Typical synthesis of an iron-modified Laponite @diatomite composite for photo-Fenton degradation of methyl orange dyes

铁质 催化作用 吸附 甲基橙 激进的 化学工程 复合数 阳离子聚合 降级(电信) 化学 材料科学 光催化 高分子化学 复合材料 有机化学 工程类 电信 计算机科学
作者
Nan Dai,Shuang Yi,Xiaotian Zhang,Li Feng,Hui Ding,Dan Song,Xiaoying Li,Jinsong Rao,Yuxin Zhang
出处
期刊:Applied Surface Science [Elsevier BV]
卷期号:607: 154886-154886 被引量:9
标识
DOI:10.1016/j.apsusc.2022.154886
摘要

A typical adsorption modification method was employed to load ferrous ions on the Laponite@diatomite composite with 3D-2D morphology for photo-Fenton. Further, various characterization analyses were performed on the microscopic morphology and structure of the modified Laponite@diatomite. The removal ability of ferrous ion-modified Laponite@diatomite (Fe-La@D) photo-Fenton-oxidative cationic dyes under different raw material concentrations, H2O2 content, MO concentration and light environment was discussed. Its reusability and photo-Fenton mechanism were further investigated. The study found that the ferrous ion-modified Laponite @diatomite is a catalyst with good photo-Fenton performance, and the MO degradation rate in 240 min can reach 99 % under the optimal reaction conditions. After modification, ferrous ions were successfully intercalated between the Laponite layers, and the forbidden band width of the material was reduced. And with the increase of catalyst dosage and H2O2 content, the photo-Fenton reaction rate also increases. While the initial concentration of MO increases, the reaction rate decreases accordingly. Cycling tests demonstrate the structural stability and reusability of the catalyst. EPR spectra showed the generation of hydroxyl radicals, which are important substances in the degradation process. This work provides an idea for the synthesis of economical and ideal photo-Fenton catalysts, which has broad application prospects.

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