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通过应用功能化碳纳米管提高阿莫西林在水环境中的去除率。

Improvement of amoxicillin removal from aqueous environment by applying functionalized carbon nanotube.

作者信息

Bazregari M, Farhadian N

机构信息

a Chemical Engineering Department, Faculty of Engineering , Ferdowsi University of Mashhad , Mashhad , Iran.

出版信息

Environ Technol. 2018 Sep;39(17):2231-2242. doi: 10.1080/09593330.2017.1352622. Epub 2017 Jul 18.

Abstract

Multiwalled carbon nanotubes (MWCNTs) were applied for amoxicillin removal from aqueous environment. To enhance the adsorption capacity of adsorbent, MWCNT with modified surface was applied. A functional group as 8-hydroxyquinoline (8-HQ) and carboxyl group were selected to modify the surface of MWCNT. Fourier transform infrared spectroscopy and scanning electron microscopy confirmed the successful surface modification of MWCNTs. Some important parameters associated with the adsorption capacity such as pH, initial concentration of amoxicillin and equilibrium time of adsorption were investigated for pristine and functionalized MWCNTs. Adsorption results suggested that the maximsum removal efficiency of pollutant was achieved at pH = 5 for pristine and 8-HQ functionalized carbon nanotube (CNT) and pH = 3 for the functionalized CNT with carboxylic groups. The equilibrium time of adsorption was 4 h for the pristine and 2 h for the functionalized CNTs. The maximum adsorption capacity of 8-HQ CNTs was nearly 50% higher than that of pristine MWCNT. The modeling of adsorption process suggested that adsorption of amoxicillin on pristine and functionalized MWCNTs was best fitted with Langmuir model. Moreover, pseudo-second-order kinetic model was found to be the best kinetic model for the adsorption process. In conclusion, functionalized MWCNT with 8-HQ functional groups offers a novel alternative for removing amoxicillin from water.

摘要

多壁碳纳米管(MWCNTs)被用于从水环境中去除阿莫西林。为提高吸附剂的吸附能力,使用了表面改性的MWCNT。选择8-羟基喹啉(8-HQ)和羧基作为官能团来改性MWCNT的表面。傅里叶变换红外光谱和扫描电子显微镜证实了MWCNTs表面改性成功。研究了原始和功能化MWCNTs与吸附能力相关的一些重要参数,如pH值、阿莫西林的初始浓度和吸附平衡时间。吸附结果表明,原始和8-HQ功能化碳纳米管(CNT)在pH = 5时实现了污染物的最大去除效率,羧基功能化的CNT在pH = 3时实现了最大去除效率。原始MWCNT的吸附平衡时间为4小时,功能化CNT的吸附平衡时间为2小时。8-HQ CNTs的最大吸附容量比原始MWCNT高出近50%。吸附过程的建模表明,阿莫西林在原始和功能化MWCNTs上的吸附最符合朗缪尔模型。此外,发现伪二级动力学模型是吸附过程的最佳动力学模型。总之,具有8-HQ官能团的功能化MWCNT为从水中去除阿莫西林提供了一种新的选择。

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