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首页> 外文期刊>Electrochemistry communications >Microwave-assisted sol-gel synthesis of an Au-TiO2 photoanode for the advanced oxidation of paracetamol as model pharmaceutical pollutant
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Microwave-assisted sol-gel synthesis of an Au-TiO2 photoanode for the advanced oxidation of paracetamol as model pharmaceutical pollutant

机译:微波辅助溶胶 - 凝胶合成Au-TiO2 PhotoNode,用于扑热息痛的高级氧化作为模型药物污染物

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摘要

An Au-TiO2 photoanode on carbon cloth has been synthesized by microwave-assisted sol-gel method to treat paracetamol solutions at pH 3.0 by photocatalysis (PC), electro-oxidation (EO), photoelectrocatalysis with UVA light (PEC), solar PEC (SPEC) and hybrid methods with photoelectro-Fenton under UVA (PEC + PEF) and sunlight (SPEC + SPEF) irradiation at constant anodic potential (E-an). The photoanode has been characterized by XRD, Raman spectroscopy, HRTEM and SEM-EDS. The counter electrode was a 316L stainless steel plate, which was replaced by an air-diffusion electrode for H2O2 generation in hybrid treatments. The most powerful process was SPEC + SPEF, yielding total paracetamol removal in 30 min and 24% mineralization after 180 min, at E-an = +0.82 V. The paracetamol decay followed a pseudo-first-order kinetics in PEC. A lower rate constant was obtained upon increase of pharmaceutical concentration, showing good linear fit using a Langmuir-Hinshelwood model.
机译:通过微波辅助溶胶 - 凝胶法合成了碳布的Au-TiO2光电态,以通过光催化(PC),电氧化(EO),用UVA光(PEC),太阳能PEC( 在恒定阳极电位下的UVA(PEC + PEF)和阳光(SPED + SPEF)照射下的光电电筋和混合方法和混合方法。 PhotoNode的特点是XRD,拉曼光谱,HRTEM和SEM-EDS。 对电极是316L不锈钢板,其被混合处理中的用于H2O2产生的空气扩散电极代替。 最强大的方法是Spec + Spef,在180分钟后,在e-An = +0.82V下,在& 30分钟内除去总扑热酰胺醇。帕拉基莫醇衰减在PEC中进行伪第一阶动力学。 在增加药物浓度时获得较低的速率常数,呈现出使用Langmuir-Hinshelwood模型的良好线性配合。

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