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Galvanic impacts of partial lead service line replacement on lead leaching into drinking water

机译:部分领先服务线更换对饮用水铅浸出的电流影响

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Due to jurisdiction issues, partial lead service line replacement (and not full) is widely implemented in the United States (US), in order to alleviate lead-in-water problems. A portion of the lead service line is replaced with copper, and the dissimilar pipe materials are then connected to restore drinking water service. This practice creates an electrochemical or galvanic cell, which can accelerate corrosion of the lead pipe by galvanic action. The adverse effects of such connections in the context of lead leaching were verified in experiments of simulated lead service line replacement. Galvanic connections between lead pipe and copper pipe increased lead release, compared to lead pipe alone. The extent of galvanic corrosion was dependent on drinking water quality, and specifically on the Chloride to Sulfate Mass Ratio (CSMR) of the water. Higher galvanic currents between lead and copper were measured when the CSAAR was high, mechanistically explaining the trends in lead release. Consideration of galvanic corrosion long-term impacts after partial lead service line replacements is deemed important, on the basis of the results presented herein.
机译:由于管辖权问题,部分领导服务线更换(并不完整)在美国(美国)广泛实施,以减轻水上存在的问题。将一部分引线服务线用铜代替,然后连接不同的管材以恢复饮用水服务。这种做法产生了一种电化学或电镀电池,可以通过电常规作用加速引线管的腐蚀。在模拟铅服务线更换的实验中验证了这种连接在铅浸出背景下的不利影响。铅管和铜管之间的电流连接增加了引线释放,与单独的铅管相比。电抗腐蚀程度依赖于饮用水质量,特别是氯化物对水的硫酸盐质量比(CSMR)。当CSAAR高,机械地解释铅释放的趋势时,测量铅和铜之间的铅和铜之间的高电流。基于本文所呈现的结果,局部铅服务线替换后的电流腐蚀长期影响的考虑因素被认为是重要的。

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