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Ozone: Science & Engineering
The Journal of the International Ozone Association
Volume 37, 2015 - Issue 3
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Original Articles

Multiwalled Carbon Nanotubes for Heterogeneous Nanocatalytic Ozonation

, &
Pages 269-278 | Received 29 Jun 2014, Accepted 17 Oct 2014, Published online: 13 May 2015

REFERENCES

  • Beltran, F.J., J. Rivas, P. Alvarez, and R. Montero-de-Espinosa. 2002. “Kinetics of Heterogeneous Catalytic Ozone Decomposition in Water on an Activated Carbon.” Ozone Science & Engineering 24(4): 227–237.
  • Boily, J.-F.O., and T. Seward. 2005. “On the Dissociation of Methyl Orange: Spectrophotometric Investigation in Aqueous Solutions from 10 to 90 °C and Theoretical Evidence for Intramolecular Dihydrogen Bonding.” Journal of Solution Chemistry 34(12): 1387–1406.
  • Chen, L., H. Xie, Y. Li, and W. Yu. 2008. “Surface Chemical Modification of Multiwalled Carbon Nanotubes by a Wet-Mechanochemical Reaction.” Journal of Nanomaterials 2008: 1–5.
  • Chen, L.C. 2000. “Effects of Factors and Interacted Factors on the Optimal Decolorization Process of Methyl Orange by Ozone.” Water Research 34(3): 974–982.
  • Chen, W.,L. Duan, and D. Zhu. 2007. “Adsorption of Polar and Nonpolar Organic Chemicals to Carbon Nanotubes.” Environmental Science & Technology 41(24): 8295–8300.
  • Chen, Y., Z. Shen, H. Frey, J. Pérez-Prieto, and S.E. Stiriba. 2005. “Synergistic Assembly of Hyperbranched Polyethylenimine and Fatty Acids Leading to unusual Supramolecular Nanocapsules.” Chemical Communications 14(6): 755–757.
  • Diagne, M., N. Oturan, and M.A. Oturan. 2007. “Removal of Methyl Parathion from Water by Electrochemically Generated Fenton’s Reagent.” Chemosphere 66(5): 841–848.
  • Fan, X., J. Restivo, J.J.M. Órfão, M.F.R. Pereira, and A.A. Lapkin. 2014. “The Role of Multiwalled Carbon Nanotubes (MWCNTs) in the Catalytic Ozonation of Atrazine.” Chemical Engineering Journal 241: 66–76.
  • Garcia, J., H.T. Gomes, P. Serp, P. Kalck, J.L. Figueiredo, and J.L. Faria. 2005. “Platinum Catalysts Supported on MWNT for Catalytic Wet Air Oxidation of Nitrogen Containing Compounds.” Catalysis Today 102: 101–109.
  • Glaze, W.H., J.-W. Kang, and D.H. Chapin. 1987. “The Chemistry of Water Treatment Processes Involving Ozone, Hydrogen Peroxide and Ultraviolet Radiation.” Ozone Science & Engineering 9(4): 335–352.
  • Gonçalves, A.G., J.J.M. Órfão, and M.F.R. Pereira. 2013. “Ozonation of Sulfamethoxazole Promoted by MWCNT.” Catalysis Communications 35: 82–87.
  • Gottschalk, C., A. Saupe, and J.A. Libra. 2000. Ozonation of Water and Waste Water: A Practical Guide to Understanding Ozone and its Application. Weinheim/New York: Wiley-VCH.
  • Hassan, M.M., and C.J. Hawkyard. 2006. “Decolorization of Dyes and Dyehouse Effluent in a Bubble-Column Reactor by Heterogeneous Catalytic Ozonation.” Journal of Chemical Technology and Biotechnology 81(2): 201–207.
  • Hoigné, J., H. Bader, W.R. Haag, and J. Staehelin. 1985. “Rate Constants of Reactions of Ozone with Organic and Inorganic-Compounds in Water .3. Inorganic-Compounds and Radicals.” Water Research 19(8): 993–1004.
  • Jans, U., and J. Hoigné. 1998. “Activated Carbon and Carbon Black Catalyzed Transformation of Aqueous Ozone into OH-Radicals.” Ozone Science & Engineering 20(1): 67–90.
  • Kaptijn, J.P. 1997. “The Ecoclear® process. Results from Full-Scale Installations.” Ozone Science & Engineering 19(4): 297–305.
  • Kasprzyk-Hordern, B., M. Ziolek, and J. Nawrocki. 2003. “Catalytic Ozonation and Methods of Enhancing Molecular Ozone Reactions in Water Treatment.” Applied Catalysis B-Environmenta 46(4): 639–669.
