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首页> 外文期刊>Ecotoxicology and Environmental Safety >Uptake kinetics of four hydrophobic organic pollutants in the earthworm Eisenia andrei in aged laboratory-contaminated natural soils
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Uptake kinetics of four hydrophobic organic pollutants in the earthworm Eisenia andrei in aged laboratory-contaminated natural soils

机译:老年实验室污染的天然土壤中蚯蚓艾西尼亚和蚯蚓湿润有机污染物的摄取动力学

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摘要

Laboratory studies of pollutant uptake kinetics commonly start shortly after experimental soil contamination when it is not clear if the processes between soil and chemicals are equilibrated and stabilized. For instance, when the concentration in soil quickly decreases due to initial biodegradation, bioaccumulation may show a peak-shape accumulation curve instead of conventional first order kinetics with a plateau at the end. The results of such experiments with soil freshly contaminated in the laboratory are then hardly comparable to bioaccumulation observed in soils from historically contaminated sites. Therefore, our study focused on the uptake kinetics of four hydrophobic organic compounds (pyrene, lindane, p,p'-DDT and PCB 153) in two laboratory-contaminated natural soils with different soil properties (e.g. total organic carbon content of 1.6 and 9.3%) aged for 203 days to mimic long-term contamination. For pyrene, the results surprisingly showed peak-shape accumulation curves despite long aging. It seems compound biodegradation might be significant in aged soils when the conditions change (e.g. by distribution to the experimental vessels) and this should be also considered when testing historically contaminated soils. For lindane, longer aging seems to guarantee stability of the soil-compound-earthworm system and the steady state was reached after 5 days of exposure. Furthermore, although concentrations of p,p'-DDT and PCB 153 in earthworms after 11-15-day exposure did not statistically differ, which is a commonly-used indicator that a steady state was reached, they continuously increased until the end of the exposure. Therefore, despite the aging, longer exposure was probably needed to reach the true equilibrium between concentrations in earthworms and soil. In summary, aging does not warranty the conventional first order kinetic curve with the equilibrium at the end of the exposure but may have diverse effects for compounds with different environmental properties and should be taken into account in the bioaccumulation factor calculation and the risk assessment.
机译:污染物摄取动力学的实验室研究通常在实验土壤污染后不久,如果土壤和化学品之间的过程平衡和稳定,则不清楚。例如,当由于初始生物降解而在土壤中浓度迅速降低时,生物累积可以显示峰值累积曲线,而不是在末端具有高原的传统第一订单动力学。然后,在实验室内污染的土壤的这种实验结果几乎没有与来自历史污染的地方的土壤中观察到的生物累积相媲美。因此,我们的研究重点是在具有不同土壤性质的两种实验室污染的天然土壤中的四种疏水性有机化合物(芘,林丹,P,P'-DDT和PCB 153)的摄影动力学(例如,总有机碳含量为1.6和9.3 %)203天的时间以模仿长期污染。对于芘,尽管长时间老化,但结果令人惊讶地显示出峰值累积曲线。当条件变化时,它似乎复方生物降解可能在老年的土壤中具有重要意义(例如,通过分布到实验船只),在历史污染的土壤中也应考虑这一点。对于林丹,较长的老化似乎可以保证土壤复合蚯蚓系统的稳定性,并且在暴露5天后达到稳定状态。此外,虽然在11-15天曝光后蚯蚓中P,P'-DDT和PCB 153的浓度没有统计学不同,但是达到稳态的常用指标,它们连续增加到末端接触。因此,尽管衰老,可能需要更长的暴露,以达到蚯蚓和土壤中浓度之间的真正均衡。总之,老龄化不保证常规的第一阶动力学曲线,在暴露的末端时均衡,但可能对具有不同环境特性的化合物具有不同的效果,并且应在生物累积因子计算和风险评估中考虑。

著录项

  • 来源
    《Ecotoxicology and Environmental Safety》 |2020年第4期|110317.1-110317.10|共10页
  • 作者单位

    Masaryk Univ Fac Sci Res Ctr Tox Cpds Environm RECETOX Kamenice 753-5 CZ-62500 Brno Czech Republic;

    Masaryk Univ Fac Sci Res Ctr Tox Cpds Environm RECETOX Kamenice 753-5 CZ-62500 Brno Czech Republic;

    Masaryk Univ Fac Sci Res Ctr Tox Cpds Environm RECETOX Kamenice 753-5 CZ-62500 Brno Czech Republic;

    Masaryk Univ Fac Sci Res Ctr Tox Cpds Environm RECETOX Kamenice 753-5 CZ-62500 Brno Czech Republic;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HOCs; BAFs; Aging; Bioaccumulation; Laboratory-contaminated soils;

    机译:HOCS;BAFS;老化;生物累积;实验室污染的土壤;

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