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Photoelectrocatalytic water treatment systems: degradation, kinetics and intermediate products studies of sulfamethoxazole on a TiO2-exfoliated graphite electrode

机译:光电催化水处理系统:在TiO2剥离石墨电极上的磺胺甲氧唑的降解,动力学和中间产品研究

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摘要

Sulfamethoxazole is an antibacterial agent which is commonly prescribed for the treatment of infections in humans and animals. The detection of this drug in the aqueous environment has raised considerable health concerns. Herein, we report the photoelectrocatalytic degradation of sulfamethoxazole at a TiO2-exfoliated graphite (TiO2-EG) anode. The TiO2-EG nanocomposite, synthesised by sol-gel and microwave methods, was characterised by XRD, Raman and FTIR spectroscopies, SEM and TEM. The cyclic voltammograms of the fabricated electrodes were obtained in [Fe(CN)(6)](3-) redox probe. Concentration abatement of the antibiotic was monitored using a UV-vis spectrophotometer and the possible intermediates were investigated using LCMS. After 6 h of the photoelectrocatalytic process, almost 100% of the drug had been degraded and a 90% COD decay was achieved. The photoelectrocatalytic degradation of sulfamethoxazole entailed gamma-, beta-, delta- and epsilon-cleavages, hydroxylation and rings opening. The outcome of this study shows that the EG-TiO2 anode can be applied for the photoelectrocatalytic remediation of water contaminated by pharmaceuticals.
机译:磺胺甲氧唑是一种抗菌剂,通常规定用于治疗人类和动物的感染。在含水环境中检测该药物的检测提高了相当大的健康问题。在此,我们在TiO 2 - 剥离石墨(TiO 2-EG)阳极下报告磺胺甲恶唑的光电催化降解。通过溶胶 - 凝胶和微波方法合成的TiO 2-例如纳米复合材料,其特征在于XRD,拉曼和FTIR光谱,SEM和TEM。在[Fe(CN)(6)](3-)氧化还原探针中得到制造电极的循环伏安图。使用UV-Vis分光光度计监测抗生素的浓度削减,并使用LCMS研究可能的中间体。在光电催化过程中6小时后,几乎100%的药物已经降低,实现了90%的COD衰减。光电催化剂降解磺胺甲恶唑的可引起γ-,β,δ-和ε-切割,羟基化和环开口。该研究的结果表明,EG-TiO2阳极可以应用于药物污染的水的光电催化修复。

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