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Galvanic Corrosion of Lead Pipe after Partial Lead Line Replacements

机译:更换部分引线后引线管的电化腐蚀

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Partial replacement of lead pipe in the U.S. results in a galvanic connection of lead and copper pipe. To examine the galvanic effect between the lead pipe and copper pipe, a series of experiments was conducted with different water types (different chlo-ride-to-sulfate mass ratios (CSMR) and disinfectant doses) under stagnant conditions. During the 11-week experimental period, high galvanic currents between the lead and copper pipes were observed and were influenced by the CSMR of the drinking water. That is, when the CSMR was higher, the corrosion rate of lead pipe was increased. The results also indicated that there was a linear relationship between the galvanic current and the pH at the surface of the lead and copper pipe junction, which is consistent with the Lewis acidity of Pb~2+ that was released at the anode. There was also a linear trend between total lead in the water and the galvanic current. Both the soluble and total lead in the water was dramatically increased when the lead pipe was connected to copper pipe. These results indicate that partial lead line replacements can cause galvanic corrosion of lead pipe and subsequently increase lead contamination of drinking water.
机译:在美国部分替换铅管会导致铅和铜管的电流连接。为了检查铅管和铜管之间的电流效应,在停滞的条件下,使用不同的水类型(氯离子与硫酸盐的质量比(CSMR)和消毒剂量不同)进行了一系列实验。在为期11周的实验期间,观察到铅管和铜管之间的高电流,并且受到饮用水CSMR的影响。即,当CSMR较高时,铅管的腐蚀速率增加。结果还表明,电流与铅和铜管接合处表面的pH之间存在线性关系,这与阳极释放的Pb〜2 +的路易斯酸度一致。水中的总铅和电流之间也存在线性趋势。当铅管连接到铜管时,水中的可溶性铅和总铅都大大增加了。这些结果表明,部分铅管线的更换会引起铅管的电腐蚀,从而增加饮用水中铅的污染。

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