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Chlorine decay in drinking-water transmission and distribution systems: Pipe service age effect

机译:饮用水传输和分配系统中的氯衰减:管道使用年限的影响

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Water quality can deteriorate in the transmission and distribution system beyond the treatment plant. Minimizing the potential for biological regrowth can be attained by chlorinating the finished water. While flowing through pipes, the chlorine concentration decreases for different reasons. Reaction with the pipe material itself and the reaction with both the biofilm and tubercles formed on the pipe wall are known as pipe wall demand, which may vary with pipe parameters. The aim of this paper was to assess the impact of the service age of pipes on the effective chlorine wall decay constant. Three hundred and two pipe sections of different sizes and eight different pipe materials were collected and tested for their chlorine first-order wall decay constants. The results showed that pipe service age was an important factor that must not be ignored in some pipes such as cast iron, steel, cement-lined ductile iron (CLDI), and cement-lined cast iron (CLCI) pipes especially when the bulk decay is not significant relative to the wall decay. For the range of the 55 years of pipe service age used in this study, effective wall decay constants ranged from a decrease by -92% to an increase by +431% from the corresponding values in the recently installed pipes. The effect of service age on the effective wall decay constants was most evident in cast iron pipes, whereas steel pipes were less affected. Effective chlorine wall decay for CLCI and CLDI pipes was less affected by service age as compared to steel and cast iron pipes. Chlorine wall decay constants for PVC, uPVC, and polyethylene pipes were affected negatively by pipe service age and such effect was relatively small.
机译:处理厂以外的输配系统中的水质可能会恶化。可以通过对最终水进行氯化来最大程度地降低生物长势的可能性。在流经管道时,氯浓度由于不同的原因而降低。与管道材料本身的反应以及与在管道壁上形成的生物膜和结核的反应被称为管道壁需求,其可能随管道参数而变化。本文的目的是评估管道使用寿命对有效氯壁衰减常数的影响。收集了三百二十个不同尺寸的管段和八种不同的管材,并测试了它们的氯一阶壁衰减常数。结果表明,在某些管道中,例如铸铁,钢,衬里球墨铸铁(CLDI)和衬里球墨铸铁(CLCI)的管道中,管道使用寿命是一个不容忽视的重要因素,尤其是当体积衰减时相对于墙的衰变不重要。在这项研究中使用的55年管道使用寿命范围内,有效壁衰减常数从最近安装的管道中的相应值开始,从减少-92%到增加+ 431%不等。使用寿命对铸铁管壁有效衰变常数的影响最为明显,而对钢管的影响较小。与钢管和铸铁管相比,CLCI和CLDI管的有效氯壁衰减量受使用寿命的影响较小。 PVC,uPVC和聚乙烯管道的氯壁衰减常数受管道使用寿命的负面影响,这种影响相对较小。

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