Publication Cover
Ozone: Science & Engineering
The Journal of the International Ozone Association
Volume 45, 2023 - Issue 2
1,162
Views
7
CrossRef citations to date
0
Altmetric
Review

Heterogeneous Catalytic Ozonation for Water Treatment: Preparation and Application of Catalyst

, , , , &
Pages 147-173 | Received 01 Dec 2021, Accepted 28 Feb 2022, Published online: 13 Mar 2022

References

  • Afzal, S., X. Quan, and S. Lu. 2019. “Catalytic Performance and an Insight into the Mechanism of CeO2 Nanocrystals with Different Exposed Facets in Catalytic Ozonation of P-nitrophenol.” Applied Catalysis. B, Environmental 248:526. doi: 10.1016/j.apcatb.2019.02.010.
  • Alper, A., and K. Ahmet. 2018. “Catalytic Ozonation by Iron Coated Pumice for the Degradation of Natural Organic Matters.” Catalysts 8:219. doi: 10.3390/catal8050219.
  • Asgari, G., J. Faradmal, H.Z. Nasab, and H. Ehsani. 2019. “Catalytic Ozonation of Industrial Textile Wastewater Using Modified C-doped MgO Eggshell Membrane Powder.” Advanced Powder Technology 30 (7): 1297. doi:10.1016/j.apt.2019.04.003
  • Asgari, G., A. Seidmohammadi, and J. Faradmal. 2020. “Optimization of Synthesis a New Composite of nano-MgO, CNT and Graphite as a Catalyst in Heterogeneous Catalytic Ozonation for the Treatment of Pesticide-laden Wastewater.” Journal of Water Process Engineering 33:101082. doi: 10.1016/j.jwpe.2019.101082.
  • Bai, Z., Q. Yang, and J. Wang. 2016. “Catalytic Ozonation of Sulfamethazine Using Ce0.1Fe0.9OOH as Catalyst: Mineralization and Catalytic Mechanisms.” Chemical Engineering Journal 300:169. doi: 10.1016/j.cej.2016.04.129.
  • Barbara, K.H., M. Ziółek, and J. Nawrocki. 2003. “Catalytic Ozonation and Methods of Enhancing Molecular Ozone Reactions in Water Treatment.” Applied Catalysis. B, Environmental 46 (4): 639. doi:10.1016/S0926-3373(03)00326-6
  • Bing, J., L. Li, B. Lan, G. Liao, J. Zeng, Q. Zhang, and X. Li. 2012. “Synthesis of Cerium-doped MCM-41 for Ozonation of P-chlorobenzoic Acid in Aqueous Solution.” Applied Catalysis. B, Environmental 115:16. doi: 10.1016/j.apcatb.2011.12.017.
  • Bing, J., X. Wang, B. Lan, G. Liao, Q. Zhang, and L. Li. 2013. “Characterization and Reactivity of Cerium Loaded MCM-41 for P-chlorobenzoic Acid Mineralization with Ozone.” Separation and Purification Technology 118:479. doi: 10.1016/j.seppur.2013.07.048.
  • Bulanin, K.M., J.C. Lavalley, and A.A. Tsyganenko. 1995. “Infrared Study of Ozone Adsorption on TiO2 (Anatase).” Journal of Physical Chemistry 99 (25): 10294. doi:10.1021/j100025a034
  • Cai, C., X. Duan, X. Xie, S. Kang, C. Liao, J. Dong, Y. Liu, S. Xiang, and D D. Dionysiou. 2020. “Efficient Degradation of Clofibric Acid by Heterogeneous Catalytic Ozonation Using CoFe2O4 Catalyst in Water.” Journal of Hazardous Materials 410:124604. doi: 10.1016/j.jhazmat.2020.124604.
  • Chen, H., C. Fang, X. Gao, G. Jiang, X. Wang, S. Sun, W. Wu, and Z. Wu. 2021. “Sintering- and Oxidation-resistant Ultrasmall Cu(I/II) Oxides Supported on Defect-rich Mesoporous Alumina Microspheres Boosting Catalytic Ozonation.” Journal of Colloid and Interface Science 581:964. doi: 10.1016/j.jcis.2020.09.002.
  • Chen, H., and J. Wang. 2020. “Catalytic Ozonation for Degradation of Sulfamethazine Using NiCo2O4 as Catalyst.” Chemosphere 268:128840. doi: 10.1016/j.chemosphere.2020.128840.
