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Ozone: Science & Engineering
The Journal of the International Ozone Association
Volume 41, 2019 - Issue 2
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Original Article

Evaluation of Fe-Functionalized 4A Zeolite as Ozone Catalyst for an Enhancement of Hydroxyl Radical Pathway in a Multiphase Reactor

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Pages 156-165 | Received 29 Mar 2018, Accepted 17 Jul 2018, Published online: 05 Sep 2018

References

  • Arroyo-Martínez, P. C., N. A. Sánchez-Flores, M. E. Villafuerte-Castrejónb, and R. Vivar-Ocampob. 2018. “Synergistic Effect of 4A Zeolite from Rice Husk Ash without Aging Time and Silane on the Adhesion Properties of a Warm Mix Asphalt.” Journal of the Brazilian Chemical Society 29 (1):58–66. doi:10.21577/0103-5053.20170112.
  • Bi, Y. S., G. Y. Dang, X. H. Zhao, X. F. Meng, H. J. Lu, and J. T. Jin. 2012. “Preparation, Characterization and Catalytic Properties of Pd–Fe–Zeolite and Pd–Ce–Zeolite Composite Catalysts.” Journal of Hazardous Materials 229–230:245–50. doi: 10.1016/j.jhazmat.2012.05.101
  • Bing, J. H., H. Li, Y. L. Nie, M. Yang, and J. H. Qu. 2015. “Mechanism of Catalytic Ozonation in Fe2O3/Al2O3@SBA-15 Aqueous Suspension for Destruction of Ibuprofen.” Environmental Science & Technology 49:1690–97. doi: 10.1021/es503729h
  • Bühler, R. E., J. Staehelin, and J. Hoigné. 1984. “Ozone Decomposition in Water Studied by Pulse Radiolysis. 1. HO·2/O−2 and HO·3/O−3 as Intermediates.” The Journal of Physical Chemistry 88:2560−2564. doi: 10.1021/j150656a026
  • Buxton, G. V., C. L. Greenstock, W. P. Heman, and A. B. Ross. 1988. “Critical Review of Rate Constants for Reactions of Hydrated Electrons, Hydrogen Atoms and Hydroxyl Radicals (·OH/·O−) in Aqueous Solution.” Journal of Physical & Chemical Reference Data 17 (2):513−886. doi:10.1063/1.555805.
  • Chen, C. M., C. Han, P. Wang, S. H. Guo, G. G. Yan, and Q. X. Li. 2016. “Investigation on Titanium Silicalite ETS-4 Catalyzed Ozonation for Chemicals in Wastewater, Exemplified with 4-Chlorophenol.” Clean–Soil Air Water 44 (12):1644–51. doi:10.1002/clen.201500282.
  • Chen, C. M., X. Yan, B. A. Yoza, T. T. Zhou, Y. Li, Y. L. Zhan, Q. H. Wang, and Q. X. Li. 2018a. “Efficiencies and Mechanisms of ZSM5 Zeolites Loaded with Cerium, Iron, or Manganese Oxides for Catalytic Ozonation of Nitrobenzene in Water.” Science of the Total Environment 612:1424–32. doi: 10.1016/j.scitotenv.2017.09.019
  • Chen, F., Y. Li, W. D. Cai, and J. L. Zhang. 2010. “Preparation and Sono-Fenton Performance of 4A-Zeolite Supported α-Fe2O3.” Journal of Hazardous Materials 177:743–49. doi: 10.1016/j.jhazmat.2009.12.094
  • Chen, W. R., X. K. Li, M. Q. Liu, and L. S. Li. 2017. “Effective Catalytic Ozonation for Oxalic Acid Degradation with Bimetallic Fe-Cu-MCM-41: Operation Parameters and Mechanism.” Journal of Chemical Technology & Biotechnology 92:2862–69. doi: 10.1002/jctb.5304
  • Chen, W. R., X. K. Li, Y. M. Tang, J. L. Zhou, D. Wu, Y. Wu, and L. S. Li. 2018b. “Mechanism Insight of Pollutant Degradation and Bromate Inhibitionby Fe-Cu-MCM-41 Catalyzed Ozonation.” Journal of Hazardous Materials 346:226–33. doi: 10.1016/j.jhazmat.2017.12.036
