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Temporal and Spatial Variations in Bulk Chlorine Decay within a Water Supply System

机译:供水系统中大量氯气衰变的时空变化

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摘要

Modern water treatment must maintain an acceptable balance between the microbial safety of potable water supply, the costs of treatment, and the formation of potentially harmful disinfection by-products (DBPs). In order to achieve the optimum balance, it is essential to understand and predict both the formation of DBP and the decay of chlorine, in relation to source water, treatment processes, storage, and supply. Reported herein are new data which demonstrate the lack of durability, precision, and accuracy associated with earlier empirical chlorine decay rate equations. This work develops an improved methodology for the prediction of variation in chlorine decay rates in distribution systems enabling practical, cost-effective prediction of the effects of both seasonal variations and management interventions on chlorine levels at treatment works and in distribution systems.
机译:现代水处理必须在饮用水的微生物安全性,处理成本和形成潜在有害的消毒副产品(DBP)之间保持可接受的平衡。为了达到最佳平衡,必须了解和预测DBP的形成和氯的衰减(与源水,处理过程,存储和供应有关)。本文报道的新数据表明缺乏与早期经验氯衰变速率方程式相关的耐用性,精度和准确性。这项工作开发了一种改进的方法,用于预测配水系统中氯的衰减速率的变化,从而能够对处理厂和配水系统中的季节性变化和管理干预措施对氯含量的影响进行实用,经济高效的预测。

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