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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 51, 2016 - Issue 1
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ARTICLES

Homogeneous and heterogeneous degradation of caffeic acid using photocatalysis driven by UVA and solar light

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Pages 78-85 | Received 11 May 2015, Published online: 07 Nov 2015

References

  • Ioannou, L.A.; Puma, G.L.; Fatta-Kassinos, D. Treatment of winery wastewater by physicochemical, biological and advanced processes: A review. J. Haz. Mat. 2015, 286, 343–368.
  • Santos, C.; Lucas, M.; Dias, A.A.; Bezerra, R.M.F.; Peres, J.A.; Sampaio, A. Winery wastewater treatment by combination of Cryptococcus laurentii and Fenton's reagent. Chemosphere 2014, 117, 53–58.
  • Domínguez, C.M.; Quintanilla, A.; Casas, J.A.; Rodriguez, J.J. Treatment of real winery wastewater by wet oxidation at mild temperature. Sep. Purif. Technol. 2014, 129, 121–128.
  • Ioannou, L.A.; Fatta-Kassinos, D. Solar photo-Fenton oxidation against the bioresistant fractions of winery wastewater. J. Environ. Chem. Eng. 2013, 1, 703–712.
  • Petruccioli, M.; Duarte, J.; Eusebio, A.; Federici, F. Aerobic treatment of winery wastewater using a jet-loop activated sludge reactor. Proc. Biochem. 2002, 37, 821–829.
  • Da Ros, C.; Cavinato, C.; Pavan, P.; Bolzonella, D. Winery waste recycling through anaerobic co-digestion with waste activated sludge. Waste Manage. 2014, 34, 2028–2035.
  • Souza, B.S.; Moreira, F.C.; Dezotti, M.W.C.; Vilar, V.J.P.; Boaventura, R.A.R. Application of biological oxidation and solar driven advanced oxidation processes to remediation of winery wastewater. Catal. Today 2013, 209, 201–208.
  • Soto, M.L.; Moure, A.; Dominguez, H.; Parajo, J.C. Recovery, concentration and purification of phenolic compounds by adsorption: A review. J. Food Eng. 2011, 106, 1–27.
  • Mudnic, I.; Modun, D.; Rastija, V.; Vukovic, J.; Brizic, I.; Katalinic, V.; Kozina, B.; Medic-Saric, M.; Boban, M. Antioxidative and vasodilatory effects of phenolic acids in wine. Food Chem. 2010, 119, 1205–1210.
  • Vaquero, M.J.R.; Alberto, M.R.; de Nadra, M.C.M. Antibacterial effect of phenolic compounds from different wines. Food Control. 2007, 18, 93–101.
  • Melamane, X.; Strong, P.; Burgess, J. Treatment of wine distillery wastewater: A review with emphasis on anaerobic membrane reactor. S. Afr. J. Enol. Vitic. 2007, 28, 25–36.
  • Ioannou, L.; Michael, C.; Kyriakouc, S.; Fatta-Kassinos, D. Solar Fenton: from pilot to industrial scale application for polishing winery wastewater pretreated by MBR. J. Chem. Technol. Biotechnol. 2014, 89, 1067–1076.
  • Lucas, M.S.; Peres, J.A.; Puma, G.L. Treatment of winery wastewater by ozone-based advanced oxidation processes (O3, O3/UV and O3/UV/H2O2) in a pilot-scale bubble column reactor and process economics. Sep. Purif. Technol. 2010, 72, 235–241.
  • Colllins, G.; Foy, C.; McHugh, S.; Mahony, T.; O´Flaherty, V. Anaerobic biological treatment of phenolic wastewater at 15–18°C. Water Res. 2005, 39, 1614–1620.
  • Juretic, D.; Kusic, H.; Dionysiou, D.D.; Bozic, A.L. Environmental aspects of photooxidative treatment of phenolic compound. J. Hazard. Mater. 2013, 262, 377–386.
