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Zr-Doped Ir as an Effective Anode for Refractory SMX Degradation

机译:Zr掺杂的IR作为难治性SMX降解的有效阳极

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Electrochemical oxidation has been considered as an efficient method to degrade pharmaceuticals and personal care products. Maintaining low power consumption while increasing the number of oxidation intermediates is deserving of exploring. Herein, Ti/SnO_(2)–Sb/Zr_(0.3)Ir_(0.7)O_(2) was prepared by Zr doped into IrO_(2) and used for Sulfamethoxazole (SMX) degradation. The addition of Zr significantly increased the electrochemically active area and facilitated the catalyst to degrade SMX dramatically at a lower overpotential. The extremely outstanding lifetime of catalysts can reach 800 h during the accelerated life test, which showed excellent stability and developmental prospects. The overpotential at 10 mA·cm~(–2) is about 329 mV, indicating that this electrode has a high oxygen evolution reaction activity. Furthermore, the electrical efficiency per log order for the electrode is only 8.50 kW h m~(–3) at 4 V. Our research provides new anode electrochemical catalysts for the degradation of organic pollutants.
机译:电化学氧化被认为是降低药物和个人护理产品的有效方法。保持低功耗,同时增加氧化中间体的数量值得探索。在此,通过掺杂进入IRO_(2)的Zr制备Ti / SnO_(2)-SB / Zr_(0.3)Ir_(0.7)O_(2)并用于磺胺甲恶唑(SMX)降解。 Zr的添加显着增加了电化学活性区域,并促进了催化剂在较低的过电位下显着降解SMX。在加速寿命试验期间,催化剂的极其优异的寿命可以达到800小时,这表现出出色的稳定性和发育前景。 10 mA·cm〜(-2)的过电位约为329mV,表明该电极具有高氧逸出反应活性。此外,电极的每个日志顺序的电效率仅为4 V.5.50 kW H m〜(3)。我们的研究为有机污染物的降解提供了新的阳极电化学催化剂。

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