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在淡水端足目动物(Gammarus pulex (L.))暴露于二元铜镍混合物中时出现的意外毒性相互作用。

Unexpected toxic interactions in the freshwater amphipod Gammarus pulex (L.) exposed to binary copper and nickel mixtures.

机构信息

UMR CNRS 6249 USC INRA Chrono-Environnement, Université de Franche-Comté, Place Leclerc, 25030, Besançon, France.

出版信息

Environ Sci Pollut Res Int. 2014 Jan;21(2):1099-111. doi: 10.1007/s11356-013-1978-1. Epub 2013 Jul 20.

Abstract

To document the toxicity of copper and nickel in binary mixtures, freshwater amphipods Gammarus pulex were exposed to the metals given independently or as mixtures. Toxicity to Cu alone was relatively high: 96-h LC10 and LC50 were found at 91 and 196 μg L(-1), respectively. Toxicity to Ni alone was very low, with 96-h LC10 and LC50 of 44,900 and 79,200 μg L(-1), respectively. Mixture toxicities were calculated from single toxicity data using conventional models. Modeled toxicity was then compared with the measured toxicity of the binary mixture. Two kinds of mixtures were tested. Type I mixtures were designed as combinations of Cu and Ni given at the same effect concentrations, when taken independently, to identify possible interactions between copper and nickel. In type II mixtures, Cu concentrations varied from 0 to 600 μg L(-1) while the nickel concentration was kept constant at 500 μg L(-1) to mimic conditions of industrial wastewater discharges. Ni and Cu showed synergic effects in type I mixtures while type II mixtures revealed antagonistic effects. Low doses of Ni reduced Cu toxicity towards G. pulex. These results show that even for simple binary mixtures of contaminants with known chemistry and toxicity, unexpected interactions between the contaminants may occur. This reduces the reliability of conventional additivity models.

摘要

为了记录铜和镍在二元混合物中的毒性,将淡水端足目动物(Gammarus pulex)暴露于单独或混合的金属中。铜的单独毒性相对较高:96 小时 LC10 和 LC50 分别为 91 和 196μg/L。镍的单独毒性非常低,96 小时 LC10 和 LC50 分别为 44900 和 79200μg/L。混合物的毒性是根据单一毒性数据使用常规模型计算的。然后将模型化的毒性与二元混合物的实测毒性进行比较。测试了两种混合物。I 型混合物是在独立给予相同效应浓度的铜和镍的组合,以确定铜和镍之间可能存在的相互作用。在 II 型混合物中,Cu 浓度从 0 到 600μg/L 变化,而镍浓度保持在 500μg/L,以模拟工业废水排放的条件。I 型混合物中 Ni 和 Cu 表现出协同作用,而 II 型混合物则表现出拮抗作用。低剂量的 Ni 降低了 Cu 对 G. pulex 的毒性。这些结果表明,即使对于具有已知化学性质和毒性的简单二元混合物,污染物之间也可能发生意想不到的相互作用。这降低了常规加性模型的可靠性。

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