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Evaluating the chemical stability in drinking water distribution system by corrosivity and precipitation potential

机译:通过腐蚀性和降水潜力评估饮用水分配系统中的化学稳定性

摘要

    Calcium carbonate equilibrium-based indices, such as calcium carbonate precipitation potential (CCPP), have long been used as indicators of water chemical stability. The Larson ratio (LR) is a non-CaCO3 based index for measuring water corrosivity against iron pipes, but the involved mechanisms and application of LR are not completely understood. To understand the applicability of the two indices on iron corrosion product release in drinking water distribution systems (DWDS),unlined cast iron pipes were harvested from a real DWDS to establish pilot-scale experimental systems, and different chemicals were used to adjust LR and CCPP values of the pipe feed waters.Results showed that iron release increased with LR increase, but at the same LR, chloride adjustment could lead to more iron release than sulphate. When using different chemicals to adjust CCPP to the same level, the iron release could be significantly different, with NaHCO3 addition causing the lowest release. Increasing the alkalinity by Ca(OH)2 and CO2, which could be the most efficient and economic method for inhibiting iron release in DWDS, increased the CCPP and reduced the LR simultaneously. The crystalline composition characteristics of iron pipe corrosion scales also played a critical role in the iron release behavior.
机译:长期以来,基于碳酸钙平衡的指标(例如碳酸钙沉淀电位(CCPP))一直用作水化学稳定性的指标。拉森比(LR)是基于非CaCO3的指标,用于测量对铁管的水腐蚀性,但尚未完全了解LR涉及的机理和应用。为了了解这两个指标在饮用水分配系统(DWDS)中的铁腐蚀产物释放的适用性,从真实的DWDS中收集无衬里的铸铁管以建立中试规模的实验系统,并使用不同的化学物质来调节LR和CCPP结果表明,铁的释放量随LR的增加而增加,但在相同的LR下,氯离子的调节可能导致铁的释放量高于硫酸盐。当使用不同的化学药品将CCPP调节至相同水平时,铁的释放可能会显着不同,添加NaHCO3会导致最低的释放。通过Ca(OH)2和CO2增加碱度,这可能是抑制DWDS中铁释放的最有效,最经济的方法,它同时提高了CCPP和降低了LR。铁管腐蚀垢的晶体组成特征在铁释放行为中也起着关键作用。

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    Baoyou Shi;

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  • 年度 2017
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