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Ozone-initiated Disinfection Kinetics Of Escherichia Coli In Water

机译:臭氧引发的水中大肠杆菌的消毒动力学

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The effect of ozonation on the rate of disinfection of Escherichia coli was investigated as a function of ozone concentration, ozonation duration and flow rates. Ozone was generated in situ using Corona discharge method using compressed oxygen stream and depending on the oxygen flux the ozone concentrations ranged from 0.91-4.72 mg/L. The rate of disinfection of all the three microbes followed pseudo-first-order kinetics with respect to the microbe count and first order with respect to ozone concentration. The influence of pH and temperature the aqueous systems on the rate of ozone initiated disinfection of the microbe was investigated. The inactivation was faster at lower pH than at basic pH. Molecular ozone is found more effective in disinfection than hydroxyl radicals. Two reported mechanisms for antimicrobial activity of ozone in water systems from the literature are discussed. Based on the experimental findings a probable rate law and mechanism are proposed. Ozonation of natural waters significantly decreased the BOD levels of the control and microbe contaminated waters.
机译:研究了臭氧化对大肠杆菌消毒速率的影响,它是臭氧浓度,臭氧化持续时间和流速的函数。臭氧是使用压缩氧气流通过电晕放电法原位产生的,取决于氧气通量,臭氧浓度范围为0.91-4.72 mg / L。三种微生物的消毒速率均遵循关于微生物计数的伪一级动力学和有关臭氧浓度的一级动力学。研究了pH和温度对水性系统对臭氧引发微生物消毒速率的影响。在较低的pH值下,灭活比在碱性pH值下快。发现分子臭氧在消毒方面比羟基自由基更有效。从文献中讨论了两种报道的水系统中臭氧抗菌活性的机制。基于实验结果,提出了可能的速率规律和机理。天然水的臭氧化显着降低了对照水和微生物污染水的BOD水平。

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