  • Chen, J., W.J. Wen, L.J. Kong, S.H. Tian, F.C. Ding, and Y. Xiong. 2014. “Magnetically Separable and Durable MnFe2O4for Efficient Catalytic Ozonation of Organic Pollutants.” Industrial & Engineering Chemistry Research 53 (15): 6297. doi:10.1021/ie403914r
  • Chen, C., X. Yan, B.A. Yoza, T. Zhou, Y. Li, Y. Zhan, Q. Wang, and Q. Li. 2018. “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. doi: 10.1016/j.scitotenv.2017.09.019.
  • Criegee, R. 1975. “Mechanism of Ozonolysis.” Angewandte Chemie International Edition in English 14 (11): 745. doi:10.1002/anie.197507451
  • Cui, M., S. Jia, P. Yuan, and Z. He. 2020. “Catalytic Ozonation of 2, 2′-methylenebis (4-methyl-6-tert-butylphenol) over nano-Fe3O4 @cow Dung Ash Composites: Optimization, Toxicity, and Degradation Mechanisms.” Environmental Pollution 265:114597. doi: 10.1016/j.envpol.2020.114597.
  • Dai, Q., J. Wang, J. Yu, J. Chen, and J. Chen. 2014. “Catalytic Ozonation for the Degradation of Acetylsalicylic Acid in Aqueous Solution by Magnetic CeO2 Nanometer Catalyst Particles.” Applied Catalysis. B, Environmental 144:686. doi: 10.1016/j.apcatb.2013.05.072.
  • Deng, F., S. Qiu, C. Chen, X. Ding, and F. Ma. 2015. “Heterogeneous Catalytic Ozonation of Refinery Wastewater over Alumina-supported Mn and Cu Oxides Catalyst.” Ozone Science & Engineering 8(4):103967 .
  • Feng, C., and P. Diao. 2021. “Nickel Foam Supported NiFe2O4-NiO Hybrid: A Novel 3D Porous Catalyst for Efficient Heterogeneous Catalytic Ozonation of Azo Dye and Nitrobenzene.” Applied Surface Science 541:148683. doi: 10.1016/j.apsusc.2020.148683.
  • Gao, G., J. Kang, J. Shen, Z. Chen, and W. Chu. 2017a. “Heterogeneous Catalytic Ozonation of Sulfamethoxazole in Aqueous Solution over Composite Iron–Manganese Silicate Oxide.” Ozone: Science & Engineering 39 (1): 24–32. doi:10.1080/01919512.2016.1237280
  • Gao, G., J. Shen, W. Chu, Z. Chen, and L. Yuan. 2017b. “Mechanism of Enhanced Diclofenac Mineralization by Catalytic Ozonation over Iron Silicate-loaded Pumice.” Separation and Purification Technology 173:55. doi: 10.1016/j.seppur.2016.09.016.
  • Ghuge, S P., and A K. Saroha. 2018. “Ozonation of Reactive Orange 4 Dye Aqueous Solution Using Mesoporous Cu/SBA-15 Catalytic Material.” Journal of Water Process Engineering 23:217. doi: 10.1016/j.jwpe.2018.04.009.
  • Gounden, A.N., S.B. Jonnalagadda, and S. Singh. 2019. “Debromination of 2,4,6-Tribromophenol and Bromate Ion Minimization in Water by Catalytic Ozonation.” Journal of Water Process Engineering 31:100893. doi: 10.1016/j.jwpe.2019.100893.
  • Guan, Z., Y. Guo, S. Li, S. Feng, J. Liang, X. Ou, J. Ren, S. Sun, and J. Liang. 2020. “Decomplexation of Heterogeneous Catalytic Ozonation Assisted with Heavy Metal Chelation for Advanced Treatment of Coordination Complexes of Ni.” Science of the Total Environment 732:139223. doi: 10.1016/j.scitotenv.2020.139223.
  • Gupta, V.K., A.S. Fakhri, Agarwal, S. Agarwal, A K. Bharti, M. Naji, and A G. Tkachev. 2018. “Preparation and Characterization of TiO 2 Nanofibers by Hydrothermal Method for Removal of Benzodiazepines (Diazepam) from Liquids as Catalytic Ozonation and Adsorption Processes.” Journal of Molecular Liquids 249:1033–38. doi: 10.1016/j.molliq.2017.11.144.
