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Electrochemical oxidation of cinnamic acid with Mo modified PbO2 electrode: Electrode characterization, kinetics and degradation pathway

机译:Mo修饰的PbO2电极对肉桂酸的电化学氧化:电极表征,动力学和降解途径

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摘要

A novel molybdenum modified PbO2 electrode was successfully prepared with the method of electrode position. The SEM and XRD were employed to study the surface morphology of electrodes, which indicated that the modified PbO2 electrode had a larger effective area and more compact film. Electrochemical degradation of cinnamic acid (CA) in aqueous solution with Mo-PbO2 electrode and PbO2 electrode were investigated. The results showed that the Mo-PbO2 electrode had a better effect of CA removal. The operational parameters influencing the electrochemical degradation of CA with Mo-PbO2 electrode were optimized and the results revealed that the electrochemical degradation of CA followed the pseudo-first-order kinetics and the optimal removal of CA and COD were 85.51% and 25.79% after 120 min on condition of the electrolyte concentration, initial concentration of CA, current density and initial value of pH were 0.1 mol/L, 300 mg/L, 10 mA/cm(2) and 3.4, respectively. The degradation mechanism of CA in electrochemical oxidation with Mo-PbO2 electrode was analyzed and the main degradation pathway of CA was proposed based on the intermediates identified by IC and GC-MS. (C) 2015 Published by Elsevier B.V.
机译:用电极位置法成功地制备了一种新型的钼修饰的PbO2电极。用SEM和XRD对电极的表面形貌进行了研究,表明改性的PbO2电极具有更大的有效面积和更致密的膜。研究了Mo-PbO2电极和PbO2电极在水溶液中对肉桂酸(CA)的电化学降解。结果表明,Mo-PbO2电极具有较好的去除CA的效果。优化了影响Mo-PbO2电极对CA电化学降解的操作参数,结果表明,CA的电化学降解遵循拟一级动力学,在120℃后,CA和COD的最佳去除率分别为85.51%和25.79%。在电解质浓度的条件下,CA的初始浓度,电流密度和pH的初始值的最小值分别为0.1 mol / L,300 mg / L,10 mA / cm(2)和3.4。分析了CA在Mo-PbO2电极电化学氧化中的降解机理,并基于IC和GC-MS鉴定的中间体,提出了CA的主要降解途径。 (C)2015由Elsevier B.V.发布

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