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An electrodeless atmospheric microwave plasma jet for efficient degradation of antibiotic norfloxacin

机译:一种无电极大气微波等离子体射流,用于有效降解抗生素诺氟沙星

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摘要

Plasma technology is increasingly being used for the degradation of residual antibiotics in aquatic environments. However, the electrodes in conventional plasma generators are subject to erosion, which can pollute the reaction system and shorten its lifetime. To overcome these drawbacks, we developed an electrodeless high-flow atmospheric microwave plasma jet (MPJ) for fast and efficient degradation of residual norfloxacin (NOR), a typical fluoroquinolone antibiotic that is frequently detected in the aquatic environment owing to its widespread use in the treatment of various infectious diseases. Stable plasma was generated through a low-cost magnetron with the assistance of injection-locking technology. The degradation efficiency of NOR (20 mg/L) reached 98.27 ± 1.03% at 6 min and the mineralisation efficiency reached 68.67 ± 3.21% at 15 min. The fast degradation process of the NOR solution contributes to the large cross-section (approximately 153 mm~2) of the plasma in direct contact with the solution. Hydroxyl radical (*OH) scavengers were used to identify the generated oxidising species, which indicated that their non-selective oxidation plays a major role in NOR degradation. Three main possible degradation pathways and mechanisms were proposed, namely the attack of *OH on the piperazine ring, qui-nolone ring, and benzene ring. The NOR solution was not toxic to Escherichia coli after 20 min of degradation. Thus, the high-flow atmospheric MPJ is an effective technology for the degradation of antibiotics in aqueous solutions.
机译:血浆技术越来越多地用于水产环境中残留抗生素的降解。然而,传统等离子体发生器中的电极受到侵蚀,这可以污染反应系统并缩短其寿命。为了克服这些缺点,我们开发了一种无电极高流量大气微波等离子体射流(MPJ),用于快速有效地降解残留的诺氟沙星(NOR),典型的氟喹啉抗生素,由于其广泛使用而经常检测到水生环境中。治疗各种传染病。通过注射锁定技术的帮助,通过低成本磁控管产生稳定的等离子体。在6分钟内,NOR(20mg / L)的降解效率达到98.27±1.03%,15分钟内的矿化效率达到68.67±3.21%。 NOR溶液的快速降解过程有助于与溶液直接接触的等离子体的大横截面(约153mm〜2)。使用羟基自由基(* OH)清除剂来鉴定产生的氧化物质,表明它们的非选择性氧化在或降解中起主要作用。提出了三种主要可能的降解途径和机制,即* OH对哌嗪环,Qui-Nolone环和苯环的攻击。在20分钟的降解后,NOR溶液对大肠杆菌无毒。因此,高流量大气MPJ是用于水溶液中抗生素降解的有效技术。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112729.1-112729.10|共10页
  • 作者单位

    College of Electronics and Information Engineering Sichuan University Chengdu 610064 China School of Public Health Southwest Medical University Luzhou 646000 China;

    College of Electronics and Information Engineering Sichuan University Chengdu 610064 China;

    School of Pharmacy Southwest Medical University Luzhou 646000 China;

    College of Electronics and Information Engineering Sichuan University Chengdu 610064 China;

    College of Electronics and Information Engineering Sichuan University Chengdu 610064 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrodeless high-flow atmospheric microwave plasma jet; Norfloxacin; Antimicrobial activity; Degradation pathway;

    机译:无极化高流量大气微波等离子射流;诺福克西林;抗菌活性;降解途径;

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