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铁和铝混凝剂金属残余物的作用以及饮用水管材中铅的释放

Role of iron and aluminum coagulant metal residuals and lead release from drinking water pipe materials.

作者信息

Knowles Alisha D, Nguyen Caroline K, Edwards Marc A, Stoddart Amina, McIlwain Brad, Gagnon Graham A

机构信息

a Department of Civil & Resource Engineering , Dalhousie University , Halifax , Nova Scotia , Canada.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2015;50(4):414-23. doi: 10.1080/10934529.2015.987550.

Abstract

Bench-scale experiments investigated the role of iron and aluminum residuals in lead release in a low alkalinity and high (> 0.5) chloride-to-sulfate mass ratio (CSMR) in water. Lead leaching was examined for two lead-bearing plumbing materials, including harvested lead pipe and new lead: tin solder, after exposure to water with simulated aluminum sulfate, polyaluminum chloride and ferric sulfate coagulation treatments with 1-25-μM levels of iron or aluminum residuals in the water. The release of lead from systems with harvested lead pipe was highly correlated with levels of residual aluminum or iron present in samples (R(2) = 0.66-0.88), consistent with sorption of lead onto the aluminum and iron hydroxides during stagnation. The results indicate that aluminum and iron coagulant residuals, at levels complying with recommended guidelines, can sometimes play a significant role in lead mobilization from premise plumbing.

摘要

实验室规模的实验研究了在低碱度且高(>0.5)的氯化物与硫酸盐质量比(CSMR)的水中,铁和铝残留对铅释放的作用。对两种含铅管道材料进行了铅浸出检测,包括采集的铅管和新型铅锡焊料,使其暴露于经模拟硫酸铝、聚合氯化铝和硫酸铁混凝处理的水中,水中铁或铝残留水平为1 - 25 μM。采集的铅管系统中铅的释放与样品中残留铝或铁的水平高度相关(R² = 0.66 - 0.88),这与停滞期间铅吸附到氢氧化铝和氢氧化铁上的情况一致。结果表明,在符合推荐指南水平的情况下,铝和铁混凝剂残留有时会在建筑物内部管道的铅迁移中发挥重要作用。

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