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Modeling chloramine decay in full-scale drinking water supply systems

机译:模拟全尺寸饮用水供应系统中的氯胺衰减

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Chloramines are commonly used as secondary disinfectants in drinking water treatment, providing a residual for disinfection as drinking water moves to consumers. Chloramines are inherently unstable, undergoing autodecomposition reactions even in the absence of reactive substances. In the presence of natural organic matter (NOM), chloramine loss accelerates due to additional reaction pathways. In this study, batch reaction models for chloramine loss due to autodecomposition and the presence of NOM were developed. A case study was carried out for the Town of Cary, North Carolina. A hydraulic model of Cary's distribution system was developed and calibrated using the EPANET toolkit with operational and water demand data supplied by Cary. Then, water age from the hydraulic model was used together with the batch model of chloramine decay to successfully predict chloramine concentrations spatially and temporally throughout the network. The capabilities of the EPANET-MSX toolkit to model chloramine loss in a distribution network are explored. (C) 2019 Water Environment Federation
机译:氯胺通常用作饮用水处理中的次要消毒剂,当饮用水流向消费者时会提供消毒残留物。氯胺本质上是不稳定的,即使在没有反应性物质的情况下也会发生自分解反应。在天然有机物(NOM)的存在下,由于其他反应途径,氯胺的损失会加快。在这项研究中,开发了由于自动分解和NOM的存在而导致氯胺损失的间歇反应模型。对北卡罗来纳州卡里镇进行了案例研究。使用EPANET工具包开发并校准了Cary分配系统的水力模型,并提供了Cary提供的运行和需水数据。然后,将水力模型中的水龄与氯胺衰变的批处理模型一起使用,以成功地在整个网络中时空预测氯胺浓度。探索了EPANET-MSX工具包在分销网络中模拟氯胺损失的功能。 (C)2019水环境联合会

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