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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A new study on photocatalytic degradation of meropenem and ceftriaxone antibiotics based on sulfate radicals: Influential factors, biodegradability, mineralization approach
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A new study on photocatalytic degradation of meropenem and ceftriaxone antibiotics based on sulfate radicals: Influential factors, biodegradability, mineralization approach

机译:基于硫酸盐自由基的Meropenem和Ceftriaxone抗生素的光催化降解新研究:影响因素,生物降解性,矿化方法

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The removal of meropenem and ceftriaxone antibiotics from solution, as first study, was performed in a photo Fenton process in which UV light and ferrous ions (Fe2+) were applied as persulfate (PS) activators. The batch tests were performed in various conditions like pH of aqueous solution (2-10), amounts of ferrous (0.1-0.5 g/L), initial antibiotic concentrations (20-100 mg/L), persulfate dosages (1-5 mM), UV light intensities (4, 6 and 8 W), temperatures (20, 35 and 50 degrees C) and scavengers (TBA and IBA). Based on the results of comparative studies, PS/Fe2+/UV system showed the highest ability to remove both antibiotics, in comparison with the other processes (i.e., UV, PS, PS/UV and PS/Fe2+). In addition, the removal rate of antibiotics has a direct relationship with the iron and PS concentrations, UV light intensity and temperature. While, increasing pH of solution and initial antibiotic concentrations, the removal rate of antibiotics witnessed a significant decline. Quenching tests indicated that sulfate radicals had a dominant species during degradation reactions. The mineralization higher than > 54% was obtained for both antibiotics. A slight loss was observed in the degradation efficiencies of antibiotics in binary system, compared to the single one. The experimental data were in good agreement with pseudo-first-order kinetic model. Biodegradability indices were enhanced significantly after treatment, which demonstrates that PS/Fe2+/UV system has a high ability in removing organic matters effectively. Finally, it can be inferred that the integration of ferrous ions and UV irradiations was an appropriate technique for efficient activation of PS, which can be introduced as a promising method to remove high concentrations of antibiotics in a real wastewater sample which shows its high feasibility in natural environment.
机译:从溶液中除去梅洛涅姆和头孢曲松抗生素的去除是第一研究的在光芬顿工艺中进行,其中紫外线和铁离子(Fe2 +)被用作过硫酸盐(PS)活化剂。在水溶液(2-10)pH的pH值(2-10)pH的各种条件下进行批量测试,二核(0.1-0.5g / L),初始抗生素浓度(20-100mg / L),过硫酸盐剂量(1-5mm ),UV光强度(4,6和8 W),温度(20,35和50℃)和清除剂(TBA和IBA)。基于比较研究的结果,与其他方法(即UV,PS,PS / UV和PS / FE2 +相比,PS / Fe2 + / UV系统显示出除去两种抗生素的最高能力。此外,抗生素的去除率与铁和PS浓度,UV光强度和温度具有直接关系。虽然增加了溶液和初始抗生素浓度的pH,但抗生素的去除率见证了显着下降。淬火试验表明,硫酸盐在降解反应期间具有显性种类。为两种抗生素获得高于> 54%的矿化。与单一的单一的二元系统中抗生素的降解效率观察到略微损失。实验数据与伪一阶动力学模型吻合良好。治疗后,生物降解性指数显着增强,这表明PS / Fe2 + / UV系统具有高能力在有效去除有机物质方面。最后,可以推断,亚铁离子和紫外线照射的整合是一种适当的PS的有效活化的技术,可以作为一种有希望的方法,以去除真正的废水样品中的高浓度抗生素,其显示其高可行性自然环境。

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