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Adsorption of vancomycin antibiotic from aqueous solution using an activated carbon impregnated magnetite composite

机译:活性炭浸渍磁铁矿复合材料从水溶液中吸附万古霉素抗生素

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摘要

Vancomycin antibiotic is one of the most common antibiotics in hospitals in different parts of the world. The aim of this research was to synthesize a powder activated carbon impregnated magnetite composite (PAC/Fe3O4) for vancomycin removal from aqueous solution. The physical, chemical and surfaces characteristics of the synthesized composite were determined using XRD, SEM, VSM and BET techniques. Furthermore, several batch experiments were carried out to find vancomycin adsorption onto the PAC/Fe3O4 under various input variables namely, pH of aqueous media, reaction time, adsorbent dosages and initial antibiotic concentrations. In addition, isotherm and kinetic studies of antibiotic adsorptive removal were carried out using various models. Results showed that the maximum amount of vancomycin adsorption (97.83%) was obtained at pH of 5 during 60 min. Moreover, the direct and indirect relationships were observed between antibiotic removal and adsorbent dosage and initial antibiotic concentration, respectively. Furthermore, the obtained results of isotherm and kinetic studied revealed that Freundlich isotherm model and pseudo second-order kinetic model had the highest correlation with the experimental data of antibiotic adsorption. Finally, the reusability experiments showed that PAC/Fe3O4 cannot only has high ability of antibiotic adsorption, but also has high stability after five cycles of application.
机译:万古霉素抗生素是世界各地医院中最常见的抗生素之一。这项研究的目的是合成一种粉末活性炭浸渍磁铁矿复合材料(PAC / Fe3O4),用于从水溶液中去除万古霉素。使用XRD,SEM,VSM和BET技术确定合成复合材料的物理,化学和表面特性。此外,进行了几批实验,以发现万古霉素在各种输入变量(水性介质的pH值,反应时间,吸附剂剂量和初始抗生素浓度)下吸附到PAC / Fe3O4上。另外,使用各种模型进行了抗生素吸附去除的等温线和动力学研究。结果表明,在60分钟内,pH为5时,万古霉素的吸附量最大(97.83%)。而且,分别观察到抗生素去除和吸附剂剂量与初始抗生素浓度之间的直接和间接关系。此外,对等温线和动力学的研究结果表明,Freundlich等温线模型和伪二级动力学模型与抗生素吸附实验数据相关性最高。最后,可重复使用性实验表明,PAC / Fe3O4不仅具有很高的抗生素吸附能力,而且在五个周期的应用后具有很高的稳定性。

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