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Sulfonamide antibiotic reduction in aquatic environment by application of fenton oxidation process

机译:芬顿氧化法在水生环境中还原磺胺类抗生素

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摘要

Presence of antibiotics in the environment may cause potential risk for aquatic environment and organisms. In this research, Fenton oxidation process was offered as an effective method for removal of antibiotic sulfamethoxazole from aqueous solutions. The experiments were performed on laboratory-scale study under complete mixing at 25±2°C. The effects of initial antibiotic concentration, molar ratio of H2O2/Fe+2, solution pH, concentration of H2O2, Fe+2 and reaction time was studied on the oxidation of sulfamethoxazole in three level. The results indicated that the optimal parameters for Fenton process were as follows: molar ratio of [H2O2]/[Fe+2] = 1.5, pH= 4.5, and contact time= 15 min. In this situation, the antibiotic removal and COD reduction were achieved 99.99% and 64.7-70.67%, respectively. Although, Fenton reaction could effectively degrade antibiotic sulfamethoxazole under optimum experimental conditions, however, the rate of mineralization was not completed. This process can be considered to eliminate other refractory antibiotics with similar structure or to increase their biodegradability.
机译:环境中存在抗生素可能对水生环境和生物造成潜在风险。在这项研究中,Fenton氧化工艺是从水溶液中去除抗生素磺胺甲恶唑的有效方法。在实验室规模的研究中,在25±2°C下完全混合下进行实验。研究了初始抗生素浓度,H2O2 / Fe +2 的摩尔比,溶液pH,H2O2浓度,Fe +2 和反应时间对磺胺甲恶唑氧化的影响。在三个级别。结果表明,Fenton法的最佳工艺参数为:[H2O2] / [Fe +2 ]的摩尔比= 1.5,pH = 4.5,接触时间= 15min。在这种情况下,抗生素去除率和COD减少率分别达到99.99%和64.7-70.67%。尽管Fenton反应可以在最佳实验条件下有效降解抗生素磺胺甲恶唑,但是矿化速率尚未完成。可以考虑采用该方法消除结构相似的其他难治性抗生素或提高其生物降解性。

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