  • Chen, Y. L., Z. H. Ai, and L. Z. Zhang. 2012. “Enhanced Decomposition of Dimethyl Phthalate via Molecular Oxygen Activate by Fe@Fe2O3/AC under Microwave Irradiation.” Journal of Hazardous Materials 235–236:92–100. doi: 10.1016/j.jhazmat.2012.07.015
  • Ebrahimi, K. H., E. Bill, P. L. Hagedoorn, and W. R. Hagen. 2017. “Spectroscopic Evidence for the Presence of a High-Valent Fe(IV) Species in the Ferroxidase Reaction of an Archaeal Ferritin.” FEBS Letters 591:1712–19. doi: 10.1002/1873-3468.12697
  • Glaze, W. H., and J. W. Kang. 1989. “Advanced Oxidation Processes. Description of a Kinetic Model for the Oxidation of Hazardous Materials in Aqueous Media with Ozone and Hydrogen Peroxide in a Semibatch Reactor.” Industrial & Engineering Chemistry Research 28:1573–80. doi: 10.1021/ie00095a001
  • Hassan, H., and B. H. Hameed. 2011. “Oxidative Decolorization of Acid Red 1 Solutions by Fe–Zeolite Y Type Catalyst.” Desalination 276:45–52. doi: 10.1016/j.desal.2011.03.018
  • Hong, P. K. A., and Y. Zeng. 2002. “Degradation of Pentachlorophenol by Ozonation and Biodegradability of Intermediates.” Water Research 36:4243–54. doi: 10.1016/s0043-1354(02)00144-6
  • Jeirani, Z., and J. Soltan. 2017. “Improved Formulation of Fe-MCM-41 for Catalytic Ozonation of Aqueous Oxalic Acid.” Chemical Engineering Journal 307:756–65. doi: 10.1016/j.cej.2016.08.141
  • Khuntia, S., S. K. Majumder, and P. Ghosh. 2016. “Catalytic Ozonation of Dye in a Microbubble System: Hydroxyl Radical Contribution and Effect of Salt.” Journal of Environmental Engineering 4:2250−58. doi: 10.1016/j.jece.2016.04.005
  • Korkuna, O., R. Leboda, J. Skubiszewska-Zieba, T. Vrublevs’ka, V. M. Gun’ko, and J. Ryczkowski. 2006. “Structural and Physicochemical Properties of Natural Zeolites: Clinoptilolite and Mordenite.” Microporous Mesoporous Materials 87:243–54. doi: 10.1016/j.micromeso.2005.08.002
  • Li, X. K., W. R. Chen, Y. M. Tang, and L. S. Li. 2018. “Relationship between the Structure of Fe-MCM-48 and Its Activity in Catalytic Ozonation for Diclofenac Mineralization.” Chemosphere 206:615–21. doi: 10.1016/j.chemosphere.2018.05.066
  • Liang, Z., Q. W. Yan, and D. Chen. 2018. “Degradation of p-Nitrophenol by Nanoscale Zero-Valent Iron Produced by Microwave-Assisted Ball Milling.” Journal of Environmental Engineering 144 (3):04018003. doi:10.1061/(ASCE)EE.1943-7870.0001332.
  • Ling, W. C., Z. M. Qiang, Y. W. Shi, T. Zhang, and B. Z. Dong. 2011. “Fe(III)-loaded Activated Carbon as Catalyst to Improve Omethoate Degradation by Ozone in Water.” Journal of Molecular Catalysis A: Chemical 342–343:23–29. doi: 10.1016/j.molcata.2011.04.005
  • Liu, X. P., and R. Wang. 2017. “Effective Removal of Hydrogen Sulfide Using 4A Molecular Sieve Zeolitesynthesized from Attapulgite.” Journal of Hazardous Materials 326:157–64. doi: 10.1016/j.jhazmat.2016.12.030
  • Oulton, R., J. P. Haase, S. Kaalberg, C. T. Redmond, M. J. Nalbandian, and D. M. Cwiertny. 2015. “Hydroxyl Radical Formation during Ozonation of Multiwalled Carbon Nanotubes: Performance Optimization and Demonstration of a Reactive CNT Filter.” Environmental Science & Technology 49:3687−3697. doi: 10.1021/es505430v