  • Gupta, V.K., and T.A. Saleh. 2013. “Sorption of Pollutants by Porous Carbon, Carbon Nanotubes and Fullerene- an Overview.” Environmental Science and Pollution Research 20 (5): 2828. doi:10.1007/s11356-013-1524-1
  • Hai, C., and J. Wang. 2019. “Catalytic Ozonation of Sulfamethoxazole over Fe3O4/Co3O4 Composites.” Chemosphere 234:14. doi: 10.1016/j.chemosphere.2019.06.014.
  • Hassani, K.E., D.M. Kalnina, Turks, M. Turks, B H. Beakou, and A. Anouar. 2019. “Enhanced Degradation of an Azo Dye by Catalytic Ozonation over Ni-containing Layered Double Hydroxide Nanocatalyst.” Separation and Purification Technology 210:764. doi: 10.1016/j.seppur.2018.08.074.
  • Hou, S., S. Jia, and J. Jia. 2020. “Fe3O4 Nanoparticles Loading on Cow Dung Based Activated Carbon as an Efficient Catalyst for Catalytic Microbubble Ozonation of Biologically Pretreated Coal Gasification Wastewater.” Journal of Environmental Management 267:110615. doi: 10.1016/j.jenvman.2020.110615.
  • Huang, Y., C. Cui, D. Zhang, L. Li, and D. Pan. 2015. “Heterogeneous Catalytic Ozonation of Dibutyl Phthalate in Aqueous Solution in the Presence of Iron-loaded Activated Carbon.” Chemosphere 119:295. doi: 10.1016/j.chemosphere.2014.06.060.
  • Huang, R., P. Lu, Z. Pan, D. Deng, Y. Shu, and Q. Zhang. 2011. “Catalytic Activity of Fe/SBA-15 for Ozonation of Dimethyl Phthalate in Aqueous Solution.” Applied Catalysis. B, Environmental 106:264.
  • Huang, Y., Y. Sun, Z. Xu, M. Luo, C. Zhu, and L. Liang. 2017. “Removal of Aqueous Oxalic Acid by Heterogeneous Catalytic Ozonation with MnOx/sewage Sludge-derived Activated Carbon as Catalysts.” Science of the Total Environment 575:50. doi: 10.1016/j.scitotenv.2016.10.026.
  • Inchaurrondo, N., C.D. Luca, G. Žerjav, J.M. Grau, A. Pintar, and P. Haurea. 2021. “Catalytic Ozonation of an Azo-dye Using a Natural Aluminosilicate.” Catalysis Today 361:24. doi: 10.1016/j.cattod.2019.12.019.
  • Jeirani, Z., Soltan, and J. Soltan. 2017. “Improved Formulation of Fe-MCM-41 for Catalytic Ozonation of Aqueous Oxalic Acid.” Chemical Engineering Journal 307:756. doi: 10.1016/j.cej.2016.08.141.
  • Kruanak, K., and C. Jarusutthirak. 2018. “Degradation of 2,4,6-trichlorophenol in Synthetic Wastewater by Catalytic Ozonation Using Alumina Supported Nickel Oxides.” Journal of Environmental Chemical Engineering 7 (1): 102825. doi:10.1016/j.jece.2018.102825
  • Lan, B., R. Huang, L. Li, H. Yan, G. Liao, X. Wang, and Q. Zhang. 2013. “Catalytic Ozonation of P-chlorobenzoic Acid in Aqueous Solution Using Fe-MCM-41 as Catalyst.” Chemical Engineering Journal 219:346. doi: 10.1016/j.cej.2012.12.083.
  • Larouk, S., R. Ouargli, D. Shahidi, L. Olhund, T C. Shiao, N. Chergui, T. Sehili, R. Roy, and A. Azzouz. 2017. “Catalytic Ozonation of Orange-G through Highly Interactive Contributions of Hematite and SBA-16 -to Better Understand Azo-dye Oxidation in Nature.” Chemosphere 168:1648. doi: 10.1016/j.chemosphere.2016.11.120.
  • Li, C., F. Jiang, D. Sun, and B. Qiu. 2017. “Catalytic Ozonation for Advanced Treatment of Incineration Leachate Using MnO2-Co3O4)/AC as a Catalyst.” Chemical Engineering Journal 325:624. doi: 10.1016/j.cej.2017.05.124.
