首页> 外文OA文献 >Copper in the terrestrial environment: Verification of a laboratory-derived terrestrial biotic ligand model to predict earthworm mortality with toxicity observed in field soils
【2h】

Copper in the terrestrial environment: Verification of a laboratory-derived terrestrial biotic ligand model to predict earthworm mortality with toxicity observed in field soils

机译:陆地环境中的铜:验证实验室衍生的陆地生物配体模型以预测field的死亡率以及在田间土壤中观察到的毒性

摘要

This study was set up for validation of a regression model to predict mortality in the terrestrial earthworm Aporrectodea caliginosa following exposure to copper. This model was derived from a terrestrial biotic ligand model and incorporates the protective effects of H+ and Na+ on copper toxicity. udThree soil sets were used for the experiments, all of which had a different copper contamination history over more than 20 years and were considered to be aged field soils. The soils were characterized by analysis of various copper pools in the solid phase and in the pore water, analysis of physical and chemical soil properties and by regression analysis. Measured and calculated copper activities (expressed as pCu) correlated reasonably well. Measured copper activities correlated with the total copper concentration in the pore water and the pH. The organic matter in the solid phase had no influence on the pCu in these soil sets. udEarthworms were exposed to the soils for 28 days, after which survival was scored. Observed earthworm mortality after 28-days exposure was plotted as a function of the log-transformed difference between predicted (log10 transformed) LC50-values and measured values of pCu for validation of the regression model. The results obtained were in agreement with the assumption that mortality is to be observed in those soils where the predicted LC50 exceeds the measured pCu. However, a structural underestimation of toxicity was apparent, which is most likely due to mixture effects related to the presence of additional substances in field soils. Nevertheless, the trend of the results in the validation tests demonstrates that the newly developed toxicity model is a useful tool in predicting lethality of copper contamination to earthworms in field soils.
机译:这项研究的建立是为了验证回归模型的有效性,该模型可以预测暴露于铜后的陆地earth游动A虫(Aporrectodea caliginosa)的死亡率。该模型源自陆地生物配体模型,并结合了H +和Na +对铜毒性的保护作用。 ud实验使用了三组土壤,所有这些土壤在20多年中都有不同的铜污染历史,被认为是老化的田间土壤。通过分析固相和孔隙水中的各种铜池,分析土壤的物理和化学性质以及通过回归分析来表征土壤。测得和计算出的铜活度(表示为pCu)具有相当好的相关性。测得的铜活度与孔隙水中总铜浓度和pH相关。固相中的有机物对这些土壤组中的pCu没有影响。 ud将28暴露在土壤中28天,然后评估存活率。将暴露28天后观察到的mortality死亡率绘制为预测(log10转换)LC50值与pCu测量值之间的对数转换差的函数,以验证回归模型。获得的结果与以下假设相符:在那些预测的LC50超过测得的pCu的土壤中应观察到​​死亡率。然而,毒性的结构低估是显而易见的,这很可能是由于田间土壤中与其他物质的存在有关的混合效应。然而,验证测试结果的趋势表明,新开发的毒性模型是预测田间土壤中to对铜污染的致死性的有用工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号