Tratamiento de efluentes industriales de naturaleza recalcitrante usando ozono, peróxido de hidrógeno y radiación ultravioleta

Autores/as

  • Tatiana Rodriguez Universidad Militar Nueva Granada
  • Diego Botelho Universidade de São Paulo
  • Eduardo Cleto Universidade de São Paulo

DOI:

https://doi.org/10.17533/udea.redin.17926

Palabras clave:

POA, ozono, peróxido de hidrogeno, radiación ultravioleta, efluente recalcitrante

Resumen

En la actualidad diversas industrias presentan elevado potencial contaminante debido a que sus procesos productivos generan grandes volúmenes de efluentes de naturaleza refractaria. Estos efluentes son problemáticos, principalmente, por la presencia de compuestos recalcitrantes que son perjudiciales en plantas de tratamiento de aguas residuales (PTARs) que solo utilizan sistemas biológicos. Los procesos biológicos, generalmente, no remueven compuestos refractarios. Inclusive, en la mayoría de los casos, altas concentraciones de estos pueden inhibir el rendimiento o ser tóxicos para la biota que es responsable de la remoción de los contaminantes. Los Procesos Oxidativos Avanzados (POA) representan una alternativa tecnológica con un gran potencial para el tratamiento de efluentes de naturaleza recalcitrante. En este artículo se hace una revisión bibliográfica sobre la aplicación de procesos oxidativos avanzados: Ozono (O3), peróxido de hidrogeno (H2O2) y radiación ultravioleta (UV) para el tratamiento de efluentes industriales de naturaleza recalcitrante.

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Biografía del autor/a

Tatiana Rodriguez, Universidad Militar Nueva Granada

Programa de Ingeniería Civil, Facultad de Ingeniería

Diego Botelho, Universidade de São Paulo

Departamento de Hidráulica e Saneamento, Escola de Engenharia de São Carlos (EESC) / São Carlos –SP

Eduardo Cleto, Universidade de São Paulo

Departamento de Hidráulica e Saneamento, Escola de Engenharia de São Carlos (EESC) / São Carlos –SP

Citas

D. Pokhrel, t. Viraraghavan. “Treatment of Pulp and Paper Mill Wastewater—A Review”. Science of the Total Environment. Vol. 333. 2004. pp. 37-58. DOI: https://doi.org/10.1016/j.scitotenv.2004.05.017

N. Koprivanac, H. Kusic, A. Bozic. Minimization of Organic Pollutant Content in Aqueous Solution by means of AOPs: UV- and Ozone –Based Technologies”. Chemical Engineering Journal. Vol.123. 2006. pp.127-137. DOI: https://doi.org/10.1016/j.cej.2006.07.011

S. Ledakowicz, M Soleck, R. Zylla. “Biodegradation, Decolourisation and Detoxification of Textile wastewater enhanced by Advanced Oxidation Processes”. Journal of Biotechnology. Vol. 89. 2001. pp. 175-184. DOI: https://doi.org/10.1016/S0168-1656(01)00296-6

D. T. Sponza. “Application of Toxicity Tests Into Discharges of the Pulp-Paper Industry in Turkey”. Ecotoxicology and Environmental Safety. Vol. 54. 2003. pp. 74-86. DOI: https://doi.org/10.1016/S0147-6513(02)00024-6

E. Almeida, M. R. Assaline, M. A.Rosa. “Tratamento de Efluentes Industriais por Processos Oxidativos na presença de ozônio”. Química Nova. Vol. 27. 2004. pp. 818-824. DOI: https://doi.org/10.1590/S0100-40422004000500023

D. V. Savant, R. L. Abdul-Rahman, D. R. Ranade. “Anaerobic Degradation of Adsorbable Organic Halides (AOX) from Pulp and Paper Industry Wastewater”. Bioresource Technology. Vol. 97. 2006. pp. 1092-1104. DOI: https://doi.org/10.1016/j.biortech.2004.12.013

R. S. Freire, R. Pelegrine, L. F. Kubota, N. Duran. “Novas Tendências para o Tratamento de Resíduos Industriais Contendo Espécies Organocloradas”. Química Nova. Vol. 23. 2000. pp. 504-511. DOI: https://doi.org/10.1590/S0100-40422000000400013

R. N. Araújo. Degradação do Corante Azul Reativo 19 usando UV, H2O2, UV/H2O2, Fenton e Foto-fenton. Aplicação em Efluentes Têxteis. Dissertação (Mestrado) – Universidade Estadual de Campinas. Campinas. Septiembre. 2002. pp. 14 -121.