  • Li, X., J. Ma, and H. He. 2020a. “Recent Advances in Catalytic Decomposition of Ozone.” Journal of Environmental Sciences 94:14. doi: 10.1016/j.jes.2020.03.058.
  • Li, J., W. Song, Z. Yu, and Q. Li. 2020b. “Preparation of the Mn-Fe-Ce/γ-Al2O3 Ternary Catalyst and Its Catalytic Performance in Ozone Treatment of Dairy Farming Wastewater.” Arabian Journal of Chemistry 13 (2): 3724. doi:10.1016/j.arabjc.2020.01.006
  • Li, Y., L. Wu, Y. Wang, P. Ke, B. Guan, and B. Guan. 2020c. “γ-Al2O3 Doped with Cerium to Enhance Electron Transfer in Catalytic Ozonation of Phenol.” Journal of Water Process Engineering 36:101313. doi: 10.1016/j.jwpe.2020.101313.
  • Liotta, L.F., M. Gruttadauriab, G.D. Carlo, G. Perrini, and V. Librando. 2009. “Heterogeneous Catalytic Degradation of Phenolic Substrates: Catalysts Activity.” Journal of Hazardous Materials 162 (2–3): 588. doi:10.1016/j.jhazmat.2008.05.115
  • Liu, Y., Z. Chen, W. Gong, Y. Dou, S. Wang, and W. Wang. 2017a. “Structural Characterizations of Zinc-copper Silicate Polymer (ZCSP) and Its Mechanisms of Ozonation for Removal of P-chloronitrobenzene in Aqueous Solution.” Separation and Purification Technology 172:251. doi: 10.1016/j.seppur.2016.08.022.
  • Liu, Y., H. He, L. Wu, and Y. Zhang. 2016. “Heterogeneous Catalytic Ozonation Reaction Mechanism.” Chemical Progress 28:1112.
  • Liu, J., J. Li, S. He, S. Lei, X. Yuan, and D. Xia. 2020. “Heterogeneous Catalytic Ozonation of Oxalic Acid with an Effective Catalyst Based on Copper Oxide Modified g-C3N4.” Separation and Purification Technology 234:116120. doi: 10.1016/j.seppur.2019.116120.
  • Liu, P., Y. Ren, W. Ma, J. Ma, and Y. Du. 2018a. “Degradation of Shale Gas Produced Water by Magnetic Porous MFe2O4 (M = Cu, Ni, Co and Zn) Heterogeneous Catalyzed Ozone.” Chemical Engineering Journal 345:98. doi: 10.1016/j.cej.2018.03.145.
  • Liu, Z., J. Tu, Q. Wang, Y. Cui, L. Zhang, X. Wu, B. Zhang, and J. Ma. 2018b. “Catalytic Ozonation of Diethyl Phthalate in Aqueous Solution Using Graphite Supported Zinc Oxide.” Separation and Purification Technology 200:51. doi: 10.1016/j.seppur.2018.02.026.
  • Liu, Y., S. Wang, W. Gong, Z. Chen, H. Liu, Y. Bu, and Y. Zhang. 2017b. “Heterogeneous Catalytic Ozonation of P-chloronitrobenzene (Pcnb) in Water with Iron Silicate Doped Hydroxylation Iron as Catalyst.” Catalysis Communications 89:81. doi: 10.1016/j.catcom.2016.10.022.
  • Lu, L., Y. Peng, and C. Chang. 2018. “Catalytic Ozonation by Palladium–manganese for the Decomposition of Natural Organic Matter.” Separation and Purification Technology 194:396. doi: 10.1016/j.seppur.2017.10.074.
  • Lu, J., J. Sun, X. Chen, S. Tian, D. Chen, C. He, and Y. Xiong. 2019. “Efficient Mineralization of Aqueous Antibiotics by Simultaneous Catalytic Ozonation and Photocatalysis Using MgMnO3 as a Bifunctional Catalyst.” Chemical Engineering Journal 358:48. doi: 10.1016/j.cej.2018.08.198.
