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预测金属混合物的毒性。

Predicting the toxicity of metal mixtures.

机构信息

U.S. Geological Survey, School of Oceanography, University of Washington, Box 355351, Seattle, WA 98195, United States.

出版信息

Sci Total Environ. 2014 Jan 1;466-467:788-99. doi: 10.1016/j.scitotenv.2013.07.034. Epub 2013 Aug 25.

Abstract

The toxicity of single and multiple metal (Cd, Cu, Pb, and Zn) solutions to trout is predicted using an approach that combines calculations of: (1) solution speciation; (2) competition and accumulation of cations (H, Ca, Mg, Na, Cd, Cu, Pb, and Zn) on low abundance, high affinity and high abundance, low affinity biotic ligand sites; (3) a toxicity function that accounts for accumulation and potency of individual toxicants; and (4) biological response. The approach is evaluated by examining water composition from single metal toxicity tests of trout at 50% mortality, results of theoretical calculations of metal accumulation on fish gills and associated mortality for single, binary, ternary, and quaternary metal solutions, and predictions for a field site impacted by acid rock drainage. These evaluations indicate that toxicity of metal mixtures depends on the relative affinity and potency of toxicants for a given aquatic organism, suites of metals in the mixture, dissolved metal concentrations and ratios, and background solution composition (temperature, pH, and concentrations of major ions and dissolved organic carbon). A composite function that incorporates solution composition, affinity and competition of cations for two types of biotic ligand sites, and potencies of hydrogen and individual metals is proposed as a tool to evaluate potential toxicity of environmental solutions to trout.

摘要

采用一种结合了以下计算方法的方法来预测单一和多种金属(Cd、Cu、Pb 和 Zn)溶液对鳟鱼的毒性:(1)溶液形态;(2)阳离子(H、Ca、Mg、Na、Cd、Cu、Pb 和 Zn)在低丰度、高亲和力和高丰度、低亲和力生物配体位点上的竞争和积累;(3)一种毒性函数,用于解释单个有毒物质的积累和效力;以及(4)生物反应。通过检查在 50%死亡率的鳟鱼单一金属毒性测试中来自单一金属毒性测试的水成分、鱼类鳃上金属积累的理论计算结果以及单一、二元、三元和四元金属溶液相关的死亡率,以及对受酸性岩石排水影响的现场地点的预测,来评估该方法。这些评估表明,金属混合物的毒性取决于特定水生生物的有毒物质的相对亲和力和效力、混合物中的金属套件、溶解金属浓度和比例以及背景溶液组成(温度、pH 值以及主要离子和溶解有机碳的浓度)。提出了一种复合函数,该函数结合了溶液组成、阳离子对两种类型生物配体位点的亲和力和竞争以及氢离子和个别金属的效力,作为评估环境溶液对鳟鱼潜在毒性的工具。

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