首页> 外文会议>Biennial conference of the International Association on Water Quality >PREDICTING DISINFECTION PERFORMANCE IN CONTINUOUS FLOW SYSTEMS FROM BATCH DISINFECTION KINETICS
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PREDICTING DISINFECTION PERFORMANCE IN CONTINUOUS FLOW SYSTEMS FROM BATCH DISINFECTION KINETICS

机译:从批量消毒动力学预测连续流系统中的消毒性能

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Disinfection processes have often been characterized by the "CT" concept i.e., the product of disinfectant residual and contact time (perhaps as a function of pH, temperature, and other water quality variations) produces a given level of disinfection. The objective of this work was to develop and validate the use of reaction kinetic models for disinfection process design. Using bench scale (batch) kinetic information, and hydraulic characterization of pilot scale continuous disinfection processes, predictions of continuous process performance were made using a segregated flow model. These predictions were compared to independent experimental measurements of actual inactivation in pilot scale processes. Preammoniation, free residual chlorination, and ozonation were used on two waters from Portland, Oregon (US). Organisms used were Giardia muris, bacteriophage MS2, and Escherichia colt.
机译:消毒过程通常以“ CT”概念为特征,即消毒剂残留和接触时间(可能是pH,温度和其他水质变化的函数)的乘积可产生给定的消毒水平。这项工作的目的是开发和验证反应动力学模型在消毒过程设计中的使用。利用台式规模(批处理)动力学信息以及中试规模连续消毒过程的水力特性,使用分离流模型对连续过程的性能进行了预测。将这些预测与中试规模过程中实际失活的独立实验测量结果进行了比较。在来自美国俄勒冈州波特兰市的两个水域使用氨氮预处理,游离氯残留和臭氧化处理。所使用的生物是穆氏贾第鞭毛虫,噬菌体MS2和大肠杆菌。

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