Kinetic and ecotoxicological evaluation of the direct orange 26 dye degradation by Fenton and solar photo-Fenton processes

Authors

DOI:

https://doi.org/10.5902/2236117032254

Keywords:

Chemical oxidation, Chemical oxygen demand, Textile dyes

Abstract

The presence of color in textile effluents has been studied because of the need for more effective treatments. Therefore, advanced oxidative processes (AOP) have been used in the degradation of dyes, as well as in the conversion of organic matter. This study evaluated the degradation of the direct orange 26 textile dye by Fenton and photo-Fenton processes (with natural solar radiation). A statistical analysis, based on factorial 23 indicated the best working conditions, being: [H2O2] = 100 mg·L-1 and pH 3-4, for both AOP in that the [Fe] =  1 e 5 mg·L-1, for photo-Fenton and Fenton, respectively. The results of the kinetic studies demonstrated a good fit to the nonlinear kinetic model proposed by Chan and Chu, with values of R2 > 0,996 (photo-fenton) and R2 > 0,939 (Fenton). The tests performed to evaluate the chemical oxygen demand indicated conversions of 62.05% (Fenton) and 66.41% (photo-Fenton). Finally, the ecotoxicity study indicated that the post-treatment samples were non-toxic to the bacteria Escherichia coli and Proteus mirabilis but showed growth inhibition for Lactuca sativa (Fenton and photo-Fenton) seeds and for Brassica juncea and Portulaca grandiflora (Fenton).

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Author Biographies

Rayany Magali da Rocha Santana, Universidade Federal de Pernambuco / Departamento de Engenharia Química

Aluna de mestrado do Programa de Pós-graduação em Engenharia Química da Universidade Federal de Pernambuco

Polyana Karynne de Aguiar Silva, Universidade Federal de Pernambuco / Departamento de Engenharia Química

Graduação em andamento em Química Industrial.
Universidade Federal de Pernambuco, UFPE, Brasil.

Alex Leandro Andrade de Lucena, Universidade Federal de Pernambuco / Departamento de Engenharia Química

Atualmente é aluno de doutorado em Engenharia Química pela Universidade Federal de Pernambuco.

Thamara Figueiredo Procópio, Universidade Federal de Pernambuco / Departamento de Bioquímica

 Doutora em Bioquímica e Fisiologia pela Universidade Federal de Pernambuco (UFPE). 

Thiago Henrique Napoleão, Universidade Federal de Pernambuco / Departamento de Bioquímica

Professor na Universidade Federal de Pernambuco / Departamento de Bioquímica

Marta Maria Menezes Bezerra Duarte, Universidade Federal de Pernambuco / Departamento de Engenharia Química

 Professora do Departamento de Engenharia Química da Universidade Federal de Pernambuco

Daniella Carla Napoleão, Universidade Federal de Pernambuco / Departamento de Engenharia Química

Atualmente é professora Adjunta AII da Universidade Federal de Pernambuco

References

ABIT. Associação Brasileira da Indústria Têxtil e de Confecção. Perfil do setor. Disponível em: <http://www.abit.org.br/cont/perfil-do-setor>. Acesso em: 28 nov. 2017.

APHA: AMERICAN PUBLIC HEALTH ASSOCIATION. Standard Methods for The Examination of Water and Wastewater. 22 ed. Washington: APHA, 2012.

AŞÇI, Y. Decolorization of Direct Orange 26 by heterogeneous Fenton oxidation. Desalination and Water Treatment, v. 51, n. 40-42, p. 7612-7620, 2013.

BANASCHIKA, R.; JABLONOWSKI, H.; BEDNARSKI, P. J.; KOLBA J. F., Degradation and intermediates of diclofenac as instructive example for decomposition of recalcitrant pharmaceuticals by hydroxyl radicals generated with pulsed corona plasma in water. Journal of Hazardous Materials, v. 342, p. 651-660, 2018.

BILINSKA, L.; GMUREK, M.; LEDAKOWICZ S. Textile wastewater treatment by AOPs for brine reuse. Process Safety and Environmental Protection, v. 109, p. 420-428, 2017.

