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首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >UVC- and UVC/H_2O_2-Driven nonribosomal peptide antibiotics degradation: application to zinc bacitracin as a complex emerging contaminant
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UVC- and UVC/H_2O_2-Driven nonribosomal peptide antibiotics degradation: application to zinc bacitracin as a complex emerging contaminant

机译:UVC-和UVC / H_2O_2驱动的非纤维素肽抗生素降解:在Bacitracin锌作为复杂的新兴污染物

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摘要

Zinc bacitracin (Zn-Bc) belongs to the group of nonribosomal peptide antibiotics (NRPA), comprising a mixture of non-biodegradable congeners characterized by complex structures containing cyclic, polycyclic, and branched chains. However, reports on the use of AOPs for the degradation of NRPA are non-existent. In this context, the present work investigated the photodegradation of Zn-Bc in aqueous solution by direct photolysis and the UVC/H2O2 process. The effects of the specific UVC photon emission rate and initial H2O2 concentration were studied following a Doehlert-design response surface approach. The results showed that all congeners photolyzed at the highest UVC doses in the absence of hydrogen peroxide, with a calculated quantum yield of 0.0141 mol Zn-Bc mol photons(-1). However, no TOC removal was observed after 120 minutes of irradiation, suggesting the disruption of the peptide bonds in the antibiotic molecules without significant changes in the amino acid residues. The addition of H2O2 substantially accelerated Zn-Bc photodegradation, resulting in a remarkable removal of up to 71% of TOC. Most importantly, the antimicrobial activity against Staphylococcus aureus could be completely removed by both treatments. These findings point out that the UVC/H2O2 process can be straightly engineered for the treatment of metalloantibiotics-containing wastewater in pharmaceutical facilities.
机译:锌生物硝酸锌(Zn-BC)属于非纤维素肽抗生素(NRPA)组,其包含具有含有环状,多环和支链链的复杂结构的非生物降解的链接器的混合物。但是,关于使用AOP用于降解NRPA的报告是不存在的。在这种情况下,本作研究通过直接光解和UVC / H 2 O 2法研究了Zn-BC在水溶液中的光降解。在十号设计响应面方法之后,研究了特异性UVC光子发射率和初始H2O2浓度的效果。结果表明,在不存在过氧化氢的情况下,所有同均在最高UVC剂量中被光解,所以计算量的量子产率为0.0141mol Zn-BC Mol光子(-1)。然而,在120分钟的照射后未观察到TOC去除,表明抗生素分子中的肽键破坏,而不会在氨基酸残基的显着变化。加入H 2 O 2基本上加速的Zn-BC光降解,导致可显着的去除高达71%的TOC。最重要的是,对金黄色葡萄球菌的抗微生物活性可以通过这两种治疗完全除去。这些发现点指出UVC / H2O2的方法可以直接设计用于治疗药物设施中的含有金属杀虫剂的废水。

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