C. B. C. Raj, H. L. Quen. Advanced Oxidation Process for Wastewater Treatment: Optimization of UV/H2O2 process through statistical technique”. Chemical Engineering Science. Vol. 60. 2005. pp. 5305-5311. DOI: https://doi.org/10.1016/j.ces.2005.03.065

C. P. Huang, C. Dong, Z. Tang. “Advanced Chemical Oxidation: its present role and potential future in hazardous waste treatment”. Waste Management. Vol.13. 1993. pp.361-377. DOI: https://doi.org/10.1016/0956-053X(93)90070-D

A. Marco, S. Esplugas, G. Saum. “How and Why Combine Chemical and Biological Process for Wastewater Treatment”. Water Science and Technology. Vol. 35. 1997. pp. 321-327. DOI: https://doi.org/10.2166/wst.1997.0147

P. R. Gogate, A. B. Pandit. “A Review of Imperative Technologies for Wastewater Treatment II: Hybrid Methods”. Advances in Environment Research. Vol. 8. 2004. pp. 553-597. DOI: https://doi.org/10.1016/S1093-0191(03)00031-5

M. Polezi. Aplicação de Processo Oxidativo Avançado (H2O2/UV) no Efluente de uma ETE para fins de reuso. Dissertação (Mestrado) – Universidade Estadual de Campinas. Campinas. SP. 2003. pp.13-27.

A. Mantzavinos, E. Psillakis. “Review Enhancement of Biodegradability of Industrial Wastewaters by Chemical Oxidation pre-treatment”. Journal of Chemical Technology and Biotechnology. Vol. 79. 2004. pp. 431-454. DOI: https://doi.org/10.1002/jctb.1020

A. R. Bowers, P. Gaddipati, P. W. J. Eckenfelder, R. M. Monsen. “Treatment of Toxic or Refractory Wastewaters with Hydrogen Peroxide”. Water Science and Technology. Vol. 21. 1989. pp. 477-486. DOI: https://doi.org/10.2166/wst.1989.0250

J. Bandara, C. Pulgarin, P. Peringer, J. Kiwi. “Chemical (photo-activated) Coupled Biological Homogeneous Degradation of p-nitro-o-toluene-sulfonic acid in flow reactor”. Journal of Photochemistry and Photobiology A. Chemistry. Vol. 111. 1997. pp. 253-263. DOI: https://doi.org/10.1016/S1010-6030(97)00249-9

M. C. Yeber, J. Rodríguez, J. Freer, J. Baeza, N. Durán, H. D. Mansilla. Advanced Oxidation of Pulp Mill Bleaching Wastewater”. Chemosphere. Vol. 39. 1999. pp.1679-1688. DOI: https://doi.org/10.1016/S0045-6535(99)00068-5

T. Momenti. Processo Anaeróbio Conjugado com Processos Oxidativos Avançados (POA) no Tratamento dos Efluentes do Processo Industrial de Branqueamento da Polpa Celulosica. Tese (Doutorado) – Escola de Engenharia de São Carlos, Universidade de São Paulo, São Carlos, SP. 2006. pp.110-120.

C. P. Teixeira, W. F. Jardim. Processos Oxidativos Avançados Conceitos Teóricos. Caderno Temático. Universidade Estadual de Campinas. Campinas. SP. 2004. pp.1-83.

C. P. Teixeira, “Estudo Comparativo de Tipos Diferentes de Processos Oxidativos Avançados”. Tese (Doutorado) – Faculdade de Engenharia Civil, Unicamp, Campinas, SP. 2002. pp. 7 -33.

M. Mohseni, L. Bijan. “Integrated Ozone and Biotreatment of Pulp Mill effluent and Changes in Biodegradability and Molecular Weight Distribution of Organic Compounds”. Water Research. Vol. 39. 2005. pp. 3763-3772. DOI: https://doi.org/10.1016/j.watres.2005.07.018

T. Kreetachat, M. Damrongsri, V. Punsuwon, P.Vaithanomsat, C. Chiemchaisri, C. Chomsurin. “Effects of Ozonation Process on Lignin-derived Compounds in Pulp and Paper Mill Effluents”. Journal of Hazardous Materials. Vol. 142. 2007. pp.250-257. DOI: https://doi.org/10.1016/j.jhazmat.2006.08.011

A. Mounteer, J. Mokfienski, F. Amorim. “Remoção de Matéria Orgânica Recalcitrante de Efluentes de Celulose Kraft de Branqueamento por Ozonólise”. O Papel. Vol. 66. 2005. pp. 64-70.

