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使用 Pluronic F127 辅助溶胶-凝胶法原位制备 TiO/f-MWCNT 催化剂用于声催化降解亚甲基蓝。

In situ preparation of TiO/f-MWCNT catalyst using Pluronic F127 assisted sol-gel process for sonocatalytic degradation of methylene blue.

机构信息

Department of Chemistry, Education Faculty, Yuzuncu Yil University, Van, Turkey.

Department of Chemistry, Education Faculty, Yuzuncu Yil University, Van, Turkey; Department of Organic Agriculture Management, Faculty of Applied Sciences, Igdir University, TR-76000, Igdir, Turkey.

出版信息

Environ Res. 2023 Aug 15;231(Pt 1):115972. doi: 10.1016/j.envres.2023.115972. Epub 2023 May 1.

Abstract

In this study, titanium dioxide- Pluronics @F127/functionalized -multi walled carbon nanotubes (TiO-F127f-/MWCNT) nanocatalysts were prepared, characterized, and used in methylene blue (MB) degradation under ultrasonic conditions. The characterization studies were performed using TEM, SEM, and XRD analyses to reveal the morphological and chemical properties of TiO-F127/MWCNT nanocatalysts. To detect the optimum parameters for MB degradation using TiO-F127/f-MWCNT nanocatalysts, several experimental parameters were conducted at various conditions such as different temperatures, pH, catalyst amount, hydrogen peroxide (HO) concentration, and various reaction contents. Transmission electron microscopy (TEM) analyses showed that TiO-F127/f-MWCNT nanocatalysts consisted of a homogenous structure and have a 12.23 nm particle size. The crystalline particle size of TiO-F127/MWCNT nanocatalysts was found to be 13.31 nm. Scanning electron microscope (SEM) analyses revealed the surface structure of TiO-F127/f-MWCNT nanocatalysts turned to be modified after TiO loaded on MWCNT. Under the optimum conditions; pH: 4, MB concentration: 25 mg/L, HO concentration: 30 mol/L, reaction time: and catalyst dose: 24 mg/L, chemical oxygen demand (COD) removal efficiency reached a maximum of 92%. To detect the radical effectiveness, three scavenger solvents were tested. Reuse experiments revealed that TiO-F127/f-MWCNT nanocatalysts retained 84.2% catalytical activity after 5 cycles. Gas chromatography-mass spectrometry (GC-MS) was successfully used to identify the generated intermediates. Based on the experimental results, it has been suggested that •OH radicals are the main active species responsible for the degradation reaction in the presence of the TiO-F127/f-MWCNT nanocatalysts.

摘要

在这项研究中,制备了二氧化钛-普朗尼克 F127/功能化-多壁碳纳米管(TiO-F127f-/MWCNT)纳米催化剂,并在超声条件下用于亚甲基蓝(MB)的降解。通过 TEM、SEM 和 XRD 分析对 TiO-F127/MWCNT 纳米催化剂进行了表征,以揭示 TiO-F127/f-MWCNT 纳米催化剂的形态和化学性质。为了检测使用 TiO-F127/f-MWCNT 纳米催化剂降解 MB 的最佳参数,在不同条件下进行了几项实验参数,例如不同的温度、pH 值、催化剂用量、过氧化氢(HO)浓度和各种反应含量。透射电子显微镜(TEM)分析表明,TiO-F127/f-MWCNT 纳米催化剂由均一结构组成,粒径为 12.23nm。TiO-F127/MWCNT 纳米催化剂的结晶粒径被发现为 13.31nm。扫描电子显微镜(SEM)分析表明,TiO 负载在 MWCNT 上后,TiO-F127/f-MWCNT 纳米催化剂的表面结构发生了变化。在最佳条件下;pH:4,MB 浓度:25mg/L,HO 浓度:30mol/L,反应时间:催化剂剂量:24mg/L,化学需氧量(COD)去除效率最高达到 92%。为了检测自由基的有效性,测试了三种清除剂溶剂。重复使用实验表明,TiO-F127/f-MWCNT 纳米催化剂在 5 次循环后保留了 84.2%的催化活性。气相色谱-质谱联用(GC-MS)成功用于鉴定生成的中间产物。根据实验结果,建议•OH 自由基是在 TiO-F127/f-MWCNT 纳米催化剂存在下降解反应的主要活性物质。

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