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Ozone: Science & Engineering
The Journal of the International Ozone Association
Volume 22, 2000 - Issue 3
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Original Articles

Experimental Aspects of Mechanistic Studies on Aqueous Ozone Decomposition in Alkaline Solution

Pages 287-304 | Published online: 07 Apr 2008

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Read on this site (13)

Shangkun Li, Yangang Li, Lei Sun, Fei Pan, Xiangjuan Yuan & Dongsheng Xia. (2023) Facilitated catalytic ozonation of atrazine over highly stabilized Zn-Al layered double oxides composites: efficacy and mechanism. Environmental Technology 44:10, pages 1478-1492.
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Guiju Li, Jingjing He, Dandan Wang, Panpan Meng & Ming Zeng. (2015) Optimization and interpretation of O3 and O3/H2O2 oxidation processes to pretreat hydrocortisone pharmaceutical wastewater. Environmental Technology 36:8, pages 1026-1034.
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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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Paul Andrew Christensen, Taner Yonar & Khalid Zakaria. (2013) The Electrochemical Generation of Ozone: A Review. Ozone: Science & Engineering 35:3, pages 149-167.
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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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P.A. Christensen, K. Zakaria & T.P. Curtis. (2012) Structure and Activity of Ni- and Sb–doped SnO2 Ozone Anodes. Ozone: Science & Engineering 34:1, pages 49-56.
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P.A. Christensen & A. Imkum. (2011) The Inhibition of Ozone Generation at Ni/Sb-SnO2 Electrodes in High Concentrations of Dissolved O3 . Ozone: Science & Engineering 33:5, pages 389-395.
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DanieleC. M. B. dos Santos, M. GraçasA. Korn, Mauro Korn, PaulaC. A. G. Pinto, M. LúciaM. F. S. Saraiva & JoséL. F. C. Lima. (2011) Sequential Injection Chemiluminescence Methodology for Ozone Evaluation. Analytical Letters 44:1-3, pages 117-126.
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P.A. Christensen, W.F. Lin, H. Christensen, A. Imkum, J.M. Jin, G. Li & C.M. Dyson. (2009) Room Temperature, Electrochemical Generation of Ozone with 50% Current Efficiency in 0.5M Sulfuric Acid at Cell Voltages < 3V. Ozone: Science & Engineering 31:4, pages 287-293.
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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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MichaelG. Zenaitis & SheldonJ. B. Duff. (2005) Modeling of the Reaction of Ozone with Dehydroabietic Acid. Ozone: Science & Engineering 27:5, pages 397-407.
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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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Articles from other publishers (25)

