OZONATION OF WATER - OXIDATION-COMPETITION VALUES OF DIFFERENT TYPES OF WATERS USED IN SWITZERLAND

被引:111
作者
HOIGNE, J
BADER, H
机构
[1] Swiss Federal Institute for Water Resources, Water Pollution Control, EAWAG
关键词
coefficients; OH; radicals oxidation-competition value oxidation-competition coefficients drinking water - Switzerland lifetime of ozone - drinking water stability of ozone - drinking water lakewaters - Switzerland ground waters - Switzerland spontaneous ozone demands Ω; values; ω;
D O I
10.1080/01919512.1979.10684571
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In order to transfer experience from one waterwork to another, it is helpful to know (i) the spontaneous ozone requirement, (ii) the lifetime of the ozone, and (iii) the oxidation efficiency of the secondary oxidants derived from decomposed ozone (OH' radicals) in the different waters. The spontaneous ozone requirement of surface and ground waters (0.1 to 1 mg/1) and the lifetime of the ozone (30 to 2, 000 sec at pH 8) can easily be measured. The effect of the secondary oxidants (OH' radicals) can best be characterized by following the elimination rate of the individual suitable referenced micropollutant as a function of the amount of ozone decomposed. This way the “Oxidation-Competition Value”, Ω, of the water can be determined. This Ω is a linear sum of the concentrations of all impurities which consume OH’ radicals, multiplied by the individual “Oxidation-Competition Coefficient.” The Ω values have been determined for 40 different types of waters. For the elimination of benzene (reference solute) to its 37% value, the required amount of ozone decomposition (e.i. Ω {benzene}) varied in lakewater from 0.5 mg/1 (mesotrophic lake) to 2.2 mg/1 (highly eutrophic lake) and in groundwater from 0.3 mg/1 (soft mountain groundwater) to 2 mg/1 (medium loaded groundwater). © 1979, Taylor & Francis Group, LLC. All rights reserved.
引用
收藏
页码:357 / 372
页数:16
相关论文
共 13 条
[1]  
Hoigne J., Ozone Technology and its Practical Applications
[2]  
Hoigne J., Bader H., Zuercher F., Kinetik und Selektivităt der Ozonung organischer Stoffe im Trinkwasser, pp. 261-276, (1978)
[3]  
Hoigne J., Bader H., Ozone and Hydroxyl Radical-Initiated Oxidations of Organic and Organometallic Trace Impurities in Water, pp. 292-313, (1978)
[4]  
Hoigne J., Bader H., Beeinflussung der Oxidationswirkung von Ozon, 48, pp. 283-304, (1977)
[5]  
Hoigne J., Bader H., Ozone Initiated Oxidations of Solutes in Wastewater: A Reaction Kinetic Approach, Prog. Wat. Tech, 10, pp. 657-671, (1978)
[6]  
Hoigne J., Bader H., The Role of Hydroxyl Radical Reactions in Ozonation Processes in Aqueous Solutions, 10, pp. 377-386, (1976)
[7]  
Taube H., Bray W.C., Chain Reactions in Aqueous Solutions Containing Ozone, 62, pp. 3357-3373, (1940)
[8]  
II Chain Reactions of Ozone in Aqueous Solution, The Interaction of Ozone and Formic Acid in Aqueous Solution, 63, pp. 2453-2458, (1941)
[9]  
Hoigne J., Ozone Requirement and Oxidation-Competition Value of Different Types of Waters for the Oxidation of Trace Impurities, pp. 284-306, (1978)
[10]  
Hoigne J., Bader H., Ozonation of Water: Kinetics of Oxidation of Ammonia by Ozone and Hydroxyl Radicals, Environ. Sci. and Tech, 12, pp. 79-84, (1978)