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A comprehensive disinfection and water quality model for drinking water distribution systems.

机译:饮用水分配系统的全面消毒和水质模型。

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摘要

Drinking water quality can decay substantially within distribution systems. This decay is exhibited by decreases in disinfectant residuals and increases in bacterial counts, sometimes to levels that affect public heath. The processes that influence water quality decay are complex and depend on many factors, and the raw water properties that influence these factors differ greatly with location. Because of this complexity, no simple rules predict water quality changes in distribution systems.; The purpose of this research is to develop a comprehensive model to track the major processes that affect water quality in distribution systems. This model is called the Comprehensive Disinfection and Water Quality Model (CDWQ). CDWQ tracks all of the major species that affect water quality, including free and combined chlorine, heterotrophic bacteria, nitrifying bacteria, biodegradable organic matter (BOM), soluble microbial products (SMP), dissolved organic carbon (DOC), ammonia, nitrite, and nitrate.; The development of the CDWQ model involved four major steps. First, the model itself was developed, including the mass-balance equations representing the major processes that affect water quality in the distribution system, and the computer code providing the numeric solution of the mass-balance equations. Second, the model was calibrated using extensive measurements taken for a full-scale distribution system. Third, the calibrated model was used to determine the root causes of water quality decay in the distribution system. High levels of bacterial growth was linked to high biodegradable organic matter and ammonia loadings entering the distribution system. Disinfectant loss was linked to several mechanisms, including autocatalytic decay reactions, oxidation of organic matter and corrosion products, and a novel surface catalysis reaction of chloramines on concrete pipe surfaces. The fourth and final step in this study involved developing a water quality improvement plan using the CDWQ model. The plan developed suggested reducing biodegradable organic matter using biofiltration, reducing ammonia using booster chloramination and a higher initial chlorine-to-ammonia ratio, and optimizing the pH.
机译:饮用水质量在分配系统中会大大降低。这种腐烂表现为消毒残留物的减少和细菌数量的增加,有时达到影响公众健康的水平。影响水质衰减的过程非常复杂,并且取决于许多因素,并且影响这些因素的原水特性随位置而异。由于这种复杂性,没有简单的规则可以预测分配系统中水质的变化。本研究的目的是开发一个综合模型来跟踪影响配水系统中水质的主要过程。该模型称为综合消毒和水质模型(CDWQ)。 CDWQ跟踪影响水质的所有主要物种,包括游离氯和混合氯,异养细菌,硝化细菌,可生物降解的有机物(BOM),可溶性微生物产品(SMP),溶解性有机碳(DOC),氨,亚硝酸盐和硝酸盐。 CDWQ模型的开发涉及四个主要步骤。首先,开发了模型本身,包括代表影响分配系统中水质的主要过程的质量平衡方程式,以及提供质量平衡方程式数值解的计算机代码。其次,使用全面的配送系统进行的广泛测量对模型进行校准。第三,使用校准的模型来确定分配系统中水质衰减的根本原因。高水平的细菌生长与高生物降解性有机物和进入分配系统的氨含量有关。消毒剂的损失与多种机理有关,包括自催化衰变反应,有机物和腐蚀产物的氧化以及混凝土管道表面上氯胺的新型表面催化反应。这项研究的第四步也是最后一步涉及使用CDWQ模型制定水质改善计划。制定的计划建议通过生物过滤减少可生物降解的有机物,通过加强氯化作用减少氨气,并提高初始的氯氨比,并优化pH。

著录项

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Engineering Environmental.; Engineering Sanitary and Municipal.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 467 p.
  • 总页数 467
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;建筑科学;
  • 关键词

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