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Adsorptive removal of aqueous bezafibrate by magnetic ferrite modified carbon nanotubes

机译:磁性铁氧体修饰碳纳米管吸附去除苯扎贝特水溶液

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In this work, magnetic ferrite modified carbon nanotubes (MFe2O4/CNTs,?M: Mn or Co) were synthesized and employed as adsorbents to remove emerging pollutant bezafibrate (BZF) from aqueous solution. The structural and surface properties of the prepared adsorbents were characterized, and the performances of the MFe2O4/CNTs were systematically investigated from adsorption kinetics and mechanistic points of view. Results showed that the fabricated MFe2O4/CNTs could integrate the advantages of CNTs and ferrite, thereby exhibiting an excellent adsorption performance and recyclability. The MnFe2O4/CNTs were more effective than CoFe2O4/CNTs for BZF adsorption. When the initial concentration of BZF was varied from 5 to 40 mg L?1, the maximum adsorption capacity of MnFe2O4/CNTs and CoFe2O4/CNTs increased from 14.8 to 33.4 mg g?1 and 8.1 to 27.8 mg g?1, respectively. Moreover, the Langmuir isotherm model and pseudo-second-order equation could elaborate well the adsorption of BZF on MFe2O4/CNTs. The thermodynamic analysis further revealed that the adsorptions were spontaneous processes. Based on measurements of surface and pore diffusion and the results of adsorption reactions, possible mechanisms were proposed to explain the adsorption process. This research indicates that the MFe2O4/CNTs are potentially applicable for the removal of BZF from aqueous solution.
机译:在这项工作中,磁性铁氧体修饰的碳纳米管(MFe 2 O 4 / CNTs,?M:Mn或Co)被合成并用作吸附剂,以从水溶液中去除新兴的污染物苯扎贝特(BZF)。表征了所制备的吸附剂的结构和表面性质,以及MFe 2 O 4 /的性能从吸附动力学和力学角度系统地研究了碳纳米管。结果表明,所制备的MFe 2 O 4 / CNTs可以整合CNTs和铁氧体的优点,从而展现出优异的吸附性能和可回收性。 MnFe 2 O 4 / CNT比CoFe 2 更有效> O 4 / CNTs用于BZF吸附。当BZF的初始浓度在5至40 mg L ?1 之间变化时,MnFe 2 的最大吸附容量small> O 4 / CNT和CoFe 2 O 4 < / small> / CNTs从14.8 mg g ?1 增加到8.1至27.8 mg g ?1 , 分别。此外,Langmuir等温模型和伪二阶方程可以很好地说明BZF在MFe 2 O 4 < / small> / CNT。热力学分析进一步表明吸附是自发过程。基于表面和孔扩散的测量以及吸附反应的结果,提出了可能的机理来解释吸附过程。这项研究表明,MFe 2 O 4 / CNTs可能适用于从水溶液中去除BZF 。

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