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Ozone: Science & Engineering
The Journal of the International Ozone Association
Volume 42, 2020 - Issue 6
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Research Article

Organic Dye Ozonation Catalyzed by Chemically Modified Montmorillonite K10– Role of Surface Basicity and Hydrophilic Character

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Pages 517-530 | Received 20 Nov 2019, Accepted 27 Jan 2020, Published online: 26 Feb 2020

References

  • Ali,I., and V.Gupta. 2006. “Advances in Water Treatment by Adsorption Technology.” Nature Protocols 1 (6):2661. doi:10.1038/nprot.2006.370.
  • Arus,V.A., S.Nousir, R.Sennour, T.C.Shiao, I.D.Nistor, R.Roy, and A.Azzouz. 2018. “Intrinsic Affinity of Acid-activated Bentonite Towards Hydrogen and Carbon Dioxide.” International Journal of Hydrogen Energy 43 (16):7964–72. doi:10.1016/j.ijhydene.2018.03.034.
  • Azzouz,A. 2012 2nd quarter. Advances in Oxidative Decomposition of Oxalic Acid in Aqueous Media. NewYork: Nova-Publishers.
  • Azzouz,A., A.Kotbi, P.Niquette, T.Sajin, A.V.Ursu, A.Rami, F.Monette, and R.Hausler. 2010. “Ozonation of Oxalic Acid Catalyzed by Ion-exchanged Montmorillonite in Moderately Acidic Media.” Reaction Kinetics, Mechanisms and Catalysis 99 (2):289–302. doi:10.1007/s11144-010-0147-5.
  • Azzouz,A., D.Mirilà, I. D.Nistor, F.Boudissa, and R.Roy, edited by. 2019. “Chapter 1: Advances in the Oxidative Degradation of Organic Pollutants: Prospects for Catalyzed Oxidation Processes Targeting Total Mineralization.” In Advances in Chemistry Research-General Chemistry, edited by J. C. Taylor, 1–63. New-York: Nova Science Publishers.
  • Azzouz,A., D.Nistor, D.Miron, A.V.Ursu, T.Sajin, F.Monette, P.Niquette, and R.Hausler. 2006. “Assessment of Acid–base Strength Distribution of Ion-exchanged Montmorillonites through NH3 and CO2-TPD Measurements.” Thermochimica Acta 449 (1):27–34. doi:10.1016/j.tca.2006.07.019.
  • Azzouz,A., A.-V.Ursu, D.Nistor, T.Sajin, E.Assaad, and R.Roy. 2009. “TPD Study of the Reversible Retention of Carbon Dioxide over Montmorillonite Intercalated with Polyol Dendrimers.” Thermochimica Acta 496 (1):45–49.
  • Banat,I.M., P.Nigam, D.Singh, and R.Marchant. 1996. “Microbial Decolorization of Textile-dyecontaining Effluents: A Review.” Bioresource Technology 58 (3):217–27. doi:10.1016/S0960-8524(96)00113-7.
  • Boudissa,F., D.Mirila, V.A.Arus, T.Terkmani, S.Semaan, M.Proulx, I.D.Nistor, R.Roy, and A.Azzouz. 2019. “Acid-treated Clay Catalysts for Organic Dye Ozonation - Thorough Mineralization through Optimum Catalyst Basicity and Hydrophilic Character.” Journal of Hazardous Materials 364:356–66. doi:10.1016/j.jhazmat.2018.09.070.
  • Choi,Y.-S., and J.-H.Cho. 1996. “Color Removal from Dye Wastewater Using Vermiculite.” Environmental Technology 17 (11):1169–80. doi:10.1080/09593331708616487.
  • Culp,S.J., and F.A.Beland. 1996. “Malachite Green: AToxicological Review.” Journal of the American College of Toxicology 15 (3):219–38. doi:10.3109/10915819609008715.
  • Diez,M. 2010. “Biological Aspects Involved in the Degradation of Organic Pollutants.” Journal of Soil Science and Plant Nutrition 10 (3):244–67. doi:10.4067/S0718-95162010000100004.
  • Doğan,M., M.Alkan, A.Türkyilmaz, and Y.Özdemir. 2004. “Kinetics and Mechanism of Removal of Methylene Blue by Adsorption onto Perlite.” Journal of Hazardous Materials 109 (1–3):141–48. doi:10.1016/j.jhazmat.2004.03.003.
