Rahim Pouran Shima, Bayrami Abolfazl, Shafeeyan Mohammad Saleh, Abdul Raman Abdul Aziz, Wan Daud Wan Mohd Ashri
Acta Chim Slov. 2018 Mar;65(1):166-171.
Oxidative treatment of a cationic dye solution, methylene blue, was investigated using magnetite nanoparticles and goethite in heterogeneous Fenton-like reaction, and ferrous ions in homogeneous Fenton-reaction. The aim was to compare the degradation efficiencies of the studied catalysts for decolorization of methylene blue solution as the model organic pollutant. Response surface methodology (RSM) was applied to determine the optimal operational conditions for magnetite/H2O2 and goethite/H2O2 systems. The [H2O2] of 0.2 M, catalyst dosage of 1 g/L, pH 9.0 and reaction time of 5h were chosen by RSM. The pH value of 3.0 was used in the case of Fe+2/H2O2 system. The experimental results showed that homogeneous Fenton oxidation system was the most effective system under both acidic and neutral conditions but decreased at pH value of 9.0 due to the decrease in available Fe2+ ions in the solution and generation of ferric hydroxide sludge. Fe3O4/H2O2 system represented better removal efficiency than FeO(OH)/H2O2 system that could be attributed to the presence of FeII cations in magnetite structure and its larger surface area.
采用磁铁矿纳米颗粒和针铁矿在类芬顿非均相反应中,以及亚铁离子在芬顿均相反应中,对阳离子染料溶液亚甲基蓝进行氧化处理。目的是比较所研究的催化剂对作为模型有机污染物的亚甲基蓝溶液脱色的降解效率。应用响应面法(RSM)来确定磁铁矿/H₂O₂和针铁矿/H₂O₂体系的最佳操作条件。通过RSM选择了0.2 M的[H₂O₂]、1 g/L的催化剂用量、pH 9.0和5小时的反应时间。在Fe²⁺/H₂O₂体系中使用pH值3.0。实验结果表明,均相芬顿氧化体系在酸性和中性条件下都是最有效的体系,但在pH值为9.0时效率降低,这是由于溶液中可用的Fe²⁺离子减少以及氢氧化铁污泥的生成。Fe₃O₄/H₂O₂体系比FeO(OH)/H₂O₂体系表现出更好的去除效率,这可归因于磁铁矿结构中存在FeII阳离子及其更大的表面积。