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Linking discolouration modelling and biofilm behaviour within drinking water distribution systems

机译:将饮水分配系统中的变色建模和生物膜行为联系起来

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摘要

High quality drinking water exits modern treatment works, yet water quality degradation such as discolouration continues to occur within drinking water distribution systems (DWDS). Discolouration is observed globally, suggesting a common process despite variations in source, treatment, disinfection and network configurations. The primary cause of discolouration has been identified as mobilisation of particulate material from pipe walls and the verified Prediction of Discolouration in Distribution Systems (PODDS) model uses measurable network hydraulics to simulate this response. In this paper the cohesive properties of discolouration material are explored and it is hypothesised that in simulating the turbidity response, the PODDS model is actually describing the development and cohesive strength behaviour of biofilms. Applying this concept can therefore facilitate a rapid and simple assessment of DWDS biofilm activity. A review of the findings from PODDS studies conducted internationally is presented, focussing on the macro or observable aspects of discolouration. These are compared and contrasted with associated biofilm studies which consider discolouration material at the micro-scale. Combining the results from these (past) studies to improve the understanding of interactions between microbial ecology and discolouration are discussed with a view to DWDS operational strategies that safeguard and optimise drinking water supply.\ud\ud
机译:高质量的饮用水已退出现代处理厂,但是饮用水分配系统(DWDS)内仍继续发生水质下降(例如变色)的现象。尽管在来源,处理,消毒和网络配置方面存在差异,但在全球范围内都观察到了变色现象,这表明存在一个共同的过程。已经确定了变色的主要原因是从管道壁上移动了颗粒材料,并且经过验证的配电系统变色预测(PODDS)模型使用可测量的网络液压来模拟这种响应。本文探讨了变色材料的内聚性能,并假设在模拟浊度响应时,PODDS模型实际上是在描述生物膜的发展和内聚强度行为。因此,应用这一概念可以促进对DWDS生物膜活性的快速,简单评估。介绍了国际上进行的PODDS研究结果的综述,重点是变色的宏观或可观察的方面。这些与相关的生物膜研究进行了比较和对比,相关的生物膜研究在微观上考虑了变色材料。结合这些(过去的)研究结果,以增进对微生物生态学和变色之间相互作用的理解,并讨论了DWDS维护和优化饮用水供应的操作策略。\ ud \ ud

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