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首页> 外文期刊>Iranian Journal of Toxicology >Advanced Oxidation Process Efficiently Removes Ampicillin from Aqueous Solutions
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Advanced Oxidation Process Efficiently Removes Ampicillin from Aqueous Solutions

机译:高级氧化过程有效地从水溶液中除去氨苄青霉素

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Background: Antibiotics are considered important and integral parts of modern life, and are widely used for treating human and animal illnesses, in medicine and veterinary medicine. However, they can cause environmental pollution and may lead to increased bacterial resistance even at low concentrations. Methods: In this study, Ampicillin degradation from β-lactam antibiotic family was studied, using a surface methodology consisting of ultraviolet radiation (254 nm) and Hsub2/subOsub2/sub oxidation process in an 8-watt Pyrex reactor. The variables used included the reaction time (30-60 min), Ampicillin concentration (5-25 mg/l), Hsub2/subOsub2/sub concentration (5-25 mg/l), and pH range of 3-9 at three alpha levels of -1, 0 and +1. Results: The data were analyzed by the analysis of variance test (ANOVA), while the validity was evaluated using regression coefficients. The optimum condition for Ampicillin degradation followed a linear model, at a 60-min. reaction time and pH 3, the Ampicillin (5mg/l) and hydrogen peroxide (25mg/l) provided the maximum antibiotic removal efficiency (82%). Conclusions: The results suggest a positive and significant effect for the antibiotic concentration and a negative effect for the pH. The Ampicillin concentration with a coefficient of 8.91 had the highest impact on the efficiency of the removal process. Therefore, antibiotic pollution in the environment can be reduced through the UV-Hsub2/subOsub2/sub process, so as to protect human health from the associated hazards.
机译:背景:抗生素被认为是现代生活的重要和组成部分,并且广泛用于治疗医学和兽医的人和动物疾病。然而,它们可以引起环境污染,即使在低浓度下也可能导致细菌抗性增加。方法:在本研究中,使用由紫外线辐射(254nm)和H 2 2 氧化过程组成的表面方法研究了来自β-内酰胺抗生素家族的氨苄青霉素降解在一个8瓦的Pyrex反应堆中。使用的变量包括反应时间(30-60分钟),氨苄青霉素浓度(5-25mg / L),H 2 O 2 浓度(5-25mg / l),3-9的pH范围为-1,0和+1。结果:通过对方差测试(ANOVA)分析数据,使用回归系数评估有效性。氨苄青霉素降解的最佳条件下呈线性模型,在60分钟。反应时间和pH 3,氨苄青霉素(5mg / L)和过氧化氢(25mg / L)提供最大抗生素去除效率(82%)。结论:结果表明对抗生素浓度的正显着和显着影响和对pH的负面影响。具有8.91系数的氨苄青霉素浓度对去除过程的效率产生了最高影响。因此,通过UV-H 2 O 2 工艺可以减少环境中的抗生素污染,从而保护人类健康免受相关危害。

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