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Performances Evaluation of Photo-Fenton Process and Sonolysis for the Treatment of Penicillin G Formulation Effluent

机译:表演评估光芬顿工艺和Sonolatis治疗青霉素G配方流出物

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Penicillin G is an active pharmaceutical ingredient of great importance in health sectors. Meanwhile, because of its huge quantity production and resistance to biodegradability, this antibiotic is ubiquitously presented in aquatic environment. In this study, the degradation of effluent wastewater from Penicillin G production plant by Photo-Fenton process and Ultrasound process (Sonolysis) was investigated, the effects of different process variables in both methods were evaluated and at last the degradation of Pen-G by these two processes in the optimum conditions was compared. Pen-G concentration and Chemical Oxygen Demand (COD) were selected as the environmental parameters to follow the performance of Photo-Fenton process and Sonolysis. Optimum condition of Photo-Fenton process is in H2O2/Fe~(2+) molar ratio 20 (20 mM H2O2 and 1 mM Fe~(2+)) and pH 3.5 and for Sonolysis (35 KHz) is in pH 3. Complete degradation of Pen-G occurred in 30 and 70 min for Photo-Fenton process and Sonolysis, respectively. Based on the results, Photo-Fenton process is more efficient in terms of both COD degradation and Pen-G removal than Sonolysis (35 KHz).
机译:青霉素G是一种积极的药物成分,在卫生部门非常重要。同时,由于其巨大的生产和对生物降解性的抵抗力,这种抗生素普遍存在于水生环境中。在这项研究中,研究了青霉素G生产厂的流出物废水的降解通过光芬工艺和超声过程(Sonolysiss),评估了两种方法中不同工艺变量的影响,并终于通过这些方法降解了笔-G比较了最佳条件下的两个过程。选择笔浓度和化学需氧量(COD)作为环境参数,以遵循光芬工艺和Sonolys的性能。光芬顿工艺的最佳条件是H 2 O 2 / Fe〜(2+)摩尔比例20(20mM H 2 O 2和1 mm FE〜(2+)),pH 3.5和Sonolysis(35 kHz)是pH 3.完成PEN-G的降解分别发生在30分钟和70分钟,用于光芬顿工艺和Sonolysis。根据结果​​,在鳕鱼降解和笔除去而不是Sonolys(35 kHz)方面的光芬工艺更有效。

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