  • Merényi, G., J. Lind, S. Naumov, and C. Von sonntag. 2010. “The Reaction of Ozone with the Hydroxide Ion: Mechanistic Considerations Based on Thermokinetic and Quantum Chemical Calculations and the Role of HO 4 − in Superoxide Dismutation.” Chemistry - A European Journal 16 (4): 1372. doi:10.1002/chem.200802539
  • Messele, S.A., P. Chelme-Ayala, and M.G. El-Din. 2020. “Catalytic Ozonation of Naphthenic Acids in the Presence of Carbon-based Metal-free Catalysts: Performance and Kinetic Study.” Catalysis Today 361:102. doi: 10.1016/j.cattod.2020.01.042.
  • Mohamadi, L., E. Bazrafshan, A. Rahdar, G. Labuto, and A.R. Kamali. 2020. “Nanostructured MgO-enhanced Catalytic Ozonation of Petrochemical Wastewater.” Boletín de la Sociedad Española de Cerámica y Vidrio 06:002.
  • Nasseh, N., F.S. Arghavan, S. Rodriguez-Couto, A.H. Panahi, M. Esmati, and T J. A-Musawi. 2020. “Preparation of Activated carbon@ZnO Composite and Its Application as a Novel Catalyst in Catalytic Ozonation Process for Metronidazole Degradation.” Advanced Powder Technology 31 (2): 875. doi:10.1016/j.apt.2019.12.006
  • Nawrocki, J. 2013. “Catalytic Ozonation in Water: Controversies and Questions. Discussion Paper.” Applied Catalysis. B, Environmental 142-143:465. doi: 10.1016/j.apcatb.2013.05.061.
  • Nawrocki, J., and H.B. Kasprzyk. 2010. “The Efficiency and Mechanisms of Catalytic Ozonation.” Applied Catalysis. B, Environmental 99 (1–2): 27. doi:10.1016/j.apcatb.2010.06.033
  • Oputu, O., M. Chowdhury, K. Nyamayaro, O. Fatoki, and V. Fester. 2015. “Catalytic Activities of Ultra-small β-FeOOH Nanorods in Ozonation of 4-chlorophenol.” Journal of Environmental Sciences 35:83. doi: 10.1016/j.jes.2015.02.013.
  • Orge, C.A., J.J.M. Órfão, and M.F.R. Pereira. 2012. “Composites of Manganese Oxide with Carbon Materials as Catalysts for the Ozonation of Oxalic Acid.” Journal of Hazardous Materials 213-214:133. doi: 10.1016/j.jhazmat.2012.01.066.
  • Peng, J., L. Lai, X. Jiang, W. Jiang, and L. Lai. 2018. “Catalytic Ozonation of Succinic Acid in Aqueous Solution Using the Catalyst of Ni/Al2O3 Prepared by Electroless Plating-calcination Method.” Separation and Purification Technology 195:138. doi: 10.1016/j.seppur.2017.12.005.
  • Pereira, C., M.R. Nava, J.B. Walter, C.E. Scherer, A.D.K. Dalfovo, and M. Barreto-Rodrigues. 2021. “Application of Zero Valent Iron (ZVI) Immobilized in Ca-Alginate Beads for C.I. Reactive Red 195 Catalytic Degradation in an Air Lift Reactor Operated with Ozone.” Journal of Hazardous Materials 401:123275. doi: 10.1016/j.jhazmat.2020.123275.
  • Petre, A.L, J.B. Carbajo, R Rosal, E Garcia-Calvo, and J.A. Perdigón-Melón. 2013. “CuO/SBA-15 Catalyst for the Catalytic Ozonation of Mesoxalic and Oxalic Acids. Water Matrix Effects.” Chemical Engineering Journal 225:164. doi: 10.1016/j.cej.2013.03.071.
  • Qi, F., W. Chu, and B. Xu. 2015. “Ozonation of Phenacetin in Associated with a Magnetic Catalyst CuFe2O4: The Reaction and Transformation.” Chemical Engineering Journal 262:552. doi: 10.1016/j.cej.2014.09.068.
  • Qin, H., H. Chen, X. Zhang, G. Yang, and Y. Feng. 2014. “Efficient Degradation of Fulvic Acids in Water by Catalytic Ozonation with CeO 2 /AC.” Journal of Chemical Technology and Biotechnology 89 (9): 1402. doi:10.1002/jctb.4222
  • Rashidashmag, H.F., Y. Doekhi-Bennani, M. Tizghadam-Ghazani, J P. van der Hoek, A. Mashayekh-Salehi, Bas S.G.J. Heijman, and K. Yaghmaeian. 2021. “Synthesis and Characterization of SnO2 Crystalline Nanoparticles: A New Approach for Enhancing the Catalytic Ozonation of Acetaminophen.” Journal of Hazardous Materials 404:124154. doi: 10.1016/j.jhazmat.2020.124154.
