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Acute Toxicity of Nickel to Daphnia magna: Validation of Bioavailability Models in Japanese Rivers

机译:Dophnia Magna镍急性毒性:日本河流中生物利用度模型的验证

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The ecotoxicity of nickel depends on water quality characteristics such as pH and dissolved organic carbon. Bioavailability models to predict nickel toxicity have been developed for and validated in European natural waters. In this study, we examined the acute toxicity of nickel to the strain ofDaphnia magnathat is used for toxicity tests in Japan, using water samples from five Japanese rivers. Based on the results of these toxicity tests, we examined the predictive capacity of the bioavailability model for acute nickel toxicity toD. magnaand validated the model. The 50% effect and lethal concentrations (EC(50)and LC50) of dissolved nickel forD. magnaranged from 0.52 to 4.0 mg/L and from 0.62 to 5.3 mg/L, respectively. Our results indicate that acute nickel toxicity varied as a result of the different water quality conditions in Japanese rivers. The bioavailability model predicted EC(50)and LC(50)values in water samples from Japanese rivers by errors more than a factor of 2, while the bioavailability models validated with the results of our toxicity tests were able to accurately predict these values with errors less than a factor of 2. Therefore, our results indicate that the bioavailability model validated using the results of the toxicity tests conducted using Japanese water samples could accurately predict acute nickel toxicity to the strain ofD. magna.
机译:镍的生态毒性取决于水质特性,如pH和溶解的有机碳。在欧洲天然水中已经开发出生物利用度模型,以预测镍毒性并验证。在这项研究中,我们研究了使用来自五个日本河流的水样在日本的毒性试验中镍毒性镍氢急性毒性。基于这些毒性试验的结果,我们研究了急性镍毒性的生物利用度模型的预测能力。 magnaand验证了模型。溶解镍福特的50%效应和致命浓度(EC(50)和LC50)。将0.52〜4.0 mg / L的速率分别为0.62至5.3 mg / L.我们的结果表明,急性镍毒性因日本河流的不同水质条件而变化。生物利用度模型预测EC(50)和LC(50)在日本河流中的水样中的值误差超过2倍,而随着我们的毒性测试结果验证的生物利用度模型能够准确地预测这些值与错误我们的结果表明,使用使用日本水样所传导的毒性试验结果验证的生物利用度模型可以准确地预测急性镍对菌株的毒性。麦格纳。

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