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An ac impedance study of the anodic dissolution of iron in sulfuric acid solutions containing hydrogen sulfide

机译:交流阻抗研究铁在含硫化氢的硫酸溶液中的阳极溶解

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摘要

The anodic dissolution of iron in solfuric acid solutions with H_2S was investigated by means of ac impedance and steady-state polarization curves. The results show that H_2S can accelerate markedly both the anodic dissolution and cathodic hydrogen evolution in most cases, but it can also exhibit a strong inhibiting effect upon iron dissolution under certain special conditions. Usually, the Nyquist diagrams measured at lower positive potentials consist of two overlapping capacitive loops, one of which is a characteristic capacitive loop caused by the adsorption of H_2S on the electrode surface. At higher positive potentials, the original characteristic low frequency capacitive loop disappears, and the complex plane impedance diagrams for the iron electrode consist of an inductive loop and a capacitive loop. Based on the impedance behaviour of iron in the presence of H_2S, two reaction models were proposed to interpret its dissolution mechanism in acidic solutions with H_2S.
机译:通过交流阻抗和稳态极化曲线研究了铁在含H_2S的溶剂酸溶液中的阳极溶解。结果表明,在大多数情况下,H_2S可以显着促进阳极溶解和阴极氢的释放,但是在某些特殊条件下,H_2S对铁的溶解也具有很强的抑制作用。通常,在较低的正电势下测得的奈奎斯特图由两个重叠的电容回路组成,其中之一是由H_2S在电极表面的吸附引起的特征电容回路。在较高的正电势下,原始的特征性低频电容性回路消失,铁电极的复平面阻抗图由电感性回路和电容性回路组成。基于铁在H_2S存在下的阻抗行为,提出了两种反应模型来解释铁在H_2S酸性溶液中的溶解机理。

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