  • Foster,F.J., and L.Woodbury. 1936. “The Use of Malachite Green as aFish Fungicide and Antiseptic.” The Progressive Fish-Culturist 3 (18):7–9. doi:10.1577/1548-8640(1936)318[7:TUOMGA]2.0.CO;2.
  • Garg,V.K., M.Amita, R.Kumar, and R.Gupta. 2004. “Basic Dye (Methylene Blue) Removal from Simulated Wastewater by Adsorption Using Indian Rosewood Sawdust: ATimber Industry Waste.” Dyes and Pigments 63 (3):243–50. doi:10.1016/j.dyepig.2004.03.005.
  • Gómez,M., V.Arancibia, C.Rojas, and E.Nagles. 2012. “Adsorptive Stripping Voltammetric Determination of Tartrazine and Sunset Yellow in Gelatins and Soft Drink Powder in the Presence of Cetylpyridinium Bromide.” International Journal of Electrochemical Science 7:7493–502.
  • Gulnaz,O., A.Kaya, F.Matyar, and B.Arikan. 2004. “Sorption of Basic Dyes from Aqueous Solution by Activated Sludge.” Journal of Hazardous Materials 108 (3):183–88. doi:10.1016/j.jhazmat.2004.02.012.
  • Gupta,V., P.Carrott, M.Ribeiro Carrott, and S.Suhas. 2009. “Low-cost Adsorbents: Growing Approach to Wastewater Treatment—a Review.” Critical Reviews in Environmental Science and Technology 39 (10):783–842. doi:10.1080/10643380801977610.
  • Hajiaghababaei,L., S.Abozari, A.Badiei, P.Zarabadi Poor, S.Dehghan Abkenar, M.R.Ganjali, and G.Mohammadi Ziarani. 2017. “Amino Ethyl-Functionalized SBA-15: APromising Adsorbent for Anionic and Cationic Dyes Removal.” Iranian Journal of Chemistry and Chemical Engineering (IJCCE) 36 (1):97–108.
  • Hoigné,J., and H.Bader. 1983. “Rate Constants of Reactions of Ozone with Organic and Inorganic Compounds in water—I: Non-dissociating Organic Compounds.” Water Research 17 (2):173–83. doi:10.1016/0043-1354(83)90098-2.
  • Ikhlaq,A., D.R.Brown, and B.Kasprzyk-Hordern. 2015. “Catalytic Ozonation for the Removal of Organic Contaminants in Water on Alumina.” Applied Catalysis B: Environmental 165:408–18. doi:10.1016/j.apcatb.2014.10.010.
  • Kannan,N., and M.M.Sundaram. 2001. “Kinetics and Mechanism of Removal of Methylene Blue by Adsorption on Various Carbons—a Comparative Study.” Dyes and Pigments 51 (1):25–40. doi:10.1016/S0143-7208(01)00056-0.
  • Kuźniarska-Biernacka,I., C.Pereira, A.P.Carvalho, J.Pires, and C.Freire. 2009. “K10-montmorillonite as Support for aCationic Manganese (Iii)-salen Complex.” Journal of the Brazilian Chemical Society 20 (7):1320–26.
  • Lanke,S.R., Z.S.Qureshi, A.B.Patil, D.S.Patil, and B.M.Bhanage. 2012. “Hydroarylation of Arenes with Styrenes Using Montmorillonite K-10 as an Efficient, Selective, and Recyclable Catalyst.” Green Chemistry Letters and Reviews 5 (4):621–32. doi:10.1080/17518253.2012.688880.
  • 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-Gthrough Highly Interactive Contributions of Hematite and SBA-16 - to Better Understand Azo-dye Oxidation in Nature.” Chemosphere 168:1648–57. doi:10.1016/j.chemosphere.2016.11.120.
  • Łebek,J., and W.Wardas. 1996. “Adsorption of Some Textile Dyes on Post-vanillin Lignin during Its Precipitation.” Cellulose Chemistry and Technology 30 (3–4):213–21.
  • Mirilă,D.C., M.Ş.Pîrvan, A.M.Roşu, V.Zichil, and I.D.Nistor. 2018. “Activated Adsorption on Clay of Micropollutants from Paper Printing Industry.” Scientific Study & Research. Chemistry & Chemical Engineering, Biotechnology, Food Industry 19 (1):63–72.