BRINDHA, R.; MUTHUSELVAM, P.; SENTHILKUMAR, S.; RAJAGURU P. Fe0 catalyzed photo-Fenton process to detoxify the biodegraded products of azo dye Mordant Yellow 10. Chemosphere, v. 201, p. 77-95, 2018.

BRITO, N. N. D.; SILVA, V. B. M. Processos oxidativos avançados e sua aplicação ambiental. Revista Eletrônica de Engenharia Civil, v. 1, n. 3, p. 36-47, 2012.

CHAKMA, S.; DAS, L. MOHOLKAR, V. S. Dye decolorization with hybrid advanced oxidation processes comprising sonolysis/Fenton-like/photo-ferrioxalate systems: A mechanistic investigation. Separation and Purification Technology, v. 156, n. 1, p. 596-607, 2015.

CHAN, K. H.; CHU, W. Modeling the reaction kinetics of Fenton’s process on the removal of atrazine. Chemosphere, v. 51, n. 4, p. 305-311, 2003.

CHAVOSHANI, A.; ROSTAMI, A.; GOLZARI, F.; GHOLINIA, A. The Effect of H2O2 Interference in Chemical Oxygen Demand Removal During Advanced Oxidation Processes. Iranian Journal of Health, Safety and Environment, v. 3, n. 3, p. 565-569, 2016.

DÜKKANCI M. Sono-photo-Fenton oxidation of bisphenol-A over a LaFeO3 perovskite catalyst. Ultrasonics. Sonochemistry, v. 40, p. 110-116, 2018.

FENG, L.; HULLEBUSCH, E. D. V.; RODRIGO, M. A.; ESPOSITO, G.; OTURAN, M. A. Removal of residual anti-inflammatory and analgesic pharmaceuticals from aqueous systems by electrochemical advanced oxidation processes: A review. Chemical Engineering Journal, v. 228, p. 944-964, 2013.

HASANBEIGI, A.; HASANABADI, A.; ABDORRAZAGHI, M. Comparison analysis of energy intensity for five major sub-sectors of the Textile Industry in Iran. Journal of Cleaner Production, v. 23, n. 1, p. 186-194, 2012.

HERNÁNDEZ-FRANCISCOA, E.; PERAL, J.; BLANCO-JEREZ, L. M. Removal of phenolic compounds from oil refinery wastewater by electrocoagulation and Fenton/photo-Fenton processes. Journal of Water Process Engineering, v. 19, p. 96-100, 2017.

Instituto Nacional de Metrologia, Normalização e Qualidade Industrial (INMETRO). DOQ-CGCRE-008: Orientações sobre Validação de Métodos Analíticos. Rev. 04, 2011. 20 p.

LABIADHA, L.; OTURANB, M. A.; PANIZZAC, M.; HAMADI, N. B.; AMMAR, S. Complete removal of AHPS synthetic dye from water using new electro-fenton oxidation catalyzed by natural pyrite as heterogeneous catalyst. Journal of Hazardous Materials, v. 297, p. 34-41, 2015.

LEE, E.; LEE, H.; KIM, Y. K.; SOHN, K.; LEE, K. Hydrogen peroxide interference in chemical oxygen demand during ozone based advanced oxidation of anaerobically digested livestock wastewater. International Journal of Environmental Science & Technology, v. 8, n. 2, p. 381-88, 2011.

MARTÍNEZ-HUITLE C. A.; BRILLAS, E. Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods: A general review. Applied Catalysis B: Environmental, v. 87, n. 3-4, p. 105-145, 2009.

MARTINS, L. M.; SILVA, C. E.; MOITA NETO, J. M.; LIMA, A. S.; MOREIRA, R. F. P. M. Aplicação de Fenton, foto-Fenton e UV/H2O2 no tratamento de efluente têxtil sintético contendo o corante Preto Biozol UC. Engenharia Ambiental e Sanitária, v. 16, n. 3, p. 261-270, 2011.

NAGEL-HASSEMER, M. E.; CORAL, L. A.; LAPOLLI, F. R; AMORIM, M. T. S. P. Processo UV/H2O2 como pós-tratamento para remoção de cor e polimento final em efluentes têxteis. Química Nova, v. 35, n. 5, p. 900-904, 2012.

