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首页> 外文期刊>Journal of Hazardous Materials >Impact of biochar-induced vertical mobilization of dissolved organic matter, sulfamethazine and antibiotic resistance genes variation in a soil-plant system
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Impact of biochar-induced vertical mobilization of dissolved organic matter, sulfamethazine and antibiotic resistance genes variation in a soil-plant system

机译:生物炭诱导的溶解有机物,磺胺甲嘧啶和抗生素抗性基因变异在土壤 - 植物系统中的影响

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摘要

The migration risk of antibiotic and antibiotic resistance genes (ARGs) have attracted lots of attentions due to their potential threaten to public health. Strategies to reduce their vertical mobilization risk are urgently required for groundwater safety and human health. Biochar enjoys numerous interests due to its excellent sorption affinity. However, little was known about the efficacy of biochar amendment in impeding the vertical mobilization of antibiotic and ARGs. To fill this gap, a column study was carried out to investigate biochar-induced variations in the leaching behavior of dissolved organic matter (DOM), sulfamethazine (SMZ) and ARGs. Results showed that biochar addition enhanced DOM export from soil, changed its composition and impeded the vertical transport of SMZ. Biochar amendment could effectively decrease the occurrence of extracellular and intracellular sul2 in soil and impede its vertical transportation, however, it did not work out with sul1 gene. Structural equation modeling analysis demonstrated that the abundance of sul2 was significantly controlled by SMZ concentration, while the primary drivers of sul1 were SMZ concentration and DOM content. These results indicated the failure in inhibiting the vertical transfer of sul1 under biochar amendment and highlighted the important role of DOM in the leaching of soil ARGs.
机译:抗生素和抗生素抗性基因(args)的迁移风险因其对公共卫生的潜在威胁而引起了大量的关注。迫切需要降低垂直动员风险的策略,迫切需要地下水安全和人类健康。由于其优异的吸附亲和力,Biochar享有众多兴趣。然而,关于生物炭修正案在阻碍抗生素和args的垂直动员中的功效很少。为了填补这种差距,进行了一项柱研究,以研究生物炭诱导的溶解有机物(DOM),磺胺甲嘧啶(SMZ)和Args的浸出行为的变化。结果表明,生物炭加入来自土壤的增强型DOM出口,改变了成分并阻碍了SMZ的垂直运输。生物炭修正案可以有效地降低土壤中细胞外和细胞内Sul2的发生,并且妨碍其垂直运输,然而,它没有用Sul1基因进行锻炼。结构方程建模分析表明,SUL2的丰度受到SMZ浓度的显着控制,而SUL1的主要驱动器是SMZ浓度和DOM含量。这些结果表明,在生物炭修正案下抑制Sul1的垂直转移,并强调了Dom在土壤锯切浸出中的重要作用。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2021年第5期|126022.1-126022.10|共10页
  • 作者单位

    Nanjing Univ Sch Environm State Key Lab Pollut Control & Resource Reuse Nanjing 210023 Jiangsu Peoples R China;

    Nanjing Univ Sch Environm State Key Lab Pollut Control & Resource Reuse Nanjing 210023 Jiangsu Peoples R China;

    Nanjing Univ Sch Environm State Key Lab Pollut Control & Resource Reuse Nanjing 210023 Jiangsu Peoples R China;

    Nanjing Univ Sch Environm State Key Lab Pollut Control & Resource Reuse Nanjing 210023 Jiangsu Peoples R China;

    Nanjing Univ Sch Environm State Key Lab Pollut Control & Resource Reuse Nanjing 210023 Jiangsu Peoples R China;

    Nanjing Normal Univ Sch Environm Nanjing 210023 Peoples R China;

    Nanjing Univ Sch Environm State Key Lab Pollut Control & Resource Reuse Nanjing 210023 Jiangsu Peoples R China;

    Nanjing Univ Sch Environm State Key Lab Pollut Control & Resource Reuse Nanjing 210023 Jiangsu Peoples R China|Univ Leeds Joint Int Res Ctr Crit Zone Sci Nanjing 210023 Peoples R China|Nanjing Univ Nanjing 210023 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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

    Biochar; Vertical migration; Dissolved organic matter; Sulfamethazine; Antibiotic resistance genes;

    机译:生物炭;垂直迁移;溶解有机物;磺胺甲嘧啶;抗生素抗性基因;

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