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首页> 外文期刊>Science of the total environment >Inhibitory effects of antioxidant moieties in humic substances on phototransformation of chlortetracycline mediated by the algae extracellular organic matter
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Inhibitory effects of antioxidant moieties in humic substances on phototransformation of chlortetracycline mediated by the algae extracellular organic matter

机译:抗氧化部分在藻类细胞外有机物介导的乳化物质光电子对腐殖质物质中的抑制作用

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摘要

In algae rich waters, sunlight-driven transformation of antibiotics could be accelerated via sensitization by algae extracellular organic matter (EOM), and this photosensitization process will be affected by coexisting humic substances. In this study, we explored the effect and mechanism of humic substances on photodegradation of chlortetracycline (CTC) mediated by EOM. We found that humic substances exhibited a marked inhibitory effect on the EOM-mediated photodegradation of CTC. Given that humic substances exhibited little effects on the EOM-mediated formation of triplet state species, the quenching effect of humic substances on reactive species was excluded. The inhibitory effect of humic substances was mainly attributed to the back reduction of CTC oxidation intermediates by the antioxidant moieties in humic substances. The ozone oxidation treatment for humic substances was applied to destroy antioxidant moieties. After ozonation, the inhibitory effects of humic substances were greatly decreased, confirming the dominant role of antioxidant moieties in humic substances, which inhibited CTC photodegradation mediated by EOM via reducing oxidation intermediates of CTC. This back reduction was further verified to be exergonic via reactive Gibbs free energy, indicating the back reduction by humic substances of CTC oxidation intermediates could occur spontaneously. The present study will be helpful for predicting the fate and risk of CTC in algae rich water environments, and is of great significance for the study of phototransformation of other antibiotics.
机译:在藻类中,通过藻类细胞外有机物质(EOM)的致敏,可以加速阳光驱动的抗生素的转化,并且这种感光过程将受到腐殖质的影响。在这项研究中,我们探讨了腐殖质物质对EOM介导的氯化曲霉素(CTC)光降解的影响和机制。我们发现腐殖质物质对CTC的EOM介导的光降解表现出明显的抑制作用。鉴于腐殖质物质对Trioly态物种的EOM介导的形成效果很小,排除了腐殖质对反应性物种对反应物质的猝灭作用。腐殖质物质的抑制作用主要归因于腐殖质物质中的抗氧化部分的CTC氧化中间体的后减少。施用臭氧物质的臭氧氧化处理以破坏抗氧化部分。在臭氧化后,腐殖质物质的抑制作用大大降低,确认抗氧化部分在腐殖质中的主要作用,其通过减少CTC的氧化中间体抑制了EOM介导的CTC光降解。通过反应性Gibbs自由能进一步验证其后退减少,这表明CTC氧化中间体的腐殖质可能会自发发生。本研究将有助于预测藻类富水环境中CTC的命运和风险,对其他抗生素的光电转化进行了重要意义。

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  • 来源
    《Science of the total environment》 |2021年第1期|149001.1-149001.9|共9页
  • 作者单位

    Beijing Key Laboratory for Source Control Technology of Water Pollution Engineering Research Center for Water Pollution Source Control and Eco-remediation Beijing Forestry University Beijing 100083 China College of Environment Zhejiang University of Technology Chaowang Road 18 Hangzhou 310014 China;

    Beijing Key Laboratory for Source Control Technology of Water Pollution Engineering Research Center for Water Pollution Source Control and Eco-remediation Beijing Forestry University Beijing 100083 China;

    Beijing Key Laboratory for Source Control Technology of Water Pollution Engineering Research Center for Water Pollution Source Control and Eco-remediation Beijing Forestry University Beijing 100083 China;

    College of Environment Zhejiang University of Technology Chaowang Road 18 Hangzhou 310014 China;

    Beijing Key Laboratory for Source Control Technology of Water Pollution Engineering Research Center for Water Pollution Source Control and Eco-remediation Beijing Forestry University Beijing 100083 China;

    Beijing Key Laboratory for Source Control Technology of Water Pollution Engineering Research Center for Water Pollution Source Control and Eco-remediation Beijing Forestry University Beijing 100083 China;

    Beijing Key Laboratory for Source Control Technology of Water Pollution Engineering Research Center for Water Pollution Source Control and Eco-remediation Beijing Forestry University Beijing 100083 China;

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

    Inhibitory effects; Humic substances; Antioxidant moieties; Extracellular organic matters; Phototransformation; Chlortetracycline;

    机译:抑制作用;腐殖质;抗氧化部分;细胞外有机物;光电变化;Chlortetracycline.;

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