高级氧化技术降解四环素类抗生素的研究进展
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1.哈尔滨工程大学 材料与化学工程学院;2.河北省保定市涞水县涞水金隅冀东环保科技有限公司

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A

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国家自然基金青年基金 52002090


Progress in degradation of tetracycline antibiotics by advanced oxidation processes
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1.School of Materials and Chemical Engineering,Harbin Engineering University;2.Laishui Jinyu Jidong Environment Protection Technology Co,Ltd, Baoding,China

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    摘要:

    当前由于对畜禽养殖业以及渔业高度需求, 四环素类抗生素被大量使用,给环境以及公共健康带来威胁。本文介绍了四环素类抗生素的主要成分以及在环境中的危害,同时对降解处理四环素类抗生素的方法进行归纳总结。主要针对高级氧化技术、性能调控策略以及新型高级氧化策略三个方面进行总结,由于四环素类抗生素难降解性的特性,单一的高级氧化技术难以彻底将其降解,通常需要对高级氧化技术进行性能的调控以及联合其他技术才能降解彻底。新型高级氧化降解策略在降解四环素类抗生素方面得到广泛关注,其主要包括生物偶联化学法、光电催化法、光-芬顿法、电-芬顿法、臭氧-电化学耦合法、低温等离子技术等,这些新技术新策略的运用可使四环素降解更为彻底,矿化程度更高。

    Abstract:

    Currently, due to the high demand for livestock and poultry farming and fisheries, tetracycline antibiotics are used in large quantities, which poses a threat to the environment and public health. This review introduces the main components of tetracycline antibiotics and their harm in the environment, and summarizes the methods of degradation and treatment of tetracycline antibiotics. This review mainly summarizes the advanced oxidation technology, the performance control strategy, and the new advanced oxidation strategy. Due to the difficult characteristics of tetracycline antibiotics, a single advanced oxidation technology cannot completely degrade them, and it is usually necessary to regulate and combine the performance of advanced oxidation technology to completely degrade them. At present, there are many new advanced oxidative degradation strategies with outstanding performance in degrading tetracycline antibiotics, including biological coupling chemistry, photocatalysis, photo-Fenton method, electric-Fenton method, ozone-electrochemical coupling method and low temperature plasma technology. These new approaches aim to achieve more comprehensive and effective degradation of tetracycline antibiotics.

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陈洪雪,张智慧,白成英,宋玉彤.高级氧化技术降解四环素类抗生素的研究进展[J].精细化工,2025,42(3):

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  • 收稿日期:2024-01-04
  • 最后修改日期:2024-04-26
  • 录用日期:2024-04-15
  • 在线发布日期: 2025-03-14
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