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Impact of Water Chemistry on Lead Carbonate Dissolution in Drinking Water Distribution Systems

机译:水化学对饮用水分配系统中碳酸铅溶解的影响

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Elemental lead is a known toxic metal that can pose threats to human health and can be found in a variety of sources including drinking water at very low level concentrations [i.e. ug/L range). Des-tabilization of the corrosion scale at the inner layer of pipeline is the major source of lead in drinking water. Chemical properties of the water passing through the distribution system such as pH, alkalinity, chlorine content, oxidation reduction potential (ORP) and natural organic matters will affect the formation and/or destabilization of the corrosion scale. This research examines the impact of pH values (7.0 - 9.5), temperatures (5℃ vs 20℃) and alkalinity levels (moderate vs low), in the presence of chlorine, on dissolution of hydrocerussite and cerussite in drinking water by various sets of batch dissolution experiments. The results showed dissolution of cerussite and hydrocerussite was not impacted significantly by pH ranging 7.0 - 9.5. In addition, and somewhat surprisingly, cold temperature (5℃) and moderate alkalinity showed a great influence on decreasing the solubility of lead species.
机译:元素铅是一种已知的有毒金属,可能对人类健康构成威胁,并且可以在多种来源中发现,包括浓度很低的饮用水[即ug / L范围)。管道内层腐蚀垢的去稳定化是饮用水中铅的主要来源。通过分配系统的水的化学性质,例如pH值,碱度,氯含量,氧化还原电位(ORP)和天然有机物,将影响腐蚀垢的形成和/或失稳。本研究探讨了在氯存在下,pH值(7.0-9.5),温度(5℃vs 20℃)和碱度水平(中度vs低)对饮用水中水铜铁矿和铜铁矿溶解的不同影响。分批溶解实验。结果表明,陶土和水陶土的溶解度不受pH值7.0-9.5的显着影响。此外,令人惊讶的是,低温(5℃)和适度的碱度对降低铅的溶解度有很大的影响。

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