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Dynamics of Biofilm Regrowth in Drinking Water Distribution Systems

机译:饮用水分配系统中生物膜再生的动力学

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The majority of biomass within water distribution systems is in the form of attached biofilm. This is known to be central to drinking water quality degradation following treatment, yet little understanding of the dynamics of these highly heterogeneous communities exists. This paper presents original information on such dynamics, with findings demonstrating patterns of material accumulation, seasonality, and influential factors. Rigorous flushing operations repeated over a 1-year period on an operational chlorinated system in the United Kingdom are presented here. Intensive monitoring and sampling were undertaken, including time-series turbidity and detailed microbial analysis using 16S rRNA Illumina MiSeq sequencing. The results show that bacterial dynamics were influenced by differences in the supplied water and by the material remaining attached to the pipe wall following flushing. Turbidity, metals, and phosphate were the main factors correlated with the distribution of bacteria in the samples. Coupled with the lack of inhibition of biofilm development due to residual chlorine, this suggests that limiting inorganic nutrients, rather than organic carbon, might be a viable component in treatment strategies to manage biofilms. The research also showed that repeat flushing exerted beneficial selective pressure, giving another reason for flushing being a viable advantageous biofilm management option. This work advances our understanding of microbiological processes in drinking water distribution systems and helps inform strategies to optimize asset performance.IMPORTANCE This research provides novel information regarding the dynamics of biofilm formation in real drinking water distribution systems made of different materials. This new knowledge on microbiological process in water supply systems can be used to optimize the performance of the distribution network and to guarantee safe and good-quality drinking water to consumers.
机译:水分配系统中的大多数生物质都是附着的生物膜形式。众所周知,这是处理后饮用水水质下降的关键,但对这些高度异质群落的动态了解很少。本文提供了有关这种动力学的原始信息,并发现了物质积累,季节性和影响因素的模式。在此介绍了在联合王国的一个可操作的氯化系统上进行了为期一年的严格冲洗操作。进行了严格的监测和采样,包括时间序列浊度和使用16S rRNA Illumina MiSeq测序进行的详细微生物分析。结果表明,细菌动力学受到供水差异和冲洗后残留在管壁上的物质的影响。浊度,金属和磷酸盐是与样品中细菌分布有关的主要因素。再加上由于残留氯缺乏对生物膜形成的抑制作用,这表明限制无机养分而不是有机碳可能是处理生物膜的治疗策略中的可行组成部分。研究还表明,重复冲洗可产生有益的选择压力,这也是冲洗成为可行的有利生物膜管理选择的另一个原因。这项工作提高了我们对饮用水分配系统中微生物过程的理解,并有助于为优化资产绩效提供策略依据。重要信息这项研究提供了有关由不同材料制成的真实饮用水分配系统中生物膜形成动力学的新颖信息。有关供水系统中微生物过程的新知识可用于优化分配网络的性能,并确保为消费者提供安全优质的饮用水。

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