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Ozone: Science & Engineering
The Journal of the International Ozone Association
Volume 14, 1992 - Issue 1
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Original Articles

Numerical Simulations of Aqueous Ozone Decomposition

Pages 33-49 | Received 12 Sep 1990, Accepted 15 Jun 1991, Published online: 25 Jul 2008

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Read on this site (13)

Pierre Mandel, Pascal Roche & Dominique Wolbert. (2014) Large-Scale Experimental Validation of a Model for the Kinetics of Ozone and Hydroxyl Radicals with Natural Organic Matter. Ozone: Science & Engineering 36:1, pages 73-85.
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Andrzej K. Biń, Piotr Machniewski, Jolanta Wołyniec & Agata Pieńczakowska. (2013) Modeling of Ozone Reaction with Benzaldehyde Incorporating Ozone Decomposition in Aqueous Solutions. Ozone: Science & Engineering 35:6, pages 489-500.
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JIAN LONG WANG & LE JIN XU. (2012) Advanced Oxidation Processes for Wastewater Treatment: Formation of Hydroxyl Radical and Application. Critical Reviews in Environmental Science and Technology 42:3, pages 251-325.
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Tadao Mizuno, Hiroshi Tsuno & Harumi Yamada. (2007) Development of Ozone Self-Decomposition Model for Engineering Design. Ozone: Science & Engineering 29:1, pages 55-63.
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Tadao Mizuno, Hiroshi Tsuno & Harumi Yamada. (2007) Effect of Inorganic Carbon on Ozone Self-Decomposition. Ozone: Science & Engineering 29:1, pages 31-40.
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N. Yasunaga, S. Furukawa, Y. Kawaai & J. Hirotsuji. (2006) New Approach for Optimization of Ozone-Hydrogen Peroxide Water Treatment. Ozone: Science & Engineering 28:2, pages 95-103.
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Sang Woo Lim & ChristopherE. D. Chidsey. (2005) Role of O3 and OH· Radicals in Ozonated Aqueous Solution for the Photoresist Removal of Semiconductor Fabrication. Ozone: Science & Engineering 27:2, pages 139-146.
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F. J. Rivas, F. J. Beltrán, B. Acedo, J. F. García Araya & M. Carbajo. (2005) Kinetics of the Ozone-p-Chlorobenzoic Acid Reaction. Ozone: Science & Engineering 27:1, pages 3-9.
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BoijayantaK. Bezbarua & DavidA. Reckhow. (2004) Modification of the Standard Neutral Ozone Decomposition Model. Ozone: Science & Engineering 26:4, pages 345-357.
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Gyula Wittmann, István Horváth & András Dombi. (2002) UV-induced Decomposition of Ozone and Hydrogen Peroxide in the Aqueous Phase at pH 2–7. Ozone: Science & Engineering 24:4, pages 281-291.
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Attila Nemes, István Fábián & Gilbert Gordon. (2000) Experimental Aspects of Mechanistic Studies on Aqueous Ozone Decomposition in Alkaline Solution. Ozone: Science & Engineering 22:3, pages 287-304.
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Michael S. Elovitz & Urs von Gunten. (1999) Hydroxyl Radical/Ozone Ratios During Ozonation Processes. I. The Rct Concept. Ozone: Science & Engineering 21:3, pages 239-260.
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P. Westerhoff, R. Song, G. Amy & R. Minear. (1997) Applications of Ozone Decomposition Models. Ozone: Science & Engineering 19:1, pages 55-73.
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Takeyoshi Goto, Yusuke Morisawa, Noboru Higashi, Akifumi Ikehata & Yukihiro Ozaki. (2013) Pulse Laser Photolysis of Aqueous Ozone in the Microsecond Range Studied by Time-Resolved Far-Ultraviolet Absorption Spectroscopy. Analytical Chemistry 85:9, pages 4500-4506.
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Younghwan Lee, June Young Lee, Kyung Taek Im & Sangwoo Lim. (2009) Effect of Isopropyl Alcohol Addition in Ozonated Water on the Corrosion of Tungsten Film. Japanese Journal of Applied Physics 48:5R, pages 056511.
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Jonghyuck Lee, Kibyung Park & Sangwoo Lim. (2008) Effect of HAc and IPA Addition in Ozonated Water Cleaning System for ArF Photoresist Removal. Journal of The Electrochemical Society 155:8, pages D547.
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Markku Kuosa, Arto Laari, Antti Solonen, Heikki Haario & Juha Kallas. (2007) Estimation of Multicomponent Reaction Kinetics of p -Nitrophenol Ozonation in a Bubble Column . Industrial & Engineering Chemistry Research 46:19, pages 6235-6243.
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F. Javier Rivas, Fernando J. Beltrán, Olga Gimeno & María Carbajo. (2005) Fluorene Oxidation by Coupling of Ozone, Radiation, and Semiconductors:  A Mathematical Approach to the Kinetics. Industrial & Engineering Chemistry Research 45:1, pages 166-174.
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Gunjan Tiwari & Purnendu Bose. (2005) Development and Experimental Validation of the Model of a Tall, Continuous-Flow, Countercurrent, Bubble-Type Ozone Contactor. Industrial & Engineering Chemistry Research 45:1, pages 109-119.
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Jae-Hong Kim, Urs von Gunten & Benito J. Mariñas. (2004) Simultaneous Prediction of Cryptosporidium parvum Oocyst Inactivation and Bromate Formation during Ozonation of Synthetic Waters . Environmental Science & Technology 38:7, pages 2232-2241.
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Raman Kumar & Purnendu Bose. (2004) Development and Experimental Validation of the Model of a Continuous-Flow Countercurrent Ozone Contactor. Industrial & Engineering Chemistry Research 43:6, pages 1418-1429.
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Fernando Beltr√°n. 2003. Ozone Reaction Kinetics for Water and Wastewater Systems. Ozone Reaction Kinetics for Water and Wastewater Systems.
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Kazi Z. A. HassanKevin C. BowerChristopher M. Miller. (2003) Numerical Simulation of Bromate Formation during Ozonation of Bromide. Journal of Environmental Engineering 129:11, pages 991-998.
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Urs von Gunten. (2003) Ozonation of drinking water: Part I. Oxidation kinetics and product formation. Water Research 37:7, pages 1443-1467.
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Hoon-Soo Park, Tae-Mun Hwang, Joon-Wun Kang, Heechul Choi & Hyun-Je Oh. (2001) Characterization of raw water for the ozone application measuring ozone consumption rate. Water Research 35:11, pages 2607-2614.
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J. A. Wojtowicz. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
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Chiang‐Hai Kuo, Li Zhong, Mark E. Zappi & Andrew P. Hong. (2009) Kinetics and mechanism of the reaction between ozone and hydrogen peroxide in aqueous solutions. The Canadian Journal of Chemical Engineering 77:3, pages 473-482.
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