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Fabrication of UiO-66/MIL-101(Fe) binary MOF/carboxylated-GO composite for adsorptive removal of methylene blue dye from aqueous solutions

机译:UIO-66 / MIL-101(Fe)二元制造/羧化 - 去复合材料的制备用于含水溶液的吸附除去亚甲基蓝染料

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摘要

This study provides a novel composite as an efficient adsorbent of cationic methylene blue dye. UiO-66/MIL-101(Fe) binary metal organic framework (MOF) was fabricated using a solvothermal technique. Additionally, the developed binary MOF was modified with carboxylated graphene oxide (GOCOOH) using a post-synthetic technique. The as-fabricated UiO-66/MIL-101(Fe)-GOCOOH composite was analyzed by FTIR, XRD, SEM, BET, TGA, XPS and zeta potential analysis. The adsorption performance of UiO-66/MIL-101(Fe)-GOCOOH composite was examined for its aptitude to adsorb cationic MB dye using a batch technique. The obtained data revealed that, the developed UiO-66/MIL-101(Fe)-GOCOOH composite exhibited higher adsorption capacity compared to UiO-66/MIL-101(Fe) binary MOF. Adsorption isotherms and kinetic studies revealed that MB dye adsorption onto UiO-66/MIL-101(Fe)-GOCOOH composite fitted a Langmuir isotherm model ( q _(m) = 448.71 mg g ~(?1) ) and both pseudo 1 ~(st) order and pseudo 2 ~(nd) order kinetic models. An intra-particle diffusion model showed that the adsorption process occurs through three steps. Besides, thermodynamic data reflected that the adsorption of MB onto UiO-66/MIL-101(Fe)-GOCOOH composite is an endothermic and spontaneous process and the adsorption involves both physisorption and chemisorption interactions. The as-fabricated UiO-66/MIL-101(Fe)-GOCOOH composite exhibited good reusability and can be considered as a promising reusable adsorbent for the treatment of dye-containing industrial effluents with high efficiency.
机译:本研究提供了一种新型复合材料,作为阳离子亚甲基蓝染料的有效吸附剂。使用溶剂热技术制造UIO-66 / MIL-101(Fe)二元金属有机框架(MOF)。另外,使用合成后技术用羧化石墨烯氧化物(Gocooh)改性开发的二元MOF。通过FTIR,XRD,SEM,BET,TGA,XPS和Zeta电位分析分析了AS制造的UIO-66 / MIL-101(Fe)-Gocooh复合材料。通过使用批量技术检查UIO-66 / MIL-101(Fe)-Gocooh复合材料的吸附性能以吸附阳离子MB染料。所获得的数据显示,与UIO-66 / MIL-101(Fe)二元MOF相比,发达的UIO-66 / MIL-101(Fe)-Gocooh复合材料表现出较高的吸附能力。吸附等温线和动力学研究表明,MB染料吸附到UIO-66 / MIL-101(Fe)-Gocooh复合材料上装配Langmuir等温线(Q _(m)= 448.71mg g〜(α1))和伪1〜 (ST)订单和伪2〜(ND)订单动力学模型。颗粒内扩散模型表明吸附过程通过三个步骤进行。此外,热力学数据反映出Mb对UIO-66 / MIL-101(Fe)-Gocooh复合材料的吸附是吸热和自发过程,吸附涉及物理化和化学吸附相互作用。由制造的UIO-66 / MIL-101(Fe)-gocooh复合材料表现出良好的可重用性,可被认为是具有高效率的含染料的工业污水的有希望的可再现吸附剂。

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