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Polyethylene pipes exposed to chlorine dioxide in drinking water supply system: A critical review of degradation mechanisms and accelerated aging methods

二氧化氯 加速老化 聚乙烯 环境科学 降级(电信) 消毒剂 使用寿命 环境工程 材料科学 化学 复合材料 工程类 冶金 无机化学 有机化学 电信
作者
Nicola Lancioni,Marco Parlapiano,Massimiliano Sgroi,Luca Giorgi,Vieri Fusi,Giovanna Darvini,Luciano Soldini,Bartosz Szeląg,Anna Laura Eusebi,Francesco Fatone
出处
期刊:Water Research [Elsevier BV]
卷期号:238: 120030-120030 被引量:23
标识
DOI:10.1016/j.watres.2023.120030
摘要

Polyethylene (PE) pipes have been widely used in drinking water distribution systems across the world. In many cases, chlorine dioxide (ClO2) is used to maintain a residual disinfectant concentration in potable water. Practical experiences have shown that the lifetime of PE pipes is significantly reduced due to exposure to drinking water with ClO2. Recently, many companies have proposed new PE pipes with a modified formulation, which are more resistant to chlorine dioxide. However, a standardized test method for evaluating the long-term performances of PE pipes is still missing. This literature review was performed to provide a description of chlorine dioxide uses and degradation mechanisms of polyethylene pipes in real water distribution systems. Current accelerated aging methods to evaluate long-term performances of PE pipes exposed to ClO2 are described and discussed along with the common technics used to characterize the specimens. Accelerate aging methods can be distinguished in immersion aging tests and pressurized pipe loop tests. Wide ranges of operational conditions (chlorine dioxide concentration, water pressure, water temperature, etc.) are applied, resulting in a great variety of results. It was concluded that pressurized looping tests applying semi-realistic operational conditions could better replicate the aging mechanisms occurring in service. Despite this, the acceleration and the evaluation of the long-term performance are still difficult to determine precisely. Further experimentation is needed to correlate chemical-mechanical characterization parameters of PE pipes with their lifetime in service.
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