首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Synthesis of amino-functionalization magnetic multi-metal organic framework (Fe3O4/MIL-101(Al0.9Fe0.1)/NH2) for efficient removal of methyl orange from aqueous solution
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Synthesis of amino-functionalization magnetic multi-metal organic framework (Fe3O4/MIL-101(Al0.9Fe0.1)/NH2) for efficient removal of methyl orange from aqueous solution

机译:氨基官能化磁性多金属有机骨架的合成(Fe3O4 / MIL-101(Al0.9FE0.1)/ NH2),用于高效除去水溶液的甲基甲基

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摘要

An amino-functionalization magnetic multi-metal organic framework material (called Fe3O4/MIL-101(Al0.9Fe0.1)/NH2), synthesized by a versatile step-by-step assembly method, has been investigated as a convenient and effective adsorbent for methyl orange (MO). The synthesized nano-adsorbent was characterized by TEM, TGA, SEM, FTIR, VSM, XPS and BET, XRD, respectively. Various factors influencing the adsorption of MO such as the adsorbent dosage, initial concentration of MO, the contact time, pH value of the solutions and the temperatures were studied by batch experiments. The results indicated that it agreed well to the Langmuir adsorption model, and the maximum adsorption capacities of MO were found to be 355.8 mg/g at pH 6.0. Kinetic data showed good correlation with pseudo-second-order equation. The results of adsorption thermodynamic studies illustrate that the sorption is exothermic, spontaneous and decreased randomness of the system. Besides, good magnetic performance of Fe3O4/MIL-101(Al0.9Fe0.1)/NH2 makes it simply achieve the solid-liquid separation at low magnetic field within 5 min. In addition, compared with Fe3O4/MIL-101(Al)/NH2, the Fe3O4/MIL-101(Al0.9Fe0.1)/NH2 not only showed higher removal efficiency toward MO, but also had higher stability in aqueous solution. (C) 2018 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:通过通用逐步组装方法合成的氨基官能化磁性多金属有机骨架材料(称为Fe3O4 / MIL-101(Al0.9FE0.1)/ NH2)作为一种方便且有效的吸附剂对于甲基橙(Mo)。通过TEM,TGA,SEM,FTIR,VSM,XPS和BET,XRD分别表征合成的纳米吸附剂。通过分批实验研究了影响Mo诸如吸附剂剂量,初始浓度,溶液的接触时间,pH值和温度的各种因素。结果表明,它同意朗米尔吸附模型,钼的最大吸附能力为355.8mg / g在pH6.0。动力学数据显示出与伪二阶方程的良好相关性。吸附热力学研究结果表明,吸附是放热,自发性和减少的系统随机性。此外,Fe3O4 / mil-101(Al0.9Fe0.1)/ NH 2的良好磁性性能使其在5分钟内仅在低磁场下实现固液分离。另外,与Fe3O4 / mil-101(Al)/ NH2相比,Fe3O4 / MIL-101(Al0.9FE0.1)/ NH2不仅向MO显示出较高的去除效率,而且在水溶液中具有较高的稳定性。 (c)2018台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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