  • Herrmann, J. Heterogeneous photocatalysis: fundamentals and applications to the removal of various types of aqueous pollutants. Catal. Today 1999, 53, 115–129.
  • Fernández, J.; Kiwi, J.; Lizama, C.; Freer, J.; Baeza, J.; Mansilla, H.D. Factorial experimental design of Orange II photocatalytic discolouration. J. Photochem. Photobiol. A. 2002. 151, 213–219.
  • Palominos, R.A.; Mondaca, M.A.; Giraldo, A.; Peñuela, G.; Pérez-Moya, M. Photocatalytic oxidation of the antibiotic tetracycline on TiO2 and ZnO suspensions. Catal. Today 2009, 114, 100–105.
  • Qamar, M.; Muneer, M. A comparative photocatalytic activity of titanium dioxide and zinc oxide by investigating the degradation of vanillin. Desalination 2009, 249, 535–540.
  • Ahmed, S.; Rasul, M.G.; Brown, R.; Hashib, M.A. Influence of parameters on the heterogeneous photocatalytic degradation of pesticides and phenolic contaminants in wastewater: A short review. J. Environ. Manage. 2011, 92, 311–330.
  • Ahmed, S.; Rasul, M.G.; Martens, W.N.; Brown, R.; Hashib, M.A. Heterogeneous photocatalytic degradation of phenols in wastewater: A review on current status and developments. Desalination 2010, 261, 3–18.
  • Gaya, U.I.; Abdullaha, A.H. Heterogeneous photocatalytic degradation of organic contaminants over titanium dioxide: A review of fundamentals, progress and problems. J. Photochem. Photobiol. C. 2008, 9, 1–12.
  • Salgado, P.; Melin, V.; Contreras, D.; Moreno, Y.; Mansilla, H.D. Fenton Reaction driven by iron ligands. J. Chil. Chem. Soc. 2013, 58, 2096–2101.
  • Benitez, J.; Real, F.; Acero, J.; Garcia, C.; Llanos, E. Kinetics of phenylurea herbicides oxidation by Fenton and photo-Fenton processes. J. Chem. Technol. Biot. 2007, 82, 65–73.
  • Giroto, J.; Teixeira, A.; Nascimento, C.; Guardani, R. Degradation of poly(ethyleneglycol) in aqueous solution by photo-Fenton and H2O2/UV processes. Ind. Eng. Chem. Res. 2010, 49, 3200–3206.
  • Babuponnusami, A.; Muthukumar, K. A review on Fenton and improvements to the Fenton process for wastewater treatment. J. Environ. Chem. Eng. 2014, 2, 557–572.
  • Velásquez, M.; Santander, I.P.; Contreras, D.R.; Yáñez, J.; Zaror, C.; Salazar, R.A.; Pérez-Moya, M.; Mansilla, H.D. Oxidative degradation of sulfathiazole by Fenton and photo-Fenton reactions. J. Environ. Sci. Health A 2014, 49, 661–670.
  • Telles, C.; Granhen, C.; Aparecida, T. Optimization of Fenton's oxidation of chemical laboratory wastewaters using the response surface methodology. J. Environ. Manage. 2006, 80, 66–74.
  • Galvão, S.; Mota, A.; Silva, D.; Moraes, J.; Nascimento, C.; Chiavone-Filho, O. Application of the photo-Fenton process to the treatment of wastewaters contaminated with diesel. Sci. Total Environ. 2006, 367, 42–49.
  • Torrades, F.; Pérez, M.; Mansilla, H.D.; Peral, J. Experimental design of Fenton and photo-Fenton reactions for the treatment of cellulose bleaching effluents. Chemosphere 2003, 53, 1211–1220.
  • Jian-Hui, S.; Sheng-Peng, S.; Mao-Hon, F.; Hui-Qin, G.; Yi-Fan, L.; Rui-Xia, S. Oxidative decomposition of p-nitroaniline in water by solar photo-Fenton advanced oxidation process. J. Hazar. Mater. 2008, 153, 187–193.