  • Kovalova, L., H. Siegrist, U. von Gunten, J. Eugster, M. Hagenbuch, A. Wittmer, R. Moser, and C.S. McArdell. 2013. “Elimination of Micropollutants during Post-Treatment of Hospital Wastewater with Powdered Activated Carbon, Ozone, and UV.” Environmental Science & Technology 47(14): 7899–7908.
  • Legube, B., and N.K.V. Leitner. 1999. “Catalytic Ozonation: A Promising Advanced Oxidation Technology for Water Treatment.” Catalysis Today 53(1): 61–72.
  • Li, X., R. Huang, Q. Zhang, W. Yang, and L. Li. 2010. “Catalytic Ozonation for the Degradation of p-Chlorobenzoic Acid in Aqueous Solution by Ni Supported Activated Carbon.” Paper presented at the 4th International Conference on Bioinformatics and Biomedical Engineering, IEEE, Chengdu, China, 1–4.
  • Liu, Z.-Q., J. Ma, Y.-H. Cui, L. Zhao, and B.-P. Zhang. 2011. “Factors Affecting the Catalytic Activity of Multi-Walled Carbon Nanotube for Ozonation of Oxalic Acid.” Separation and Purification Technology 78(2): 147–153.
  • Loeb, B.L., C.M. Thompson, J. Drago, H. Takahara, and S. Baig. 2012. “Worldwide Ozone Capacity for Treatment of Drinking Water and Wastewater: A Review.” Ozone Science & Engineering 34(1): 64–77.
  • Mansouri, L., H. Mohammed, C. Tizaoui, and L. Bousselmi. 2013. “Heterogeneous Catalytic Ozonation of Diethyl Phthalate.” Desalination and Water Treatment 51(34–36): 6698–6710.
  • Nawrocki, J., and B. Kasprzyk-Hordern. 2010. “The Efficiency and Mechanisms of Catalytic Ozonation.” Applied Catalysis B-Environmental 99(1–2): 27–42.
  • Rance, G.A., and A.N. Khlobystov. 2010. “Nanoparticle-Nanotube Electrostatic Interactions in Solution: The Effect of pH and Ionic Strength.” Physical Chemistry Chemical Physics: PCCP 12(36): 10775–10780.
  • Rice, E.W., and J.C. Hoff. 1981. “Inactivation of Giardia lamblia Cysts by Ultraviolet Irradiation.” Applied Environmental Microbiology 42(3): 546–547.
  • Rice, R.G., and A. Netzer. 1982. Handbook of Ozone Technology and Applications, Vol. 1. Ann Arbor, MI: Science Publishers.
  • Sanchez-Polo, M., U. von Gunten, and J. Rivera-Utrilla. 2005. “Efficiency of Activated Carbon to Transform Ozone Into •OH radicals: Influence of Operational Parameters.” Water Research 39(14): 3189–3198.
  • Serp, P., M. Corrias, and P. Kalck. 2003. “Carbon nanotubes and nanofibers in catalysis.” Application Catalysis A-General 253(2): 337–358.
  • Sonntag, C., and U. von Gunten. 2012. Chemistry of Ozone in Water and Wastewater Treatment: from Basic Principles to Applications. London: IWA Publishing.
  • Sui, M.H., S.C. Xing, L. Sheng, S.H. Huang, and H.G. Guo. 2012. “Heterogeneous Catalytic Ozonation of Ciprofloxacin in Water with Carbon Nanotube Supported Manganese Oxides as Catalyst.” Journal of Hazardous Materials 227: 227–236.
  • Tizaoui, C., and N. Grima. 2011. “Kinetics of the Ozone Oxidation of Reactive Orange 16 Azo-Dye in Aqueous Solution.” Chemical Engineering Journal 173(2): 463–473.
  • Tizaoui, C., N.M. Grima, and M.Z. Derdar. 2009. “Effect of the Radical Scavenger t-Butanol on Gas–Liquid Mass Transfer.” Chemical Engineering Science 64(21): 4375–4382.
  • Wang, H.Y., J.F. Niu, X.X. Long, and Y. He. 2008. “Sonophotocatalytic Degradation of Methyl Orange by Nano-sized Ag/TiO2 Particles in Aqueous Solutions.” Ultrasonic Sonochemistry 15(4): 386–392.
  • Wang, J., Z. Li, S. Li, W. Qi, P. Liu, F. Liu, Y. Ye, L. Wu, L. Wang, and W. Wu. 2013. “Adsorption of Cu(II) on Oxidized Multi-Walled Carbon Nanotubes in the Presence of Hydroxylated and Carboxylated Fullerenes.” PLoS ONE 8(8): e72475.
  • Yu, F., J. Ma, and S. Han. 2014. “Adsorption of Tetracycline from Aqueous Solutions onto Multi-walled Carbon Nanotubes with Different Oxygen Contents.” Scientific Reports 4(5326): 1–8.

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