N. Azbar, T. Yonar, K. Kestioglu. “Comparison of Various Advanced Oxidation Processes and Chemical Treatment Methods for COD and Color Removal form a Polyester and Acetate Fiber Dyeing Effluent”. Chemosphere. Vol. 55. 2004. pp. 35-43. DOI: https://doi.org/10.1016/j.chemosphere.2003.10.046

J. Peral, M. I. Maldonado, S. Malato, L. A. Perez-Estrada, W. Gernjcik, I. Oeller, X. Domenech. “Partial Degradation of Five Pesticides and an Industrial Pollutant by Ozonation in a Pilot-Plant Scale Reactor”. Journal of Hazardous Materials. Vol. B138. 2006. pp. 363-369. DOI: https://doi.org/10.1016/j.jhazmat.2006.05.058

A. Lopez-Lopez, J. S. Pic, H. Debellefontaine. “Ozonation of Azo Dye in a Semi-batch reactor: A Determination of the Molecular and Radical Contributions”. Chemosphere. Vol. 66. 2007. pp. 2120-2126. DOI: https://doi.org/10.1016/j.chemosphere.2006.09.025

S. Espluglas, J. Gimenez, S. Contreras, E. Pascual, M. Rodríguez. Comparison of different Advanced Oxidation Processes for Phenol Degradation”. Water Research. Vol. 36. 2002. pp. 1034-1042. DOI: https://doi.org/10.1016/S0043-1354(01)00301-3

Environmental Protection Agency. Alternative Disinfectants and Oxidations Guidance Manual. 1999. pp. 346.

F. Kargi, E. C. Catalkaya. “Color, TOC and AOX removals from Pulp Mill Effluent by Advanced Oxidation Process: A comparative study”. Journal of Hazardous Materials. Vol. 139. 2007. pp.244-253. DOI: https://doi.org/10.1016/j.jhazmat.2006.06.023

T. E. Agustina, H. M. Ang, V. K.Vareek. “A Review of Synergistic Effect of Phototocatalysis and Ozonation on Wastewater Treatment”. Journal of Photochemistry and Photobiology C: Photochemistry Reviews. Vol. 6. 2005. pp. 264-273. DOI: https://doi.org/10.1016/j.jphotochemrev.2005.12.003

M. Pera-Titus, V. Garcia-Molina, M. Baños, J. Gimenez, S. Espluglas. “ Degradation of Chlorophenols by means of Advanced Oxidation Process: A General Review”. Applied Catalysis B: Environmental. Vol. 47. 2004. pp. 219-256. DOI: https://doi.org/10.1016/j.apcatb.2003.09.010

H. F R. Schoreder. “Non-Biodegradable Wastewater Compounds Treated by Ozone or Ozone/UV Conversion Monitoring by Substances Specific Analysis and Biotoxicity Testing”. Water Science and Technology. Vol. 33. 1996. pp.331-338. DOI: https://doi.org/10.2166/wst.1996.0113

US Peroxide. “Introduction to hydrogen peroxide. URL: http://h2o2.com. Consultada el 18 de Julio de 2006.

I. L. De Mattos, K. Antonelli, A. D. Braz, J. R. Fernandes. “Peróxido de Hidrogênio: Importância e Determinação”. Quimica Nova. Vol. 26. 2003. pp.373-380. DOI: https://doi.org/10.1590/S0100-40422003000300015

N. H. Ince. “Critical effect of Hydrogen Peroxide in Photochemical Dye Degradation”. Water Research. Vol. 33. 1999. pp. 1080-1084. DOI: https://doi.org/10.1016/S0043-1354(98)00295-4

R. Alnaizy, A. akgerman. “Advanced Oxidation of Phenolic Compounds”. Advances in Environmental Research. Vol. 4. 2000. pp. 233–244. DOI: https://doi.org/10.1016/S1093-0191(00)00024-1

J. H. Baxendale, J. A. Wilson. “The Photolysis of Hydrogen Peroxide at high light intensities”. Trans. Faraday Soc. Vol. 53. 1956. pp.344-356. DOI: https://doi.org/10.1039/tf9575300344

T. L. Porto Dantas. “ Decomposicao de Peroxido de Hidrogenio em um Catalisador Hibrido e Oxidacao Avancada de Efluente Textil por Reagente Fenton Modificado” Dissertacao (Mestrado) – Universidade Federal de Santa Catarina, SC.2005.pp. 5-14.

