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首页> 外文期刊>AIMS Environmental Science >Elimination of macrolides in water bodies using photochemical oxidation
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Elimination of macrolides in water bodies using photochemical oxidation

机译:使用光化学氧化消除水体中的大环内酯

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Photolysis is currently being discussed and investigated as additional stage or at least part of an extended treatment for sustainable water purification in waste water treatment plants. This study describes the photoinduced degradation of four macrolide antibiotics using UVC/VUV-irradiation. Special attention was paid to the determination of ecotoxicity of the formed photoinduced degradation products. To this purpose, MIC values were determined and QSAR analysis was performed. Photo-induced degradation rates of the drug substances ranged from 0.39 minsup–1/sup to 2.47 minsup–1/sup, with azithromycin showing the slowest degradation, followed by erythromycin and spiramycin. The degradation of tylosin proceeded the fastest. QSAR analysis indicated that most of the identified photoproducts were less eco-toxic than the original drugs. The corresponding MIC analysis demonstrated that the four macrolides were ineffective against the gram-negative Pseudomonas fluorescens but effective against the gram-positive Bacillus subtilis . The MIC determination of irradiated tylosin solutions showed exemplarily that prolongation of the irradiation times led to increasing MIC values of the solution, reduced efficacy and hence potentially less eco-toxicity of the irradiated solution and the degradates therein.
机译:目前正在讨论和研究光解作为废水处理厂中可持续水净化的扩展处理的附加阶段或至少一部分。这项研究描述了使用UVC / VUV辐射光诱导降解四种大环内酯类抗生素。特别注意确定形成的光诱导降解产物的生态毒性。为此,确定了MIC值并进行了QSAR分析。光诱导的药物降解速率为0.39 min –1 至2.47 min –1 ,其中阿奇霉素降解最慢,其次是红霉素和螺旋霉素。泰乐菌素的降解最快。 QSAR分析表明,大多数鉴定出的光产品比原始药物的生态毒性小。相应的MIC分析表明,四种大环内酯类药物对革兰氏阴性荧光假单胞菌无效,但对革兰氏阳性枯草芽孢杆菌有效。 MIC对辐射的泰乐菌素溶液的测定示例性地表明,辐射时间的延长导致溶液的MIC值增加,功效降低并且因此潜在地降低了辐射溶液及其降解物的生态毒性。

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