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Life cycle toxicity assessment of earthworms exposed to cadmium-contaminated soils

机译:暴露于镉污染土壤的蚯蚓生命周期毒性评估

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Cadmium (Cd) is of great concern in the soil environment and it can damage terrestrial organisms. The purpose of this study was to employ a toxicokinetic/toxicodynamic (TK/TD) approach to investigate the effects of toxicologically relevant Cd accumulation on the life cycle growth of earthworms (Lumbricus rubellus and Eisenia fetida) and to assess potential terrestrial ecosystem risk. We reanalyzed growth toxicity and whole body and pellet accumulation data linked with TK/TD and life cycle growth models to estimate key rate constants. The growth risk of earthworms exposed to Cd was also assessed. This study found that the estimated whole body killing rate constant (0.114 g d mu g(-1)) was much lower than that of pellet (0.248 g d mu g(-1)). The recovery rate constant for whole body (6.02 d(-1)) was much higher than that of pellet (2.91 d(-1)). We also employed a life cycle-based probabilistic risk assessment model to estimate the growth inhibition risk for earthworms in response to environmentally relevant concentrations of Cd in Taiwan. Results showed that earthworms had a 90% growth inhibition probability risk of body weight, which was lower than 872.33 mg based on assessment of toxicologically relevant Cd accumulation. This study suggests that toxicologically relevant Cd accumulation could accurately reflect the capacity of Cd toxicity to earthworms. The integrated life cycle toxicity of earthworms exposed to Cd in this study provides a robust and applicable tool for the management of ecological risk assessment of Cd-contaminated soil.
机译:镉(CD)在土壤环境中非常关注,它可能会损害陆地生物。本研究的目的是使用毒物动力学/毒性动力学(TK / TK / TD)方法来探讨毒物学相关的CD积累对蚯蚓(Lumbricus Rubellus和艾西哥岛)生命周期生长的影响,并评估潜在的陆地生态系统风险。我们重新分析了与TK / TD和生命周期生长模型相关的增长毒性和全身和颗粒累积数据,以估计关键率常数。还评估了暴露于CD的蚯蚓的生长风险。该研究发现,估计的全身杀伤率常数(0.114g D mu g(-1))远低于颗粒(0.248g d mu g(-1))。全身的回收率常数(6.02d(-1))远高于颗粒(2.91d(-1))。我们还采用了一种基于生命周期的概率风险评估模型,以估算蚯蚓以应对台湾环保浓度的碳虫的生长抑制风险。结果表明,蚯蚓具有90%的体重增长抑制概率风险,基于毒理学相关的CD积累的评估低于872.33mg。本研究表明,毒理学相关的CD积累可以准确地反映CD毒性对蚯蚓的能力。本研究暴露于CD的蚯蚓的综合生命周期毒性为CD污染土壤的生态风险评估提供了一种坚固且适用的工具。

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