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Evaluation of the Electrochemical Activity and Stability of Ti/IrO2-Ta2O5 Electrode as Anode in the Cathodic Protection Systems via Impressed Current

机译:通过压印电流评估Ti / Iro2-Ta2O5电极的电化学活性和稳定性,作为阴极保护系统中的阳极

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Ti/IrO2-Ta2O5 electrode with 70% IrO2 (in mole ratio) was synthesized by thermal decomposition of iridium and tantalum chloride salts at 450 degrees C. Stability of the electrode as dimensionally stable anode in impressed current cathodic protection systems was investigated in a mixture of 1 mol L-1 sodium sulfate and 1 mol L-1 sulfuric acid at 30 degrees C under 1.5 A cm(-2) constant current density. For this purpose, the potential of work electrode (anode) was recorded against time during the stability test. The changes in electrochemical properties of the electrode were fallowed using electrochemical impedance spectroscopy and cyclic voltammetry at different times of stability test. In addition, Tafel polarization test was done at the beginning of stability test in order to studying the mechanism of oxygen evolution reaction at the surface of the electrode. Morphological analysis was done by means of field emission scanning electron microscope and Energy-dispersive X-ray spectrometer. The results indicated that the durability of the electrode at concentrated acidic sulfate medium is about 88 hours and the oxygen evolution reaction proceeds through the redox exchanging of different iridium oxide species.
机译:用70%的铱和钽氯化钽盐的热分解合成具有70%IRO2(以摩尔比以450℃的热分解合成。在1.5Acm(-2)℃恒定电流密度下,1mol 1-1硫酸钠和1摩尔1 -1硫酸下的1mol L-1硫酸。为此目的,在稳定性测试期间,记录工作电极(阳极)的电位。使用电化学阻抗光谱和循环伏安法在稳定性试验的不同次数下进行电化学性质的变化。此外,在稳定性测试开始时进行Tafel偏振试验,以便在电极表面上研究氧进化反应的机制。通过现场发射扫描电子显微镜和能量分散X射线光谱仪进行形态学分析。结果表明,浓酸性硫酸盐介质下电极的耐久性约为88小时,氧气进化反应通过氧化还原交换不同的氧化铱。

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