  • Peixoto, A. L. C., and F. H. J. Izário. 2010. “Statistical Evaluation of Mature Landfill Leachate Treatment by Homogeneous Catalytic Ozonation.” Brazilian Journal of Chemical Engineering 27:531–37. doi: 10.1590/S0104-66322010000400004
  • Queiros, S., V. Morais, C. S. D. Rodrigues, F. J. Maldonado-Hodar, and L. M. Madeira. 2015. “Heterogeneous Fenton’s Oxidation Using Fe/ZSM-5 as Catalyst in a Continuous Stirred Tank Reactor.” Separation & Purification Technology 141:235–45. doi: 10.1016/j.seppur.2014.11.046
  • Rostamizadeh, M., A. Jafarizada, and S. Gharibian. 2018. “High Efficient Decolorization of Reactive Red 120 Azo Dye over Reusable Fe-ZSM-5 Nanocatalyst in Electro-Fenton Reaction.” Separation and Purification Technology 192:340–47. doi: 10.1016/j.seppur.2017.10.041
  • Sable, S. S., P. P. Ghute, D. Fakhrnasova, R. B. Mane, C. V. Rode, F. Medina, and S. Contreras. 2017. “Catalytic Ozonation of Clofibric Acid over Copper-Based Catalysts: In Situ ATR-IR Studies.” Applied Catalysis B: Environmental 209:523–29. doi: 10.1016/j.apcatb.2017.02.071
  • Staehelin, J., and J. Holgné. 1982. “Decomposition of Ozone in Water: Rate of Initiation by Hydroxide Ions and Hydrogen Peroxide.” Environmental Science & Technology 16:678−681. doi: 10.1021/es00104a009
  • Valdésa, H., S. Alejandrob, and C. A. Zarorb. 2012. “Natural Zeolite Reactivity Towards Ozone: The Role of Compensating Cations.” Journal of Hazardous Materials 227–228:34–40. doi: 10.1016/j.jhazmat.2012.04.067
  • Velichkova, F., H. Delmas, C. Julcour, and B. Koumanova. 2016. “Heterogeneous Fenton and Photo-Fenton Oxidation for Paracetamol Removal Using Iron Containing ZSM-5 Zeolite as Catalyst.” AIChE Journal 63:669–79. doi: 10.1002/aic.15369
  • Xu, X. W., E. C. Jiang, Z. Y. Li, and Y. Sun. 2018a. “BTX from Anisole by Hydrodeoxygenation and Transalkylation at Ambient Pressure with Zeolite Catalysts.” Fuel 221:440–46. doi: 10.1016/j.fuel.2018.01.033
  • Xu, Y. B., D. P. Liu, and X. H. Liu. 2018b. “Conversion of Syngas toward Aromatics over Hybrid Fe-Based Fischer-Tropsch Catalysts and HZSM-5 Zeolites.” Applied Catalysis A, General 552:168–83. doi: 10.1016/j.apcata.018.01.012
  • Yan, H. H., W. R. Chen, G. Z. Liao, X. K. Li, S. S. Ma, and L. S. Li. 2016. “Activity Assessment of Direct Synthesized Fe-SBA-15 for Catalytic Ozonation of Oxalic Acid.” Separation & Purification Technology 159:1–6. doi: 10.1016/j.seppur.2015.12.055
  • Yang, B., Q. Q. Yang, X. Jiang, B. Chen, C. H. Tung, and L. Z. Wu. 2017. “Tracking the FeIV(O) Intermediate and O–O Dond Formation of a Nonheme Iron Catalyst for Water Oxidation.” Chemical Communications 53:9063–66. doi: 10.1039/C7CC04814A
  • Zhou, S. Q., L. J. Bu, Z. Shi, C. Bi, and Q. H. Yi. 2016. “A Novel Advanced Oxidation Process Using Iron Electrodes and Ozone in Atrazine Degradation: Performance and Mechanism.” Chemical Engineering Journal 306:719–25. doi: 10.1016/j.cej.2016.08.001
  • Zhu, S. M., B. Z. Dong, Y. H. Yu, L. J. Bu, J. Deng, and S. Q. Zhou. 2017. “Heterogeneous Catalysis of Ozone Using Ordered Mesoporous Fe3O4 for Degradation of Atrazine.” Chemical Engineering Journal 328:527–35. doi: 10.1016/j.cej.2017.07.083

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