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Degradation of norfloxacin in aqueous solution by atmospheric-pressure non-thermal plasma: Mechanism and degradation pathways

机译:大气压非热等离子体降解诺氟沙星的水溶液:机理及降解途径

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摘要

Norfioxacin is a synthetic antibiotics drug which is widely used in the treatment of infectious diseases and also often carelessly released into natural environment resulting in antibiotics-contaminated wastewater. In this work, we employed atmospheric-pressure non-thermal dielectric barrier discharge (DBD) to treat norfloxacin-contaminated water and investigated the degradation efficiency and mechanism for the plasma treatments under different conditions with varied working gas atmospheres. Our results showed that the DBD efficiency for norfloxacin degradation depended on reactive oxygenitrogen species (RONS) produced in the plasma treatment, while the plasma-induced hydroxyl radical played a critical role in the norfloxacin degradation. For O-2-DBD, except for the contribution from reactive oxygen species (ROS), ozone could also play an important role. For N-2-DBD, reactive nitrogen species (RNS) could work synergistically with H2O2 to enhance the degradation effect. We also checked the plasma activated liquid (PAL) effect and analyzed the degradation products so that the degradation mechanism and pathways could be elucidated. This work may therefore provide the guidance for effective and feasible application of low-temperature plasma technology in treatment of antibiotics contaminated wastewater. (C) 2018 Elsevier Ltd. All rights reserved.
机译:诺氟沙星是一种合成抗生素药物,广泛用于治疗传染病,并且经常不小心释放到自然环境中,从而导致被抗生素污染的废水。在这项工作中,我们采用大气压非热电介质阻挡放电(DBD)处理去甲氟沙星污染的水,并研究了在不同条件下,不同工作气体气氛下等离子处理的降解效率和机理。我们的结果表明,DBD对诺氟沙星降解的效率取决于血浆处理过程中产生的活性氧/氮物质(RONS),而血浆诱导的羟基自由基在诺氟沙星降解中起关键作用。对于O-2-DBD,除了活性氧(ROS)的贡献外,臭氧也可能起重要作用。对于N-2-DBD,活性氮物质(RNS)可与H2O2协同作用,以增强降解效果。我们还检查了血浆活化液(PAL)的作用,并分析了降解产物,以便阐明降解机理和途径。因此,这项工作可以为低温等离子技术在抗生素污染的废水处理中的有效可行的应用提供指导。 (C)2018 Elsevier Ltd.保留所有权利。

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