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对全口径和部分更换收获的铅服务管中铅释放的长期处理影响的研究。

Study of the long-term impacts of treatments on lead release from full and partially replaced harvested lead service lines.

机构信息

NSERC Industrial Chair on Drinking Water, Department of Civil, Mining and Geological Engineering, Polytechnique Montréal, Montréal, QC, Canada.

NSERC Industrial Chair on Drinking Water, Department of Civil, Mining and Geological Engineering, Polytechnique Montréal, Montréal, QC, Canada.

出版信息

Water Res. 2019 Feb 1;149:566-577. doi: 10.1016/j.watres.2018.11.037. Epub 2018 Nov 26.

Abstract

Long-term (155 weeks) Pb concentrations, following partial lead service lines replacements (PLSLR), were measured in a flow through pilot made of harvested lead service lines (LSL) from the distribution system of the City of Montreal. The present study also investigates how release of Pb from full and partial LSLs is influenced by: pipe diameter, decrease in chloride-to-sulfate mass ratio (CSMR) from 0.9 to 0.3, addition of orthophosphate (1 mg P/L), and increase in pH to 8.3. Pb concentrations were measured after 16 h of stagnation and under flow conditions. In this study, Pb concentrations did not decrease, in the long term, after partial LSL replacement. Moreover, the most effective corrosion control treatment in full LSLs was the addition of orthoP. In contrast, the decrease of the CSMR best reduced lead release from partial LSLs. The impact of pipe configuration therefore influenced the effectiveness of corrosion control treatments. It is noteworthy that the increase in Pb concentrations following PLSLR were attributed to particulate Pb release from the galvanic section of the pipe. The occurrence of galvanic corrosion, caused by the connection between Pb and copper pipes, adds a new source of Pb in the partial LSL. At least, this new source of lead has to be offset by the removal of a long enough section of LSL during PLSLR. Full LSL replacements may be warranted to minimize the exposure of consumers to elevated Pb levels caused by galvanic corrosion in LSLs.

摘要

长期(155 周)后,部分铅服务线更换(PLSLR)后,在一个由蒙特利尔市分配系统中收获的铅服务线(LSL)制成的流动式试验中测量 Pb 浓度。本研究还调查了从全尺寸和部分 LSL 释放 Pb 如何受到以下因素的影响:管道直径、氯/硫酸盐质量比(CSMR)从 0.9 降至 0.3、添加正磷酸盐(1mgP/L)以及 pH 值增加到 8.3。在停滞 16 小时和流动条件下测量 Pb 浓度。在这项研究中,部分 LSL 更换后,Pb 浓度并没有长期降低。此外,在全尺寸 LSL 中最有效的腐蚀控制处理是添加正磷。相比之下,CSMR 的降低最能降低部分 LSL 中的 Pb 释放。因此,管道配置的影响会影响腐蚀控制处理的效果。值得注意的是,PLSLR 后 Pb 浓度的增加归因于管道的电偶段中颗粒态 Pb 的释放。由于 Pb 和铜管之间的连接而发生的电偶腐蚀,在部分 LSL 中增加了 Pb 的新来源。至少,在 PLSLR 期间,必须去除足够长的 LSL 段,以抵消这种新的 Pb 来源。为了尽量减少由于 LSL 中的电偶腐蚀而导致消费者接触到升高的 Pb 水平,可能需要更换全尺寸 LSL。

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