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首页> 外文期刊>Journal of Hazardous Materials >Fate of antimicrobials in duckweed Lemna minor wastewater treatment systems
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Fate of antimicrobials in duckweed Lemna minor wastewater treatment systems

机译:浮萍Lemna次要废水处理系统中抗生素的命运

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The fate of four antimicrobials (cefadroxil, CFD; metronidazole, METRO; trimethoprim, TRI; sulfamethoxazole, SMX) was studied in Lemna minor systems and the role of different mechanisms on their removal was evaluated. All micropollutants were significantly removed in batch experiments with active Lemna minor; the highest removal was observed for CFD (100% in 14 d), followed by METRO (96%), SMX (73%) and TRI (59%) during 24 d of the experiment. Calculation of kinetic constants for hydrolysis, photodegradadon, sorption to biomass and plant uptake revealed significant differences depending on the compound and the studied mechanism. For METRO, TRI and SMX the kinetic constants of plant uptake were by far higher comparing to those of the other mechanisms. The transformation products of antimicrobials were identified using UHPLC-QToF-MS. Two were the main degradation pathways for TRI; hydroxylation takes place during both phyto- and photodegradation, while demethylation occurs only in absence of Lemna minor. The operation of a continuous-flow duckweed system showed METRO and TRI removal equal to 71 +/- 11% and 61 +/- 8%, respectively. The application of mass balance and the use of published biodegradation constants showed that plant uptake and biodegradation were the major mechanisms governing METRO removal; the most important mechanism for TRI was, plant uptake. (C) 2017 Elsevier B.V. All rights reserved.
机译:在Lemna次要系统中研究了四种抗微生物药物(头孢曲定,CFD,甲硝唑,麦德龙,甲氧苄啶,TRI,磺胺甲恶唑,SMX)的命运,并评估了不同机制对它们的去除作用。在活性Lemna minor的分批实验中,所有微量污染物均被显着去除。在实验的24天中,观察到的CFD去除率最高(在14天内为100%),其次是METRO(96%),SMX(73%)和TRI(59%)。水解,光降解,对生物量的吸附和植物吸收的动力学常数的计算显示出显着差异,这取决于化合物和所研究的机理。对于METRO,TRI和SMX,与其他机理相比,植物吸收的动力学常数要高得多。使用UHPLC-QToF-MS鉴定抗微生物药物的转化产物。 TRI的主要降解途径有两个。在植物降解和光降解过程中都会发生羟化反应,而只有在Lemna minor缺失的情况下才会发生脱甲基反应。连续流浮萍系统的操作显示METRO和TRI去除分别等于71 +/- 11%和61 +/- 8%。质量平衡的应用和已发表的生物降解常数的使用表明,植物的吸收和生物降解是控制麦德龙去除的主要机制。 TRI的最重要机制是植物吸收。 (C)2017 Elsevier B.V.保留所有权利。

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