NAPOLEÃO, D. C.; ZAIDAN, L. E. M. C.; DIAZ, J. M. R.; SANTANA, R. M. R.; MONTENEGRO, M. C. B.; ARAUJO, A. N.; BENACHOUR, M.; SILVA, V. L. Use of the photo-Fenton process to discover the degradation of drugs present in water from the Wastewater Treatment Plants of the pharmaceutical industry. Afinidad, v. 75, p. 19-27, 2018.

PAULINO, T. R. S.; ARAÚJO, R. S.; SALGADO, B. C. B. Estudo de oxidação avançada de corantes básicos via reação Fenton (Fe2+/H2O2). Engenharia Sanitária e Ambiental, v. 20, n. 3, p. 347-352, 2015.

PUNZI M.; ANBALAGAN A.; BÖRNER R. A.; SVENSSON B.; JONSTRUP M., MATTIASSON B. Degradation of a textile azo dye using biological treatment followed by photo-Fenton oxidation: Evaluation of toxicity and microbial community structure. Chemical Engineering Journal, v. 270, p. 290-299, 2015.

SAFA, Y.; BHATTI, H. N. Kinetic and thermodynamic modeling for the removal of Direct Red-31 and Direct Orange-26 dyes from aqueous solutions by rice husk. Desalination, v. 272, n. 1-3, p. 313-322, 2011.

SALVADOR, T.; MARCOLINO JR, L. H.; PERALTA-ZAMORA. Degradação de corantes têxteis e remediação de resíduos de tingimento por processo de Fenton, foto-Fenton e eletro-Fenton. Química Nova, v. 35, n. 5, p. 932-938, 2012.

SANTANA, R. M. R.; NASCIMENTO, G. E.; NAPOLEÃO, D. C.; DUARTE, M. M. M. B. Degradation and kinetic study of Reactive blue BF-5G and Remazol red RB 133% dyes using Fenton and photo-Fenton process. Electronic Journal of Management, Education and Environmental Technology (REGET), v. 31, n. 2, p. 104-118, 2017.

SOUZA, K. V.; PERALTA-ZAMORA, P.; ZAWADZKI, S. F. Imobilização de ferro (II) em matriz de alginato e sua utilização na degradação de corantes têxteis por processos Fenton. Química Nova, v. 31, n. 5, p. 1145-1149, 2008.

SU, C.; PUKDEE-ASA, M.; RATANATAMSKUL, C.; LU, M. Effect of operating parameters on decolorization and COD removal of three reactive dyes by Fenton’s reagent using fluidized-bed reactor. Desalination, v. 278, p. 211-218, 2011.

TALINLI, I.; ANDERSON, G. K. Interference of hydrogen peroxide on the standard COD test. Water research, v. 26, n. 1, p. 107-110, 1992.

YONGZE, L.; HAOWAN S.; LIQIU, Z.; LI F. Photodegradation behaviors of 17-estradiol in different water matrixes. Process Safety and Environmental Protection, v. 112, p. 335-341, 2017.

YOUNG, B. J.; RIERA, N. I.; BEILY, M. E.; BRES, P. A.; CRESPO, D. C.; RONCO, A. E. Toxicity of the effluent from an anaerobic bioreactor treating cereal residues on Lactuca sativa. Ecotoxicology and Environmental Safety, v. 76, n. 2, p. 182-186, 2012.

ZAGATTO, P. A.; BERTOLETTI, E. Ecotoxicologia Aquática – Princípios e Aplicações. 1. ed. São Carlos: RiMa, 2006. 478 p.

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Published

2018-08-23

How to Cite

Santana, R. M. da R., Nascimento, G. E. do, Silva, P. K. de A., Lucena, A. L. A. de, Procópio, T. F., Napoleão, T. H., Duarte, M. M. M. B., & Napoleão, D. C. (2018). Kinetic and ecotoxicological evaluation of the direct orange 26 dye degradation by Fenton and solar photo-Fenton processes. Revista Eletrônica Em Gestão, Educação E Tecnologia Ambiental, 22, e5. https://doi.org/10.5902/2236117032254

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Section

ENVIRONMENTAL THECNOLOGY

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