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Efficient degradation of p-nitrophenol by electro-oxidation on Fe doped Ti/TiO2 nanotube/PbO2 anode

机译:Fe掺杂Ti / TiO2纳米管/ PbO2阳极上的电氧化有效降解对硝基苯酚

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摘要

A novel Fe doped PbO2 electrode with a high oxygen evolution potential (OEP) and excellent electrochemical oxidation performance was prepared based on Ti/TiO2 nanotube arrays (TNTs) for p-nitrophenol (p-NP) degradation. Characterized by scanning electron microscope (SEM), linear sweep voltammetry (LSV) and chronoamporometric experiments, the effect of Fe doping amount on the electrode activity was investigated. Fe doping on PbO2 electrode improved the electrode morphology, OEP, step current and thus the degradation of p-NP. The optimal Fe doped concentration was 0.02 M, and the electrode prepared under this condition possessed the highest OEP of 2.7 V and p-NP degradation performance. After 90 min treatment, the p-NP degradation efficiency reached 100% with similar energy consumption, and the reaction rate constant increased about 4.3 times compared with that of the unmodified one. This Fe doped Ti/TNTs/PbO2 anode has a more promising application potential in treatment of wastewater containing biorefractory organic pollutants.
机译:基于Ti / TiO2纳米管阵列(TNTs)制备了一种新型的掺Fe的PbO2电极,该电极具有高的析氧势(OEP)和优异的电化学氧化性能,可降解对硝基苯酚(p-NP)。通过扫描电子显微镜(SEM),线性扫描伏安法(LSV)和计时电流法实验,研究了Fe掺杂量对电极活性的影响。 Fe在PbO2电极上的掺杂改善了电极的形貌,OEP,阶跃电流,从而改善了p-NP的降解。 Fe的最佳掺杂浓度为0.02 M,在此条件下制备的电极具有2.7 V的最高OEP和p-NP降解性能。处理90分钟后,p-NP的降解效率达到100%,能量消耗相近,反应速率常数比未修饰的反应速率常数提高了约4.3倍。这种掺铁的Ti / TNTs / PbO2阳极在处理含生物难降解有机污染物的废水中具有更广阔的应用潜力。

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