  • Rekhate, C.V., and J.K. Srivastava. 2020. “Recent Advances in Ozone-based Advanced Oxidation Processes for Treatment of Wastewater- A Review.” Chemical Engineering Journal Advances 3:100031. doi: 10.1016/j.ceja.2020.100031.
  • Ren, Y., Q. Dong, J. Feng, J. Ma, Q. Wen, and M. Zhang. 2012. “Magnetic Porous Ferrospinel NiFe2O4: A Novel Ozonation Catalyst with Strong Catalytic Property for Degradation of Di-n-butyl Phthalate and Convenient Separation from Water.” Journal of Colloid and Interface Science 382 (1): 90. doi:10.1016/j.jcis.2012.05.053
  • Rodríguez, J.L., M.A. Valenzuela, T. Poznyak, L. Lartundo, and I Chairez. 2013. “Reactivity of NiO for 2,4-D Degradation with Ozone: XPS Studies.” Journal of Hazardous Materials 262:472. doi: 10.1016/j.jhazmat.2013.08.041.
  • Rosal, R., S. Gonzalo, J. Santiago, A. Rodríguez, J. Perdigón-Melón, and E. García-Calvo. 2011. “Kinetics and Mechanism of Catalytic Ozonation of Aqueous Pollutants on Metal Oxide Catalysts.” Ozone: Science & Engineering 33 (6): 434–40. doi:10.1080/01919512.2011.614917
  • Sani, O.N., A. A. Navaei, M. Yazdani, and M. Taghavi. 2019. “Catalytic Ozonation of Ciprofloxacin Using γ-Al2O3 Nanoparticles in Synthetic and Real Wastewaters.” Journal of Water Process Engineering 32:100894. doi: 10.1016/j.jwpe.2019.100894.
  • Shen, T., W.T Su, Q. Yang, J. Ni, and S. 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 279:119346. doi: 10.1016/j.apcatb.2020.119346.
  • Shen, T., X. Zhang, K. Lin, and S. Tong. 2019. “Solid Base Mg-doped ZnO for Heterogeneous Catalytic Ozonation of Isoniazid: Performance and Mechanism.” Science of the Total Environment 703:134983. doi: 10.1016/j.scitotenv.2019.134983.
  • Shokri, A., and K. Mahanpoor. 2017. “Degradation of Ortho-toluidine from Aqueous Solution by the TiO2/O3 Process.” International Journal of Industrial Chemistry 8 (1): 101. doi:10.1007/s40090-016-0110-z
  • Song, C., B. Guo, X. Sun, S-G. Wang, and Y-T. Li. 2019. “Enrichment and Degradation of Tetracycline Using Three-dimensional graphene/MnO2 Composites.” Chemical Engineering Journal 358:1139. doi: 10.1016/j.cej.2018.10.119.
  • Sun, Q., Y. Wang, L. Li, J. Bing, Y. Wang, and H. Yan. 2015. “Mechanism for Enhanced Degradation of Clofibric Acid in Aqueous by Catalytic Ozonation over MnO <sub>/sba-15.” Journal of Hazardous Materials 286:276. doi: 10.1016/j.jhazmat.2014.12.050.
  • Teng, Y., K. Yao, W. Song, Y. Sun, H. Liu, Z. Liu, and Y. Xu. 2019. “Preparation and Characterization of Cu-Mn-Ce@γ-Al2O3 to Catalyze Ozonation in Coal Chemical Wastewater-biotreated Effluent.” International Journal of Environmental Research and Public Health 16 (8): 1439. doi:10.3390/ijerph16081439
  • Tian, S., J. Qi, Y. Wang, Y. Liu, J. Wang, and J. Ma. 2021. “Heterogeneous Catalytic Ozonation of Atrazine with Mn-loaded and Fe-loaded Biochar.” Water Research 193:116860. doi: 10.1016/j.watres.2021.116860.
