Treatment Processes of Leachate from a Landfill by Advanced Oxidation Fenton and Ozone-UV
- 1 Department of Basic Sciences, Autonomous Metropolitan University, Azcapotzalco, Mexico City, Mexico
- 2 Department of Basic Sciences, Autonomous Metropolitan University, Azcapotzalco, Mexico City, Mexico
- 3 Department of Chemical Engineering, University Center for Exact Sciences and Engineering, University of Guadalajara, Guadalajara, Jalisco, México
- 4 Faculty of Engineering, Autonomous University of Yucatán, Mérida, Yucatán, Mexico
- 5 Faculty of Engineering, Autonomous University of Yucatán, Mérida, Yucatán, Mexico
- 6 Department of Basic Sciences, Autonomous Metropolitan University, Azcapotzalco, Mexico City, Mexico
Abstract
In this paper it is presented the results of advanced oxidation of leachates from a technified sanitary landfill located in the State of Querétaro, Mexico. One characteristic of already stabilized leachates from sanitary landfills like this case, is their difficult degradation, mainly because the organic matter contained is recalcitrant. For the samples collect, four sites were selected, where three points per site were sampled, measuring at each site the parameters: temperature, pH, conductivity, redox potential (ORP) and dissolved oxygen (DO) and leachate samples were collected. On the other hand, the Chemical Oxygen Demand (COD) of crude leachates, leachates acidified and leachates oxidized by Fenton reagent and Ozone-UV combined were analyzed. COD was used to monitor the degradation kinetics. With the results, the ArcGIS software was applied to study the distribution of temperature, dissolved oxygen and COD mainly in the leachate lagoon. For the application of Fenton reagent in the crude leachate oxidation, the pH was first adjusted and Fe 2+ /H 2 O 2 ratio was optimized. The efficiency of Ozone-UV treatments was studied through COD degradation kinetics. The graphs of in (Ci/Co) vs time, showed that the kinetic processes are of order one, with very acceptable regression coefficients (R 2 ) and extraordinarily similar speed constants (K). With Fenton oxidation, the highest percentage of COD degradation was achieved and with Ozone-UV oxidation, it was possible to practically degrade all the COD.
- Méndez, R., Novelo, A., Coronado, V., Castillo, E. and Sauri, M.R. (2008) Removal of Organic Matter and Heavy Metals from Leachates by Dissolved Air Flotation. Ingenieria, Revista Académica, 12, 13-19.
- Mendez, R., Medina, E., Quintal, C., Castillo, E. and Sauri, M. (2002) Treatment of Leachates with Activated Carbon. Ingenieria, Revista Académica, 6, 19-27.
- Obuli, P. and Kurian, J. (2007) Bioreactor Landfills for Sustainable Solid Waste Management. Proceedings of the International Conference on Sustainable Solid Waste Management, Chennai, 466-473. https://www.academia.edu/6535711/BIOREACTOR_LANDFILLS_FOR_SUSTAINABLE_SOLID_WASTE_MANAGEMENT
- Kiss, K.G. and Encarnación, A.G. (2006) Products and Impacts of the Decomposition of Urban Solid Waste at Final Disposal Sites. INE Ecological Gazette, 79, 39-51.
- Tchobanoglous, G., Theisen, H. and Vigil, S.A. (1994) Integral Management of Solid Waste. McGraw Hill, New York.
- Wu, C., Chen, W., Gu, Z. and Li, Q. (2021) A Review of the Characteristics of Fenton and Ozonation Systems in Landfill Leachate Treatment. Science of the Total Environment, 762, Article ID: 143131. https://doi.org/10.1016/j.scitotenv.2020.143131
- Zamora-Villafranco, E., Barceló-Quintal, I.D, Vega-Paz, A., Solís-Correa, H.E., Méndez-Novelo, R.I. and Giacomán-Vallejos, G. (2016) Leachate Treatment by Fenton Oxidation and Adsorption on Eggshell and Activated Carbon. British Journal of Applied Science & Technology, 17, 1-18. https://doi.org/10.9734/BJAST/2016/28051
- Zamora-Villafranco, E., Barceló-Quintal, I.D., Gomez-Salazar, S., Barceló-Quintal, M., Solís-Correa, H.E. and Soriano-Rodríguez, J.M. (2014) Adsorption Kinetics of Matter Contained in a Leachate Using Eggshell and Active Carbon. Journal of Environmental Protection, 5, 608-619. https://doi.org/10.4236/jep.2014.57062
- May-Marrufo, A.A., Méndez-Novelo, R.I., Barceló-Quintal, I.D., Solís-Correa, H.E. and Giacomán-Vallejos, G. (2017) Leachate Treatment by Heterogeneous Fenton on an Activated Carbon Substrate with Fe(II) Impregnated. Journal of Environmental Protection, 8, 524-539. https://doi.org/10.4236/jep.2017.84036
- Singh, S.K. and Tang, W.Z. (2013) Statistical Analysis of Optimum Fenton Oxidation Conditions for Landfill Leachate Treatment. Waste Management, 33, 81-88. https://doi.org/10.1016/j.wasman.2012.08.005
- Deng, Y. (2007) Physical and Oxidative Removal of Organics during Fenton Treatment of Mature Municipal Landfill Leachate. Journal of Hazardous Materials, 146, 334-340. https://doi.org/10.1016/j.jhazmat.2006.12.026