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首页> 外文期刊>The Science of the Total Environment >Sustainable synthesis and remarkable adsorption capacity of MOF/graphene oxide and MOF/CNT based hybrid nanocomposites for the removal of Bisphenol A from water
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Sustainable synthesis and remarkable adsorption capacity of MOF/graphene oxide and MOF/CNT based hybrid nanocomposites for the removal of Bisphenol A from water

机译:MOF /石墨烯氧化物和基于MOF / CNT的杂化纳米复合材料的可持续合成和显着的吸附能力,用于从水中除去双酚A.

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摘要

A series of novel absorbents based on Cu-BDC MOFs decorated over graphene oxide (GrO) and carbon nanotubes (CNTs) hybrid nanocomposites, namely Cu-BDC@GrO and Cu-BDC@CNT, are synthesized via a facile and one-pot green solvothermal method for water remediation. The nanocomposites were characterized by XRD, TEM, SEM, EDS, Raman, FTIR, TGA, XPS, Zetasizer and ICP-OES instruments. XRD results confirmed the high crystalline structure of the synthesized hybrid nanocomposites. Morphological analysis by SEM and TEM verified the successful decoration of nano-sized Cu-BDC MOFs over GrO and CNT platforms; whereas, EDS and XPS analysis confirmed the presence of all components in the hybrid nanocomposites. Bisphenol A was used in this study as a model organic pollutant that is sometimes present in the industrial wastewater to test the adsorption capacity of the prepared hybrid nanomaterials toward their removal from water. The hybrid nanomaterials showed remarkable adsorption capacity of 182.2 and 164.1 mg/g toward the removal of BPA, which was several times higher than that of 60.2 mg/g for Cu-BDC MOF itself. The Langmuir, Freundlich, Temkin and D-R isotherm models were applied to analyze the experimental data and the results revealed that the Freundlich model describes the experimental data best. A kinetic study was carried out and it showed that the prepared nanomaterials could remove maximum amount of BPA from water in 30 min. The pseudo-first order, pseudo-second order and intra-particle diffusion models were applied to evaluate the kinetic data and the results suggested that the kinetics data could be well fitted to the pseudo-second order kinetic model. Additionally, the BAP adsorption process onto the hybrid nanocomposites was spontaneous and exothermic. The pi-pi interactions between the BPA and hybrid nanomaterials played a vital role during the BPA adsorption process. The higher adsorption capacity and water stability makes them a good candidate for water remediation applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:基于石墨烯(GA)和碳纳米管(CNT)杂化纳米复合材料,即Cu-BDC @ GRO和Cu-BDC-CNT装饰的Cu-BDC MOF的一系列新型吸收剂由容易和一锅绿色合成含水补救方法。纳米复合材料的特征在于XRD,TEM,SEM,EDS,拉曼,FTIR,TGA,XPS,Zetasizer和ICP-OES仪器。 XRD结果证实了合成杂化纳米复合材料的高结晶结构。 SEM和TEM的形态学分析验证了GRO和CNT平台的纳米CU-BDC MOF的成功装饰;然而,EDS和XPS分析证实了杂化纳米复合材料中的所有组分的存在。本研究中使用双酚A作为模型有机污染物,有时存在于工业废水中,以测试制备的杂化纳米材料的吸附能力朝向水中的除去。杂交纳米材料显示出令人瞩目的吸附容量为182.2和164.1mg / g的去除BPA,比Cu-BDC MOF本身的60.2mg / g高几倍。应用Langmuir,Freundlich,Temkin和D-R等温模型分析了实验数据,结果表明,Freundlich模型描述了最佳实验数据。进行了动力学研究,并显示制备的纳米材料可以在30分钟内从水中除去最大量的BPA。应用伪第一顺序,伪二次阶数和粒子逐渐扩散模型来评估动力学数据,结果表明动力学数据可以充分适用于伪二次阶动力学模型。另外,杂交纳米复合材料上的壳体吸附过程自发和放热。 BPA和杂交纳米材料之间的PI-PI相互作用在BPA吸附过程中发挥了至关重要的作用。吸附容量和水稳定性较高使其成为水处理应用的良好候选者。 (c)2019 Elsevier B.v.保留所有权利。

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