  • Tong, S., R. Shi, H. Zhang, and C. Ma. 2011. “Kinetics of <sub>fe3o4–coo/al2o3 Catalytic Ozonation of the Herbicide 2-(2,4-dichlorophenoxy) Propionic Acid.” Journal of Hazardous Materials 185 (1): 162. doi:10.1016/j.jhazmat.2010.09.013
  • Wang, J., and Z. Bai. 2017. “Fe-based Catalysts for Heterogeneous Catalytic Ozonation of Emerging Contaminants in Water and Wastewater.” Chemical Engineering Journal 312:79 . doi: 10.1016/j.cej.2016.11.118.
  • Wang, Y., H. Cao, C. Chen, Y. Xie, H. Sun, X. Duan, and S. Wang. 2019a. “Metal-free Catalytic Ozonation on Surface-engineered Graphene: Microwave Reduction and Heteroatom Doping.” Chemical Engineering Journal 355:118. doi: 10.1016/j.cej.2018.08.134.
  • Wang, J., and H. Chen. 2020. “Catalytic Ozonation for Water and Wastewater Treatment: Recent Advances and Perspective.” The Science of the Total Environment 704:135249.1. doi: 10.1016/j.scitotenv.2019.135249.
  • Wang, Y., L. Chen, C. Chen, J. Xi, H. Cao, X. Duan, Y. Xie, W. Song, and S. Wang. 2019b. “Occurrence of Both Hydroxyl Radical and Surface Oxidation Pathways in N-doped Layered Nanocarbons for Aqueous Catalytic Ozonation.” Applied Catalysis. B, Environmental 254:283. doi: 10.1016/j.apcatb.2019.05.008.
  • Wang, J., S. Chen, X. Quan, and H. Yu. 2018a. “Fluorine-doped Carbon Nanotubes as an Efficient Metal-free Catalyst for Destruction of Organic Pollutants in Catalytic Ozonation.” Chemosphere 190:143. doi: 10.1016/j.chemosphere.2017.09.119.
  • Wang, Z., H. Ma, C. Zhang, J. Feng, S. Pu, Y. Ren, and Y. Wang. 2018b. “Enhanced Catalytic Ozonation Treatment of Dibutyl Phthalate Enabled by Porous Magnetic Ag-doped Ferrospinel MnFe2O4 Materials: Performance and Mechanism.” Chemical Engineering Journal 354:42. doi: 10.1016/j.cej.2018.07.177.
  • Wang, J., X. Quan, S. Chen, H. Yu, and G. Liu. 2019c. “Enhanced Catalytic Ozonation by Highly Dispersed CeO2 on Carbon Nanotubes for Mineralization of Organic Pollutants.” Journal of Hazardous Materials 368:621. doi: 10.1016/j.jhazmat.2019.01.095.
  • Wei, X., S. Shao, X. Ding, W. Jiao, and Y. Liu. 2020. “Degradation of Phenol with Heterogeneous Catalytic Ozonation Enhanced by High Gravity Technology.” Journal of Cleaner Production 248:119179. doi: 10.1016/j.jclepro.2019.119179.
  • Xu, J., Y. Li, M. Qian, J. Pan, J. Ding, and B. Guan. 2019a. “Amino-functionalized Synthesis of MnO2-NH2-GO for Catalytic Ozonation of Cephalexin.” Applied Catalysis. B, Environmental 256:117797. doi: 10.1016/j.apcatb.2019.117797.
  • Xu, Z., M. Xie, Y. Ben, J. Shen, F. Qi, and Z. Chen. 2019b. “Efficiency and Mechanism of Atenolol Decomposition in Co-FeOOH Catalytic Ozonation.” Journal of Hazardous Materials 365:146. doi: 10.1016/j.jhazmat.2018.11.006.
  • Yan, H., W. Chen, G. Liao, X. Li, S. Ma, and L. Li. 2016. “Activity Assessment of Direct Synthesized Fe-SBA-15 for Catalytic Ozonation of Oxalic Acid.” Separation and Purification Technology 159:1. doi: 10.1016/j.seppur.2015.12.055.
  • Yan, P., J. Shen, L. Yuan, J. Kang, B. Wang, S. Zhao, and Z. Chen. 2019. “Catalytic Ozonation by Si-doped α-Fe2O3 for the Removal of Nitrobenzene in Aqueous Solution.” Separation and Purification Technology 228:115766. doi: 10.1016/j.seppur.2019.115766.
