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多壁碳纳米管负载磁性纳米复合材料用于超声-Fenton 法去除马克西龙蓝 5G。

Magnetic nanocomposites decorated on multiwalled carbon nanotube for removal of Maxilon Blue 5G using the sono-Fenton method.

机构信息

Department of Environmental, Faculty of Engineering, University of Igdir, Igdir, Turkey.

Sen Research Group, Department of Biochemistry, Faculty of Arts and Science, Dumlupınar University, Evliya Çelebi Campus, 43100, Kütahya, Turkey.

出版信息

Sci Rep. 2019 Jul 26;9(1):10850. doi: 10.1038/s41598-019-47393-0.

Abstract

Herein, multiwalled carbon nanotube-based FeO nano-adsorbents (FeO@MWCNT) were synthesized by ultrasonic reduction method. The synthesized nano-adsorbent (FeO@MWCNT) exhibited efficient sonocatalytic activity to remove Maxilon Blue 5G, a textile dye, and present in a cationic form, in aqueous solution under ultrasonic irradiation. The magnetic nano-adsorbent particles were characterized by high-resolution transmission electron microscopy (HR-TEM), transmission electron microscopy (TEM), Raman spectroscopy and X-ray diffraction (XRD). Some important parameters such as nano-adsorbent dosage, solution pH, initial dye and HO concentration, reaction time, ultrasonic power and temperature were tested to determine the optimum conditions for the elimination of Maxilon Blue 5G dye. The reusability results showed that FeO@MWCNT nano-adsorbent has a decrease of about 32.15% in the removal efficiency of Maxilon Blue 5G under ultrasonic irradiation after six times reuse. Additionally, in order to reveal the sufficient kinetic explanation, various experiments were performed at different temperatures and testing three kinetic models like the pseudo-first-order, pseudo-second-order and intraparticle diffusion for removal adsorption process of Maxilon Blue 5G using FeO@MWCNT nano-adsorbent. The experimental kinetic results revealed that the adsorption process of Maxilon Blue 5G in the aquatic mediums using sono-Fenton method was found to be compatible with the intraparticle diffusion. Using kinetic models and studies, some activation parameters like enthalpy, entropy and Gibbs free energy for the adsorption process were calculated. The activation parameters indicated that FeO@MWCNT nano-adsorbent could be used as an effective adsorbent for the removal of Maxilon Blue 5G as a textile dye and the adsorption process of Maxilon Blue 5G with FeO@MWCNT nano-adsorbent is spontaneous.

摘要

在此,通过超声还原法合成了基于多壁碳纳米管的 FeO 纳米吸附剂 (FeO@MWCNT)。所合成的纳米吸附剂 (FeO@MWCNT) 在超声辐射下表现出高效的声催化活性,可去除阳离子形式存在于水溶液中的纺织染料 Maxilon Blue 5G。磁性纳米吸附剂颗粒通过高分辨率透射电子显微镜 (HR-TEM)、透射电子显微镜 (TEM)、拉曼光谱和 X 射线衍射 (XRD) 进行了表征。测试了纳米吸附剂用量、溶液 pH 值、初始染料和 HO 浓度、反应时间、超声功率和温度等一些重要参数,以确定去除 Maxilon Blue 5G 染料的最佳条件。重复使用结果表明,FeO@MWCNT 纳米吸附剂在超声辐射下重复使用六次后,对 Maxilon Blue 5G 的去除效率下降约 32.15%。此外,为了揭示充分的动力学解释,在不同温度下进行了各种实验,并测试了三种动力学模型,如准一级、准二级和内扩散,用于使用 FeO@MWCNT 纳米吸附剂去除 Maxilon Blue 5G 的吸附过程。实验动力学结果表明,在水介质中使用声芬顿法去除 Maxilon Blue 5G 的吸附过程与内扩散相兼容。通过使用动力学模型和研究,计算了吸附过程的一些活化参数,如焓、熵和吉布斯自由能。活化参数表明,FeO@MWCNT 纳米吸附剂可用作去除 Maxilon Blue 5G 作为纺织染料的有效吸附剂,并且 FeO@MWCNT 纳米吸附剂对 Maxilon Blue 5G 的吸附过程是自发的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c13/6659670/71c977a54d24/41598_2019_47393_Fig1_HTML.jpg

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