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HO 和 O 协同水动力空化降解培氟沙星

Degradation of pefloxacin by hybrid hydrodynamic cavitation with HO and O.

机构信息

Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.

Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.

出版信息

Chemosphere. 2022 Sep;303(Pt 3):135299. doi: 10.1016/j.chemosphere.2022.135299. Epub 2022 Jun 9.

Abstract

The degradation of toxic chemicals, antibiotics and other residues in organic wastewater has attracted much attention. Among various degradation technologies, hydrodynamic cavitation (HC) reactors have the advantage of being simple to operate. Through the combination of HC and other oxidants, the removal efficiency and energy efficiency of organic matter can be greatly improved, and the consumption of chemicals and the processing costs can be reduced. In this work, HC technology combined with oxidants was used to degrade pefloxacin (PEF), and the effect of different operating conditions on PEF degradation was investigated. The results indicated that the removal efficiency of PEF treated with HC alone was 84.9% under the optimal HC conditions of pH 3.3 and 120 min, which is much higher than that (35.5%) of pH 5.3. When co-treating the PEF solution with HC and HO at 0.3 MPa and pH 5.3, the optimal molar ratio of PEF to HO was 1:5, the highest PEF removal efficiency was 69.7%, and the synergy index (SI) was 4.4. When combining HC with O, the PEF removal efficiency gradually elevated with increasing ozone addition. When the addition amount of ozone was 0.675 g/h, the removal efficiency of PEF was the highest, which was 91.5% after treatment of 20 min. The intermediate products in the reaction process were analyzed based on UV-Vis spectroscopy and LC-MS, and the mechanism and reaction pathways of PEF were proposed.

摘要

有机废水中有毒化学品、抗生素和其他残留物质的降解引起了广泛关注。在各种降解技术中,水力空化(HC)反应器具有操作简单的优点。通过将 HC 与其他氧化剂结合使用,可以大大提高有机物的去除效率和能源效率,同时降低化学物质的消耗和处理成本。在这项工作中,采用 HC 技术与氧化剂相结合来降解培氟沙星(PEF),并研究了不同操作条件对 PEF 降解的影响。结果表明,在 HC 条件为 pH 3.3 和 120 分钟的最佳条件下,单独使用 HC 处理 PEF 的去除效率为 84.9%,远高于 pH 5.3 时的 35.5%。当在 0.3 MPa 和 pH 5.3 下,将 HC 和 HO 共同处理 PEF 溶液时,PEF 与 HO 的最佳摩尔比为 1:5,PEF 的去除效率最高可达 69.7%,协同指数(SI)为 4.4。当将 HC 与 O 结合使用时,随着臭氧的加入,PEF 的去除效率逐渐提高。当臭氧的添加量为 0.675 g/h 时,PEF 的去除效率最高,处理 20 分钟后达到 91.5%。根据紫外-可见光谱和 LC-MS 分析了反应过程中的中间产物,并提出了 PEF 的反应机制和反应途径。

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