F. J. Benitez, J. L. Acero, F. J. Real. “Degradation of Carbofuran by Using Ozone, UV Radiation and Advanced Oxidation Processes”. Journal of Hazardous Materials. Vol. 89. 2002. pp.51-65. DOI: https://doi.org/10.1016/S0304-3894(01)00300-4

J. Sobotka. “The Efficency of Water Treatment and Desinfections by means of Ultraviolet Radiation”. Water Science and Technology. Vol. 27. 1993. pp. 343-346. DOI: https://doi.org/10.2166/wst.1993.0372

C. Prat, M. Vicente, S. Esplugas. “Treatment of Bleaching Waters in the Paper Industry by Hydrogen Peroxide and Ultraviolet Radiation”. Water Research. Vol. 22. 1988. pp. 663-668. DOI: https://doi.org/10.1016/0043-1354(88)90176-5

F. Beltran, J. M. Encinar, J. F. Gonzalez. “ Industrial Wastewater Advanced Oxidation part 2. Ozone combined with Hydrogen Peroxide or UV radiation”. Water Research. Vol. 31 .pp. 2415-2428. DOI: https://doi.org/10.1016/S0043-1354(97)00078-X

C. D. AdamsJ. J. Kuzhikannil. “Effects of H2O2/UV Preoxidation on the Aerobic Biodegradability of Quartenary Amine Surfactants”. Water Research. Vol. 34. 2000. pp.668-672. DOI: https://doi.org/10.1016/S0043-1354(99)00186-4

C. Liao, M. Lu, Y. Yang, L. Lu. “UV-Catalaysed Hydrogen Peroxide Treatment of Textile Wasterwater”. Environmental Engineering Science. Vol. 17. 2000. pp.9-18. DOI: https://doi.org/10.1089/ees.2000.17.9

I. Kazuaki, W. Jian, W. Nishima. “Comparison of Ozonation and AOPs Combined with Biodegradation for Removal of THM precursors in Treated Sewage Effluents”. Water Science and Technology. Vol. 38. 1998. pp. 179-186. DOI: https://doi.org/10.2166/wst.1998.0291

J. P. Scott, D. F. Ollis. “ Integration of Chemical and Biological Oxidation Processes for Water treatment: Review and Recommendations”. Environmental Progress. Vol. 14. 1995. pp.88-103. DOI: https://doi.org/10.1002/ep.670140212

F. B. Tabrizi, M. Mehravar. “Integration of Advanced Oxidation Technologies and Biological Processes: Recent Developments, Trends, and Advances”. Journal of Environmental Science and Health, Part A. Vol. 39. 2004. pp. 3029-3081. DOI: https://doi.org/10.1081/LESA-200034939

K. Gommers, H. De Wever, E. Brauns, K.Peys. “Recalcitrant COD Degradation by an Integrated System of Ozonation and Membrane Bioreactor”. Water Science and Technology. Vol. 55. 2007. pp. 245-251. DOI: https://doi.org/10.2166/wst.2007.410

C. H. Mobius, A. Helble. “Combined Ozonation and Biofilm Treatment for Reuse of Papermill Wastewaters”. Water Science and Technology. Vol. 49. 2004. pp. 319-323. DOI: https://doi.org/10.2166/wst.2004.0294

A. Vogelpohl. “ Applications of AOPs in Wastewater Treatment”. Water Science and Technology. Vol. 55. 2007. pp. 207 -211. DOI: https://doi.org/10.2166/wst.2007.408

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Publicado

2013-12-11

Cómo citar

Rodriguez, T., Botelho, D., & Cleto, E. . (2013). Tratamiento de efluentes industriales de naturaleza recalcitrante usando ozono, peróxido de hidrógeno y radiación ultravioleta. Revista Facultad De Ingeniería Universidad De Antioquia, (46), 24–38. https://doi.org/10.17533/udea.redin.17926