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Manganese dioxide/iron oxide/acid oxidized multi-walled carbon nanotube magnetic nanocomposite for enhanced hexavalent chromium removal

机译:二氧化锰/氧化铁/酸氧化多壁碳纳米管磁性纳米复合材料增强六价铬去除

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This study presents a simple route for the fabrication of manganese dioxide/iron oxide/acid oxidized multi-walled carbon nanotube magnetic nanocomposites (MnO2/Fe3O4/o-MWCNTs). The materials were characterized by transmission electron microscopy, Fourier-transform infrared spectroscopy. X-ray diffraction, vibrating sample magnetometry, and Brunauer, Emmett, and Teller surface area measurement. MnO2/Fe3O4/o-MWCNTs are more effective for hexavalent chromium ion adsorption compared with other materials. Hexavalent chromium adsorption by MnO2/Fe3O4/o-MWCNTs is strongly pH dependent. The Langmuir isotherm model is consistent with the experimental data at different temperatures. The maximum adsorption capacity was determined to be q_(max) = 186.9 mg g~(-1). A contact time of different initial concentrations was about 150 min to attain adsorption equilibrium. The kinetic adsorption of different initial concentrations can be described by the pseudo-second-order rate equation. The overall rate process was apparently influenced by external mass transfer and intraparticle diffusion. Moreover, the thermodynamic parameters indicated that the adsorption process was spontaneous and endothermic, and that the adsorption mechanism included both the physical and the chemical adsorption mechanisms. After adsorption, MnO2/Fe3O4/o-MWCNTs can be conveniently and quickly separated from the media by an external magnetic field, and adsorption capacity can remain up to 85% aTter five times of usage. Thus, MnO2/Fe3O4/o-MWCNTs are good candidate for efficient hexavalent chromium removal from wastewater and for the deep-purification of polluted water.
机译:这项研究为二氧化锰/氧化铁/酸氧化的多壁碳纳米管磁性纳米复合材料(MnO2 / Fe3O4 / o-MWCNTs)的制备提供了一条简单的途径。通过透射电子显微镜,傅立叶变换红外光谱对材料进行表征。 X射线衍射,振动样品磁力分析以及Brunauer,Emmett和Teller表面积测量。与其他材料相比,MnO2 / Fe3O4 / o-MWCNTs对六价铬离子的吸附更有效。 MnO2 / Fe3O4 / o-MWCNTs对六价铬的吸附强烈依赖于pH。 Langmuir等温线模型与不同温度下的实验数据一致。确定最大吸附容量为q_(max)= 186.9 mg g〜(-1)。不同初始浓度的接触时间为约150分钟以达到吸附平衡。不同的初始浓度的动力学吸附可以通过拟二级速率方程来描述。整个速率过程显然受到外部质量转移和颗粒内扩散的影响。此外,热力学参数表明吸附过程是自发的和吸热的,并且吸附机理包括物理和化学吸附机理。吸附后,可通过外部磁场方便快捷地将MnO2 / Fe3O4 / o-MWCNT从介质中分离出来,吸附量在使用5倍后仍可保持高达85%。因此,MnO2 / Fe3O4 / o-MWCNTs是从废水中有效去除六价铬和深度净化污水的良好候选者。

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