  • Gogate, P.; Pandit, A. A review of imperative technologies for wastewater treatment I: oxidation technologies at ambient conditions. Adv. Environ. Res. 2004, 8, 501–551.
  • Khataee, A.R.; Kasiri, M.B.; Alidokht, L. Application of response surface methodology in the optimization of photocatalytic removal of environmental pollutants using nanocatalysts. Environ. Technol. 2011, 32, 1669–1684.
  • Gayaa, U.I.; Abdullaha, A.H. Heterogeneous photocatalytic degradation of organic contaminants over titanium dioxide: A review of fundamentals, progress and problems. J. Photoch. Photobiol. C. 2008, 9, 1–12.
  • Ahmed, S.; Rasul, M.G.; Brown, R.; Hashib, M.A. Influence of parameters on the heterogeneous photocatalytic degradation of pesticides and phenolic contaminants in wastewater: A short review. J. Environ. Manage. 2011, 92, 311–330.
  • Chamarro, E.; Marco, A.; Esplugas, S. Use of Fenton reagent to improve organic chemical biodegradability. Water Res. 2001, 35, 1047–1051.
  • Pérez-Moya, M.; Graells, M.; del Valle, L.J.; Centelles, E.; Mansilla, H.D. Fenton and photo-Fenton degradation of 2-chlorophenol: Multivariate analysis and toxicity monitoring. Catal. Today. 2007, 124, 163–171.
  • Villaseñor, J.; Mansilla, H.D. Effect of temperature on kraft black liquor degradation by ZnO-photoassisted catalysis. J. Photochem. Photobiol. A 1996, 93, 205–209.
  • Segura, C.; Zaror, C.; Mansilla, H.D.; Mondaca, A. Imidacloprid oxidation by photo-Fenton reaction. J. Haz. Mater. 2008, 150, 679–686.
  • Contreras, D.; Freer, J.; Rodriguez, J. Veratryl alcohol degradation by a catechol-driven Fenton reaction as lignin oxidation by brown-rot fungi model. Int. Biodeter. Biodegr. 2006, 57, 63–68.
  • Contreras, S.; Rodriguez, M.; Al Momani, F.; Sans, C.; Esplugas, S. Contribution of the ozonation pre-treatment to the biodegradation of aqueous solutions of 2,4-dichlorophenol. Water Res. 2003, 37, 3164–3171.
  • Sarria, V.; Parra, S.; Adler, N.; Peringer, P.; Benitez, N.; Pulgarin, C. Recent developments in the coupling of photoassisted and aerobic biological processes for the treatment of biorecalcitrant compounds. Catal. Today 2002, 76, 301–315.
  • Salazar, G.; Checura Diaz, M.S.; Denegri, M.J.; Tiba, C. Identification of potential areas to achieve stable energy production using the SWERA database: A case study of northern Chile. Renew. Energ. 2015, 77, 208–216.
  • Bolton, J.; Bircher, K.; Tumas, W.; Tolman, C. Figures-of-merit for the technical development and application of advanced oxidation technologies for both electric- and solar-driven systems. Pure Appl. Chem. 2001, 73, 627–637.
  • Lizama, C.; Freer, J.; Baeza, J.; Mansilla, H.D. Optimized photodegradation of reactive blue 19 on TiO2 and ZnO suspensions. Catal. Today 2002, 76, 235–246.
  • Aleboyeh, A.; Olya, M.; Aleboyeh, H. Electrical energy determination for an azo dye decolorization and mineralization by UV/H2O2 advanced oxidation process. Chem. Eng. J. 2008, 137, 518–552.
  • Perez-Moya, M.; Mansilla, H.D.; Graells, M. A practical parametrical characterization of the Fenton and the photo-Fenton sulfamethazine treatment using semi-empirical modeling. J. Chem. Technol. Biot. 2011, 86, 826–831.

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