Hernan G. Mazzei & Stefania Specchia. (2023) Latest insights on technologies for the treatment of solid medical waste: A review. Journal of Environmental Chemical Engineering 11:2, pages 109309.
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Joanna Kisała, Anna Tomaszewska & Przemysław Kolek. (2022) Non-stoichiometric magnetite as catalyst for the photocatalytic degradation of phenol and 2,6-dibromo-4-methylphenol – a new approach in water treatment. Beilstein Journal of Nanotechnology 13, pages 1531-1540.
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Qian-Yuan Wu, Zheng-Wei Yang, Ye Du, Wan-Yue Ouyang & Wen-Long Wang. (2021) The promotions on radical formation and micropollutant degradation by the synergies between ozone and chemical reagents (synergistic ozonation): A review. Journal of Hazardous Materials 418, pages 126327.
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Boris G. Ershov & Bladimir P. Shilov. (2021) Reactions of ozone and intermediate products of its decomposition with actinides, lanthanides and transition metals in aqueous solutions. Radiochimica Acta 109:8, pages 583-601.
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Tongdong Shen, Wentao Su, Qiangqiang Yang, Jun Ni & Shaoping Tong. (2020) Synergetic mechanism for basic and acid sites of MgMxOy (M = Fe, Mn) double oxides in catalytic ozonation of p-hydroxybenzoic acid and acetic acid. Applied Catalysis B: Environmental 279, pages 119346.
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Lei Du, Wenqiang Gao, Zhixing Li, Weizhou Jiao & Youzhi Liu. (2020) Oxidative degradation of formaldehyde in wastewater by MgO/O3/H2O2 in a rotating packed bed. Chemical Engineering and Processing - Process Intensification 155, pages 108053.
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Tongdong Shen, Xiaofang Zhang, Kun-Yi Andrew Lin & Shaoping Tong. (2020) Solid base Mg-doped ZnO for heterogeneous catalytic ozonation of isoniazid: Performance and mechanism. Science of The Total Environment 703, pages 134983.
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Tawakal S. Rwahila, Taichi Sugai, Akira Tokuchi & Weihua Jiang. (2019) The Effect of Oxygen and Argon Gas Flow Rate on OH Radical Production and Dye Decolorization by Pulsed Discharge in Spray Droplet Reactor. IEEE Transactions on Plasma Science 47:10, pages 4560-4566.
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T M Abdullin, I R Gilmanshin, N F Kashapov, S I Gilmanshina, A I Galeeva & D R Krainova. (2018) Educational laboratorial facility for researching the technology of plasma gasification of production and consumption wastes including medical wastes. IOP Conference Series: Materials Science and Engineering 412, pages 012001.
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Yang CAO, Guangzhou QU, Tengfei LI, Nan JIANG & Tiecheng WANG. (2018) Review on reactive species in water treatment using electrical discharge plasma: formation, measurement, mechanisms and mass transfer. Plasma Science and Technology 20:10, pages 103001.
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Cassandra M. Lees, James L. Lansing, Samantha L. Morelly, Sophia E. Lee & Maureen H. Tang. (2018) Ni- and Sb-Doped SnO 2 Electrocatalysts with High Current Efficiency for Ozone Production via Electrodeposited Nanostructures . Journal of The Electrochemical Society 165:16, pages E833-E840.
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Mária Szabó, Gábor Bellér, József Kalmár & István Fábián. 2017. Inorganic Reaction Mechanisms. Inorganic Reaction Mechanisms 1 61 .
Taichi Sugai, Phan Trong Nguyen, Tomoyo Maruyama, Akira Tokuchi & Weihua Jiang. (2016) The Effect of Scale-Up of Pulsed Corona Discharge for Treatment of Pollution Water Sprayed in Discharge Gap. IEEE Transactions on Plasma Science 44:10, pages 2204-2210.
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A. V. Levanov, O. Ya. Isaikina, A. N. Tyutyunnik, E. E. Antipenko & V. V. Lunin. (2016) Molar absorption coefficient of ozone in aqueous solutions. Journal of Analytical Chemistry 71:6, pages 549-553.
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Khalid Zakaria & Paul Andrew Christensen. (2014) The Use of Ni/Sb–SnO2-based Membrane Electrode Assembly for Electrochemical Generation of Ozone and the Decolourisation of Reactive Blue 50 Dye Solutions. Electrochimica Acta 135, pages 11-18.
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Paul Andrew Christensen, Khalid Zakaria, Henriette Christensen & Taner Yonar. (2013) The Effect of Ni and Sb Oxide Precursors, and of Ni Composition, Synthesis Conditions and Operating Parameters on the Activity, Selectivity and Durability of Sb-Doped SnO 2 Anodes Modified with Ni . Journal of The Electrochemical Society 160:8, pages H405-H413.
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Meng Fu Zhu, Cheng Deng, Xiu Dong You, Hong Bo Su & Ping Chen. (2011) Numerical Simulation of Ozone Oxidation on Oily Wastewater. Applied Mechanics and Materials 71-78, pages 2721-2726.
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María Eugenia Lovato, Carlos A. Martín & Alberto E. Cassano. (2011) A reaction–reactor model for O3 and UVC radiation degradation of dichloroacetic acid: The kinetics of three parallel reactions. Chemical Engineering Journal 171:2, pages 474-489.
Crossref
A. N. Ignat’ev, A. N. Pryakhin & V. V. Lunin. (2010) Mathematical simulation as a method to study the influence of oxygen, hydrogen peroxide, and phosphate and carbonate ions on the kinetics of ozone decomposition in aqueous solution. Russian Chemical Bulletin 58:6, pages 1097-1105.
Crossref
John A. Wojtowicz. 2001. Kirk-Othmer Encyclopedia of Chemical Technology. Kirk-Othmer Encyclopedia of Chemical Technology.
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.
Crossref
Fernando Beltr√°n. 2003. Ozone Reaction Kinetics for Water and Wastewater Systems. Ozone Reaction Kinetics for Water and Wastewater Systems.
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.
Crossref
Jianjun Lin & Tsuyoshi Nakajima. (2003) An AM1 study of decomposition of aqueous ozone. Journal of Molecular Structure: THEOCHEM 625:1-3, pages 161-167.
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Attila Nemes, István Fábián & Rudi van Eldik. (2000) Kinetics and Mechanism of the Carbonate Ion Inhibited Aqueous Ozone Decomposition. The Journal of Physical Chemistry A 104:34, pages 7995-8000.
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