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Electrochemical Study of Iron Deposit in Acid Media for Its Recovery from Spent Pickling Baths Regeneration

机译:酸介质中铁沉积物的电化学研究酸洗浴再生恢复

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Electrochemical technologies for the regeneration of spent pickling baths are feasible since they allow simultaneous metal deposition and acid production in the same process unit. In this work, the effect of Fe~(2+) concentrations on the electrochemical iron deposition from model spent pickling baths is analyzed by voltammetry switching potentials, Tafel plots and spectrum-electrochemistry studies. The analysis showed that the electrodeposition rate and potential decreased as Fe~(2+) concentration increased. Moreover, at higher Fe~(2+) concentrations, a decrease on the hydrogen evolution reaction was observed. Moreover, chemical Fe dissolution is present at all concentrations studied, due to the high corrosion rate of iron at low pH of the model bath. Thermodynamic diagrams and electrochemical tests coupled to UV-Vis analysis demonstrated the presence of iron sulfate complexes suggesting that iron deposit is conducted by an inner sphere layer mechanism.
机译:用于酸洗浴的再生的电化学技术是可行的,因为它们允许在同一过程单元中同时进行金属沉积和酸产生。 在这项工作中,通过伏安法切换电位,Tafetry切换和谱电化学研究分析了Fe〜(2+)浓度对模型酸洗浴中电化学铁沉积的影响。 分析表明,随着Fe〜(2+)浓度的增加,电沉积速率和电位降低。 此外,在更高的Fe〜(2+)浓度下,观察到氢进化反应的降低。 此外,由于在模型浴的低pH下的铁的高腐蚀速率,所研究的所有浓度存在化学Fe溶解。 与UV-VIS分析相结合的热力学图和电化学测试证明存在硫酸铁复合物的存在,表明铁沉积通过内球层机构进行。

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