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Synthesis of CNT@MIL-68(Al) composites with improved adsorption capacity for phenol in aqueous solution

机译:改善水溶液中苯酚吸附能力的CNT @ MIL-68(Al)复合材料的合成

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摘要

A series of CNT@MIL-68(Al) composites with different carbon nanotubes (CNTs) loadings have been synthesized and characterized by SEM, TEM, PXRD, FT-IR, TGA, and N-2 adsorption. As evidenced from SEM and TEM images, the incorporation of CNTs can result in better dispersity of MIL-68(AI) in composites and smaller particle size than pure MIL-68(Al). Adding appropriate amounts of CNTs increases both the BET surface areas and the total volume of small micorpores (<16 angstrom), leading to largely improved performance of adsorptive removal of phenol from aqueous solution. In the industrial concentration range of phenol, the adsorption capacity of 0.75% CNT@MIL-68(Al) was improved up to 188.7% compared with the pristine MIL-68(AI), possibly due to the increase of small micropores introduced by the incorporation of CNTs. Regeneration experiments demonstrated that the composites are stable with good regenerability for at least five cycles. This work shows that the composites formed by the combination of CNTs and MOFs may find promising applications in liquid phase adsorption. (C) 2015 Elsevier B.V. All rights reserved.
机译:合成了一系列具有不同碳纳米管负载量的CNT @ MIL-68(Al)复合材料,并通过SEM,TEM,PXRD,FT-IR,TGA和N-2吸附进行了表征。从SEM和TEM图像可以看出,与纯MIL-68(Al)相比,CNT的掺入可以使MIL-68(AI)在复合材料中的分散性更好,粒径更小。添加适量的CNT会增加BET表面积和小微生物(<16埃)的总体积,从而大大提高了从水溶液中吸附去除苯酚的性能。在苯酚的工业浓度范围内,与原始MIL-68(AI)相比,0.75%CNT @ MIL-68(Al)的吸附容量提高了188.7%,这可能是由于苯酚引入的小微孔增加了。碳纳米管的结合。再生实验表明,复合材料在至少五个循环中稳定且具有良好的再生性。这项工作表明,由CNT和MOF的组合形成的复合材料可能会在液相吸附中找到有希望的应用。 (C)2015 Elsevier B.V.保留所有权利。

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