  • Molina,C., J.Casas, J.Zazo, and J.Rodriguez. 2006. “AComparison of Al-Fe and Zr-Fe Pillared Clays for Catalytic Wet Peroxide Oxidation.” Chemical Engineering Journal 118 (1):29–35. doi:10.1016/j.cej.2006.01.007.
  • Molu,Z.B., and K.Yurdakoç. 2010. “Preparation and Characterization of Aluminum Pillared K10 and KSF for Adsorption of Trimethoprim.” Microporous and Mesoporous Materials 127 (1):50–60. doi:10.1016/j.micromeso.2009.06.027.
  • Nawrocki,J., and L.Fijołek. 2013. “Effect of Aluminium Oxide Contaminants on the Process of Ozone Decomposition in Water.” Applied Catalysis B: Environmental 142–143:533–37. doi:10.1016/j.apcatb.2013.05.069.
  • Nousir,S., N.Platon, K.Ghomari, A.-S.Sergentu, T.C.Shiao, G.Hersant, J.-Y.Bergeron, R.Roy, and A.Azzouz. 2013. “Correlation between the Hydrophilic Character and Affinity Towards Carbon Dioxide of Montmorillonite-supported Polyalcohols.” Journal of Colloid and Interface Science 402:215–22. doi:10.1016/j.jcis.2013.03.050.
  • Platon,N., I.Siminiceanu, N.D.Miron, G.Muntianu, R.M.Zavada, G.Isopencu, and I.D.Nistor. 2011. “Preparation and Characterization of New Products Obtained by Pillaring Process.” Revista De Chimie (Bucharest) 62:799–805.
  • Rao,K. 1995. “Inhibition of DNA Synthesis in Primary Rat Hepatocyte Cultures by Malachite Green: ANew Liver Tumor Promoter.” Toxicology Letters 81 (2–3):107–13. doi:10.1016/0378-4274(95)03413-7.
  • Ren,L., G.Li, Y.C.Han, D.H.Jiang, and H.-C.Huang. 2007. “Degradation of Oxalic Acid by Coniothyrium Minitans and Its Effects on Production and Activity of β-1, 3-glucanase of This Mycoparasite.” Biological Control 43 (1):1–11. doi:10.1016/j.biocontrol.2007.06.006.
  • Robinson,T., G.McMullan, R.Marchant, and P.Nigam. 2001. “Remediation of Dyes in Textile Effluent: ACritical Review on Current Treatment Technologies with aProposed Alternative.” Bioresource Technology 77 (3):247–55. doi:10.1016/S0960-8524(00)00080-8.
  • Schoonheydt,R.A., T.Pinnavaia, G.Lagaly, and N.Gangas. 1999. “Pillared Clays and Pillared Layered Solids.” Pure and Applied Chemistry 71 (12):2367–71. doi:10.1351/pac199971122367.
  • Shahidi,D., A.Moheb, R.Abbas, S.Larouk, R.Roy, and A.Azzouz. 2015. “Total Mineralization of Sulfamethoxazole and Aromatic Pollutants through Fe2+-montmorillonite Catalyzed Ozonation.” Journal of Hazardous Materials 298:338–50. doi:10.1016/j.jhazmat.2015.05.029.
  • Shahidi,D., R.Roy, and A.Azzouz. 2014. “Total Removal of Oxalic Acid via Synergistic Parameter Interaction in Montmorillonite Catalyzed Ozonation.” Journal of Environmental Chemical Engineering 2 (1):20–30. doi:10.1016/j.jece.2013.11.020.
  • Shahidi,D., R.Roy, and A.Azzouz. 2015. “Advances in Catalytic Oxidation of Organic Pollutants– Prospects for Thorough Mineralization by Natural Clay Catalysts.” Applied Catalysis B: Environmental 174–175:277–92. doi:10.1016/j.apcatb.2015.02.042.
  • Shawabkeh,R.A., and M.F.Tutunji. 2003. “Experimental Study and Modeling of Basic Dye Sorption by Diatomaceous Clay.” Applied Clay Science 24 (1–2):111–20. doi:10.1016/S0169-1317(03)00154-6.
  • Ursu,A.V., F.Gros, D.I.Nistor, and G.Djelveh. 2008. “Characterization and Utilization of aCommercial Clay for Ammonia Adsorption.” Revista De Chimie -Bucharest- Original Edition 59:1067–72.

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