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Corrosion Study of Cast Iron Pipes in Water Distribution Systems by Impedance. Application to Chlorine Consumption

机译:供水系统中铸铁管道的阻抗腐蚀研究。氯消费的应用

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Among the various causes of chlorine consumption in potable water distribution networks, corrosion has not been so far seriously considered. This work focused on the corrosion study of cast iron, as a representative material of those networks, by both electrochemical methods -steady-sate curves, corrosion potential and ac impedance data- and classical photographs observations in the absence and in the presence of chlorine. A process model based on the de Levie theory is used to extract from the experimental impedance data, the value of the charge transfer resistance corresponding to the anodic reaction and by this way the corrosion rate. From impedance and photographs, a structure of the different corrosion layers has been proposed. The general conclusion is that chlorine is not directly consumed electrochemically at the metal though it is more easily reducible than oxygen. Thus, the total consumption of chlorine, induced by the corrosion of cast iron pipes, amounts to the chemical reduction due to ferrous ions released by the metal dissolution. Moreover the rate of chlorine decay is exactly obtained from the corrosion current density.
机译:在饮用水分配网络中消耗氯气的各种原因中,迄今为止尚未认真考虑腐蚀。这项工作的重点是通过电化学方法-稳态曲线,腐蚀电位和交流阻抗数据-以及在无氯和有氯的情况下的经典照片观察,来研究作为这些网络代表材料的铸铁的腐蚀。使用基于de Levie理论的过程模型从实验阻抗数据中提取与阳极反应相对应的电荷转移电阻值,并以此方式得出腐蚀速率。根据阻抗和照片,已经提出了不同腐蚀层的结构。总体结论是,尽管氯比氧气更容易还原,但氯并未直接在金属上被电化学消耗。因此,由铸铁管腐蚀引起的总氯消耗量等于由于金属溶解释放的亚铁离子而导致的化学还原。而且,氯的腐蚀速率是从腐蚀电流密度中精确得出的。

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