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Effect of Dissolved Organic Matter Concentration and Source on the Chronic Toxicity of Copper and Nickel Mixtures to Chlorella sp.

机译:溶解有机质浓度和来源对铜和镍混合物慢性毒性对小球藻的影响。

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There have been limited studies on the effects of toxicity-modifying factors, such as dissolved organic matter (DOM), on the toxicity of metal mixtures to aquatic biota. The present study investigated the effects of DOM concentration (low, 2.8 +/- 0.1 mg C/L; high, 11 +/- 1.0 mg C/L) and DOM source (predominantly terrestrial or microbial) on the chronic toxicity of copper (Cu) and nickel (Ni) binary mixtures to the green freshwater microalga Chlorella sp. This was assessed by using a full factorial design of 72-h growth inhibition bioassays. Measured algal growth rate was compared with growth predicted by the concentration addition and independent action reference models. Model predictions were based on concentrations of dissolved metals, labile metals (measured by diffusive gradients in thin films [DGT]), and calculated free metal ions (determined by the Windermere Humic Aqueous Model). Copper/Ni mixture toxicity was synergistic to Chlorella sp. in the absence of added DOM, with evidence of metal concentration-dependent toxicity at low effect concentrations. As DOM concentration increased, the mixture interaction changed from synergism to noninteraction or antagonism depending on the metal speciation method used. The DOM source had no significant effect on mixture interaction when based on dissolved and free metal ion concentrations but was significantly different when based on DGT-labile metal concentrations. Ratio-dependent mixture interaction was observed in all treatments, with increased deviation from the reference model predictions as the mixture changed from Ni- to Cu-dominated. The present study demonstrated that both DOM concentration and source can significantly change metal mixture toxicity interactions and that these interactions can be interpreted differently depending on the metal speciation method used. Environ Toxicol Chem 2021;00:1-11. (c) 2021 SETAC
机译:有限研究毒性改性因素的影响,例如溶解有机物(DOM),对金属混合物对水生生物毒性的毒性。本研究研究了DOM浓度(低,2.8 +/- 0.1mg C / L;高,11 +/- 1.0mg C / L)和DOM源(主要陆生物或微生物)对铜的慢性毒性( Cu)和镍(Ni)二元混合物到绿色淡水微藻小球藻SP。通过使用72-H生长抑制生物测定的完整因子设计来评估这一点。将测量的藻类生长速率与浓度添加和独立作用参考模型预测的生长进行了比较。模型预测基于溶解金属的浓度,不稳定金属(通过薄膜[DGT]中的扩散梯度测量),并计算出游离金属离子(由Windermere腐殖水模型确定)。铜/ Ni混合物毒性与小球藻SP有协同作用。在没有添加的DOM的情况下,在低效应浓度下具有金属浓度依赖性毒性的证据。随着DOM浓度增加,混合物相互作用根据所使用的金属形态法从协同作用转变为非互动或拮抗作用。基于溶解和游离金属离子浓度但是在基于DGT稳定金属浓度时显着不同,DOM源对混合物相互作用没有显着影响。在所有治疗中观察到比例依赖性混合物相互作用,随着混合物从Ni-至Cu主导的变化而增加,与参考模型预测的增加增加。本研究证明,DOM浓度和源均可显着地改变金属混合物毒性相互作用,并且这些相互作用可以根据所用的金属形状方法来解释。环境毒素化学2021; 00:1-11。 (c)2021 Setac

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