  • Yu, Y., H. An, Y. Zhao, J. Feng, T. Wei, S. Yu, Y. Ren, and Yu Chen. 2021. “MnFe2O4 Decorated Graphene as a Heterogeneous Catalyst for Efficient Degradation of Di-n-butyl Phthalate Using Catalytic Ozonation in Water.” Separation and Purification Technology 259:118097. doi: 10.1016/j.seppur.2020.118097.
  • Zhang, H., Y. He, L. Lai, G. Yao, and B. Lai. 2019a. “Catalytic Ozonation of Bisphenol A in Aqueous Solution by Fe3O4–MnO2 Magnetic Composites: Performance, Transformation Pathways and Mechanism.” Separation and Purification Technology 245:116449. doi: 10.1016/j.seppur.2019.116449.
  • Zhang, T., W. Li, and J-P. Croué. 2011. “Catalytic Ozonation of Oxalate with a Cerium Supported Palladium Oxide: An Efficient Degradation Not Relying on Hydroxyl Radical Oxidation.” Environmental Science & Technology 45 (21): 9339. doi:10.1021/es202209j
  • Zhang, F., J. Liao, J. Lu, and J. Niu. 2021. “Extensive Incorporation of Carboxyl Groups into g-C3N4 by Integrated Oxygen Doping and HNO3 Oxidation for Enhanced Catalytic Ozonation of Para-chlorobenzoic Acid and Atrazine.” Separation and Purification Technology 256:117806. doi: 10.1016/j.seppur.2020.117806.
  • Zhang, J., L. Liu, H. Shi, X. Li, and X. Zhang. 2020a. “Decomposition of Dibutyl Phthalate in Goat Whey Solution by Different Catalytic Ozonation Treatments: Performance and Efficiency.” Environmental Technology & Innovation 20:101165. doi: 10.1016/j.eti.2020.101165.
  • Zhang, S., D. Wang, X. Quan, L. Zhou, and X. Zhang. 2013. “Multi-walled Carbon Nanotubes Immobilized on Zero-valent Iron Plates (Fe0-cnts) for Catalytic Ozonation of Methylene Blue as Model Compound in a Bubbling Reactor.” Separation and Purification Technology 116:351. doi: 10.1016/j.seppur.2013.05.053.
  • Zhang, J., Z. Xiong, J. Wei, Y. Song, Y. Ren, D. Xu, and Bo Lai. 2019b. “Catalytic Ozonation of Penicillin G Using Cerium-loaded Natural Zeolite (CZ): Efficacy, Mechanisms, Pathways and Toxicity Assessment.” Chemical Engineering Journal 383:123144. doi: 10.1016/j.cej.2019.123144.
  • Zhang, J., T. Zhuang, S. Liu, G. Zhang, and K. Huo. 2020b. “Catalytic Ozonation of Phenol Enhanced by Mesoporous MnO2 Prepared through Nanocasting Method with SBA-15 as Template.” Journal of Environmental Chemical Engineering 8 (4): 103967. doi:10.1016/j.jece.2020.103967
  • Zhao, J., J Cao, Y. Zhao, T. Zhang, D. Zheng, and C. Li. 2020. “Catalytic Ozonation Treatment of Papermaking Wastewater by Ag-doped NiFe2O4: Performance and Mechanism.” Journal of Environmental Sciences 97:75. doi: 10.1016/j.jes.2020.04.014.
  • Zhao, H., Y. Dong, G. Wang, P. Jiang, J. Zhang, L. Wu, and K. Li. 2013. “Novel Magnetically Separable Nanomaterials for Heterogeneous Catalytic Ozonation of Phenol Pollutant: NiFe2O4 and Their Performances.” Chemical Engineering Journal 219:295. doi: 10.1016/j.cej.2013.01.019.
  • Zhu, H., W. Ma, H. Han, Y. Han, and W. Ma. 2017. “Catalytic Ozonation of Quinoline Using nano-MgO: Efficacy, Pathways, Mechanisms and Its Application to Real Biologically Pretreated Coal Gasification Wastewater.” Chemical Engineering Journal 327:91. doi: 10.1016/j.cej.2017.06.025.
  • Zuo, X., S. Ma, Q. Wu, J. Xiong, J. He, C. Ma, and Z. Chen. 2021. “Nanometer CeO2 Doped High Silica ZSM-5 Heterogeneous Catalytic Ozonation of Sulfamethoxazole in Water.” Journal of Hazardous Materials 411:125072. doi: 10.1016/j.jhazmat.2021.125072.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.