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Dissipation, transformation and accumulation of triclosan in soil-earthworm system and effects of biosolids application

机译:三氯生在土壤-土壤系统中的耗散,转化和积累及生物固形物的应用效果

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摘要

Triclosan (TCS), widely used as an antimicrobial ingredient, is usually introduced into soil by biosolids application, and has presented potential risk in agro-ecosystem. The dissipation pathways of TCS in soil were analyzed in the presence and absence of earthworms (including Metaphire guillelmi and Eisenia fetida). Meanwhile the accumulation and transformation potentials of TCS in the two earthworms were evaluated. Results indicated that about 44% of initial TCS amount dissipated in sterile soil after 56-day incubation, which may mainly result from the bound-residues formation. In contrast, TCS in non-sterile soil dissipated more quickly with a t_(1/2) of 12 days, suggesting that microbial degradation was responsible for TCS dissipation. Triclosan was methylated to methyl triclosan (MTCS) in soil, which however contributed little for TCS dissipation. The presence of M. guillelmi accelerated TCS dissipation with the reduced t_(1/2) to 8 days, and inhibited MTCS formation in soil, while E. fetida had no significant (P> 0.05) effects on the fate of TCS. E. fetida accumulated more TCS than M. guillelmi, with bioaccumulation factors up to 11 vs. 0.6. It was also proved that methylation metabolism occurred in earthworms (including gut microorganisms), and M. guillelmi had higher metabolic efficiency compared to E. fetida. Even though eliminations of TCS and MTCS were rapid (except for TCS in M. guillelmi), the residues of the two compounds in both earthworms remained at high levels, having the potential to transfer in the terrestrial food web. In addition, results showed that biosolids application changed TCS persistence, as well as bioavailability dependent on earthworm species. When biosolids at 1% added, more residual TCS and MTCS in soil were observed, while TCS accumulation in E. fetida decreased, however, methylation metabolism in both earthworm species was not affected. The findings provide important information for a more precise risk assessment of biosolids land-application. Capsule: Triclosan dissipation, methylation and bioavailability in soils were affected by biosolids amendment and dependent on earthworm species with different accumulation and metabolic potentials.
机译:三氯生(TCS)被广泛用作抗菌成分,通常通过生物固体的施用而被引入土壤,并已在农业生态系统中带来潜在的风险。分析了土壤中TCS在土壤中是否存在dissipation(包括Metaphire guillelmi和Eisenia fetida)的消散途径。同时评价了两种CS中TCS的积累和转化潜力。结果表明,孵育56天后,约有44%的初始TCS消散在无菌土壤中,这可能主要是由于结合残基的形成所致。相比之下,非无菌土壤中的TCS消散速度更快,t_(1/2)为12天,这表明微生物降解是TCS消散的原因。三氯生在土壤中被甲基化为甲基三氯生(MTCS),但对TCS的消散贡献很小。 guillelmi菌的存在加速了TCS的消散,t_(1/2)减少到8天,并抑制了MTCS在土壤中的形成,而F. fetida对TCS的命运没有显着影响(P> 0.05)。 feet.fetida积累的TCS比M. guillelmi多,生物积累因子高达11 vs. 0.6。还证明了甲基化代谢发生在earth(包括肠道微生物)中,与吉氏肠埃希菌相比,吉利尔米氏菌具有更高的代谢效率。尽管消除TCS和MTCS的速度很快(除了guillelmi中的TCS),但两种both中两种化合物的残留仍保持较高水平,有可能在陆地食物网中转移。此外,结果表明,生物固体的施用改变了TCS的持久性以及取决于earth物种的生物利用度。当添加1%的生物固体时,在土壤中观察到更多的残留TCS和MTCS,而在F. fetida中的TCS积累减少,但是,两种both的甲基化代谢均不受影响。研究结果为更精确地评​​估生物固体土地应用风险提供了重要信息。胶囊:土壤中的三氯生耗散,甲基化和生物利用度受生物固体改良剂的影响,并取决于具有不同积累和代谢潜能的earth物种。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|136563.1-136563.8|共8页
  • 作者

  • 作者单位

    School of Chemistry and Environmental Engineering Jiangsu University of Technology 1801 Zhongwu Avenue Changzhou 213001 China Department of Agricultural and Biological Engineering University of Florida Gainesville FL 32611 United States;

    School of Chemistry and Environmental Engineering Jiangsu University of Technology 1801 Zhongwu Avenue Changzhou 213001 China;

    State Key Laboratory of Pollution Control and Resource Reuse School of the Environment Nanjing University 163 Xianlin Avenue Nanjing 210023 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Triclosan; Biosolids; Earthworm; Dissipation; Accumulation; Methylation;

    机译:三氯生生物固体蚯蚓;耗散;积累;甲基化;

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