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Investigation of Anodic Behavior of Nickel in H2SO4?Solutions Using Galvanostatic Polarization Technique. I. Kinetics and Thermodynamic Approach

机译:H2SO4中镍阳极行为的研究。采用电镀极化偏振技术的溶液溶液。 I.动力学和热力学方法

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The electrochemical passivation behavior of Ni in H2SO4 solutions was studied by the galvanostaticanodic polarization method. The data of the polarization curves relied on the polarizing current, Iimposed,acid concentration, C, and the temperature, T. The polarized curve elucidated various characteristicregions confirming various oxidation processes. The 1st region is recognized by a rapid jump in the Nielectrode potential E (zone I), due to the decay of H2 over-voltage. A large discrete 1st potential arrest,a, coincides with the formation of Ni+ions, while the 2nd potential arrest, b, matches the electro-oxidationof Ni+ions to Ni2+ ions. The second increase in the potential, E (zone II), harmonizes the onset ofpassivity due to the countenance of Ni2O3. The duration time, τ, of the two arrests a and b decrease withincreasing the Iimposed, T, and the acid concentration, C. The thermodynamics activation parameters, Ea,?Ha, and ?Sa for the dissolution and passivation processes are deduced and discussed.
机译:通过Galvanostaticanodic偏振法研究了Ni在H2SO4溶液中的电化学钝化行为。偏振曲线的数据依赖于偏振电流,膜,酸浓度,C和温度T.偏振曲线阐明了确认各种氧化过程的各种特征。由于H2过电压的衰减,通过Nie电极电位E(区域I)的快速跳跃来识别第一区域。一个大的离散的第一潜在阻滞,a,与Ni +离子的形成一致,而第2次电位停滞B,则将Ni +离子的电氧化与Ni2 +离子匹配。由于Ni2O3的表现,e(II区II)的第二次增加,e(II区),协调起爆性。持续时间τ,τa和b的持续时间τ和b降低含量,t和酸浓度,c。推导出并讨论了热力学激活参数ea,αha和钝化过程的SA 。

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