2 + -ISE和Fl FFF-ICP-MS。建模和ISE结果为以下假设提供了支持:铜和锌竞争与有机配体的络合。尽管F1FFF-ICPMS没有为此提供定量支持,但确实被证明对于表征金属-DOC配合物有用。

著录项

  • 作者

    Baker, Bethany J.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Chemistry Analytical.;Geochemistry.;Environmental Sciences.;Chemistry Inorganic.
  • 学位 M.S.
  • 年度 2012
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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