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Synergistic toxic effects of zinc pyrithione and copper to three marine species: Implications on setting appropriate water quality criteria

机译:巯氧吡啶锌和铜对三种海洋物种的协同毒性作用:对设定适当水质标准的影响

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Zinc pyrithione (ZnPT) is widely applied in conjunction with copper (Cu) in antifouling paints as a substitute for tributyltin. The combined effects of ZnPT and Cu on marine organisms, however, have not been fully investigated. This study examined the toxicities of ZnPT alone and in combination with Cu to the diatom Thalassiosira pseudonana, polychaete larvae Hydroides elegans and amphipod Elasmopus rapax. Importantly, ZnPT and Cu resulted in a strong synergistic effect with isobologram interaction parameter ). > 1 for all test species. The combined toxicity of ZnPT and Cu was successfully modelled using the non-parametric response surface and its contour. Such synergistic effects may be partly due to the formation of copper pyrithione. It is, therefore, inadequate to assess the ecological risk of ZnPT to marine organisms solely based on the toxicity data generated from the biocide alone. To better protect precious marine resources, it is advocated to develop appropriate water quality criteria for ZnPT with the consideration of its compelling synergistic effects with Cu at environmentally realistic concentrations.
机译:巯氧吡啶锌(ZnPT)与铜(Cu)一起广泛用于防污涂料中,以代替三丁基锡。然而,尚未完全研究ZnPT和Cu对海洋生物的综合作用。这项研究检查了单独的ZnPT以及与Cu联合使用对硅藻Thalassiosira pseudonana,多毛幼虫Hydroides elegans和两栖纲Elasmopus rapax的毒性。重要的是,ZnPT和Cu与等效线图相互作用参数()产生了很强的协同作用。所有测试物种> 1。使用非参数响应面及其轮廓成功地模拟了ZnPT和Cu的组合毒性。这种协同作用可能部分归因于巯氧吡啶铜的形成。因此,仅根据仅由杀生物剂产生的毒性数据就不足以评估ZnPT对海洋生物的生态风险。为了更好地保护珍贵的海洋资源,提倡针对ZnPT制定适当的水质标准,同时考虑其与Cu在环境现实浓度下的协同作用。

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