Activated carbon@MgO@Fe3O4 as an efficient adsorbent for As (III) removal

被引:0
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作者
Hossein Esmaeili
Seyyed Mojtaba Mousavi
Seyyed Alireza Hashemi
Wei-Hung Chiang
Somayeh Ahmadpour Abnavi
机构
[1] Islamic Azad University,Department of Chemical Engineering, Bushehr Branch
[2] Shiraz University of Medical Sciences,Department of Medical, Nanotechnology, School of Advanced Medical Sciences and Technologies
[3] National Taiwan University of Science and Technology,Department of Chemical Engineering
[4] Shiraz University of Medical Sciences,Pharmaceutical Sciences Research Center
[5] Kherad Institute of Higher Education,Department of Chemical Engineering, School of Chemical Engineering
来源
Carbon Letters | 2021年 / 31卷
关键词
Arsenic metal ion; Fe; O; /MgO/AC; Aqueous solution; Kinetic; Isotherm;
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摘要
In this study, Fe3O4/MgO/Activated carbon composite was used to remove arsenic ion (As (III)) from aqueous media. To this end, Frangula Alnus was used to prepare activated carbon (AC) by calcination in the furnace at 700 °C for 4 h and was then used to synthesize the MgO/Fe3O4/AC composite. To study the surface properties of the composite, various analyses such as SEM, EDX/Mapping, FTIR, DLS, BET and VSM were applied. According to the BET analysis, the specific surface area and average pore size of the Fe3O4/MgO/AC composite were obtained as 190.92 m2/g and 7.57 nm, respectively, which showed that the aforementioned nanocomposite had a mesoporos structure with an excellent specific surface area. Also, VSM analysis indicated that the composite had a superparamagnetic property and could be easily separated from the solution by a magnet. Moreover, the results of the As (III) sorption indicated that the highest uptake efficiency was obtained 96.65% at pH = 7, adsorbent dosage = 0.13 g/L, t = 35 min, T = 45 °C and Co = 6 mg/L. In addition, the pseudo-second-order model could better describe the kinetic behavior of the sorption process. Furthermore, Langmuir model was the best model to describe the equilibroium behavior of the As(III) ion sorption. Besides, according to the the thermodynamic study, enthalpy change and entropy change were obtained 58.11 kJ/mol and 224.49 J/mol.K, respectively, indicating that the sorption process was spontaneous and endothermic. According to the results, the Fe3O4/MgO/AC composite was a good adsorbent with the extraordinary properties, which can be used on an industrial scale.
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页码:851 / 862
页数:11
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