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Biofilm structures (EPS and bacterial communities) in drinking water distribution systems are conditioned by hydraulics and influence discolouration

机译:饮用水分配系统中的生物膜结构(Eps和细菌群落)受到水力学的影响并影响变色

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摘要

High-quality drinking water from treatment works is degraded during transport to customer taps through the Drinking Water Distribution System (DWDS). Interactions occurring at the pipe wall-water interface are central to this degradation and are often dominated by complex microbial biofilms that are not well understood. This study uses novel application of confocal microscopy techniques to quantify the composition of extracellular polymeric substances (EPS) and cells of DWDS biofilms together with concurrent evaluation of the bacterial community. An internationally unique, full-scale, experimental DWDS facility was used to investigate the impact of three different hydraulic patterns upon biofilms and subsequently assess their response to increases in shear stress, linking biofilms to water quality impacts such as discolouration. Greater flow variation during growth was associated with increased cell quantity but was inversely related to EPS-to-cell volume ratios and bacterial diversity. Discolouration was caused and EPS was mobilised during flushing of all conditions. Ultimately, biofilms developed under low-varied flow conditions had lowest amounts of biomass, the greatest EPS volumes per cell and the lowest discolouration response. This research shows that the interactions between hydraulics and biofilm physical and community structures are complex but critical to managing biofilms within ageing DWDS infrastructure to limit water quality degradation and protect public health.
机译:在通过饮用水分配系统(DWDS)输送到客户水龙头的过程中,来自处理厂的高质量饮用水会降解。在管壁-水界面处发生的相互作用是这种降解的关键,并且常常被人们不了解的复杂微生物生物膜所控制。这项研究使用共聚焦显微镜技术的新应用来量化DWDS生物膜的细胞外聚合物(EPS)和细胞的组成,并同时评估细菌群落。使用国际上独一无二的,全面的,实验性的DWDS设备来研究三种不同水力模式对生物膜的影响,并随后评估它们对剪切应力增加的响应,从而将生物膜与水质影响(例如变色)联系起来。生长期间更大的流量变化与细胞数量增加有关,但与EPS与细胞的体积比和细菌多样性成反比。在所有条件下冲洗过程中,引起了变色,并调动了EPS。最终,在低变流量条件下形成的生物膜具有最低的生物量,每个细胞最大的EPS量和最低的变色响应。这项研究表明,水力学与生物膜物理结构和群落结构之间的相互作用非常复杂,但对于在老化的DWDS基础设施中管理生物膜以限制水质退化和保护公共健康至关重要。

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