首页> 外文期刊>Environmental toxicology and chemistry >COMPARISON OF CHRONIC MIXTURE TOXICITY OF NICKEL-ZINC-COPPER AND NICKEL-ZINC-COPPER-CADMIUM MIXTURES BETWEEN CERIODAPHNIA DUBIA AND PSEUDOKIRCHNERIELLA SUBCAPITATA
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COMPARISON OF CHRONIC MIXTURE TOXICITY OF NICKEL-ZINC-COPPER AND NICKEL-ZINC-COPPER-CADMIUM MIXTURES BETWEEN CERIODAPHNIA DUBIA AND PSEUDOKIRCHNERIELLA SUBCAPITATA

机译:杜鹃花铜假单胞菌与镍-锌-铜和镍-锌-铜-镉混合物的慢性混合毒性比较

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Although aquatic organisms in the environment are exposed to mixtures of metals, risk assessment for metals is most commonly performed on a metal-by-metal basis. To increase the knowledge about chronic mixture effects, the authors investigated whether metal mixture effects are dependent on the biological species, mixture composition, and metal concentration ratio. The authors evaluated the effects of quaternary Ni-Zn-Cu-Cd and ternary Ni-Zn-Cu mixtures on 48-h algal growth rate (Pseudokirchneriella subcapitata) and 7-d daphnid reproduction (Ceriodaphnia dubia) using a ray design. Single metals were 3-fold to 42-fold more toxic for C. dubia than for P. subcapitata, based on the 50% effective concentration expressed as free metal activity, the range representing different metals. Statistical analysis of mixture effects showed that the ternary and quaternary mixture effects were antagonistic on algal growth relative to the concentration addition (CA) model, when the analysis was based on dissolved concentrations and on free metal ion activities. Using the independent action (IA) model, mixture effects in both rays were statistically noninteractive for algal growth when the analysis was based on dissolved concentrations; however, the interactions shifted toward antagonism when based on free ion activities. The ternary Ni-Zn-Cu mixture acted antagonistically on daphnid reproduction relative to both reference models, either expressed as free ion activities or dissolved concentrations. When Cd was added to the mixture, however, the mixture effects shifted toward noninteractivity for daphnids. The metal concentration ratio did not significantly influence the magnitude of observed antagonistic effects. Regardless of statistical interactions observed, based on the present study, CA and in most instances also IA can serve as a protective model for ternary Ni-Zn-Cu and quaternary Ni-Zn-Cu-Cd toxicity to both species. (C) 2016 SETAC
机译:尽管环境中的水生生物暴露于金属混合物,但金属风险评估通常是逐个金属进行的。为了增加对慢性混合物效应的了解,作者研究了金属混合物效应是否取决于生物种类,混合物组成和金属浓度比。作者使用射线设计评估了季镍-锌-铜-镉和三价镍-锌-铜混合物对48小时藻类生长速率(假单胞菌次生)和7天水蚤繁殖(杜鹃)的影响。基于以游离金属活性表示的50%有效浓度,单一金属对杜氏假丝酵母的毒性比对小黑头菜球菌的毒性高3到42倍,范围代表不同的金属。混合效应的统计分析表明,当基于溶解浓度和游离金属离子活性进行分析时,相对于浓度添加(CA)模型,三元和四元混合效应对藻类生长具有拮抗作用。使用独立作用(IA)模型,当基于溶解浓度进行分析时,两种射线的混合效应对于藻类生长在统计上是非交互的;然而,当基于自由离子活性时,相互作用向拮抗作用转变。相对于两个参考模型,三元Ni-Zn-Cu混合物对daphnid的繁殖具有拮抗作用,以自由离子活性或溶解浓度表示。但是,当将Cd添加到混合物中时,对于燕雀鱼,混合物的效果向非交互性转移。金属浓度比没有显着影响观察到的拮抗作用的程度。不管观察到的统计相互作用如何,根据本研究,CA和大多数情况下IA都可以作为Ni-Zn-Cu三元和Ni-Zn-Cu-Cd四元对两种物种毒性的保护模型。 (C)2016年SETAC

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