Removal of organic matter present in wastewater of a pharmaceutical plant using a RBC (rotating biological contactor)
DOI:
https://doi.org/10.24850/j-tyca-14-04-07Palabras clave:
Bioaugmentation, biofilm, COD removal, RBCResumen
A RBC (Rotating Biological Contactor) system is a technology using a biological process by which microorganisms present in wastewater are fixed to partially-submerged parallel rotating discs forming a biofilm through bioaugmentation processes. This technology allows for the removal of contaminating organic matter from the water improving treatment processes. In this research work, a laboratory-scale RBC composed of four discs submerged approximately 40 % in a volume of 1 l (0.001 m3) was used for the purpose of reducing high levels of COD and BOD contained in the wastewater of a pharmaceutical plant with the aid of two different microbial consortiums. An initial characterization of COD and BOD of the wastewater sample was carried out in order to compare with six samples obtained from the reactor in operation. A maximum COD removal of 2 560 mg O2/l was obtained which, although very high, is beyond of the permissible limits allowed by Colombian law (ordinance 0631 of 2015) but is significant because it represents an efficient removal percentage of 99.67 % with respect to the values obtained at the initial characterization.
Citas
Barceló, D., & López, M. J. (2007). Contaminación y calidad química del agua: el problema de los contaminantes emergentes. En: Panel Científico-Técnico de Seguimiento de la Política de Aguas. Barcelona, España: Instituto de Investigaciones Químicas y Ambientales-Consejo Superior de Investigaciones Científicas.
Gil, M. J., Soto, A. M., Usma, J. I., & Gutierrez, O. D. (2012). Contaminantes emergentes en aguas. Produccion + Limpia, 7(2), 52-73.
Herrero, O., Pérez-Martín, J. M., Fernández-Freire, P., Carvajal-López, L., Peropadre, A., & Hazen, M. J. (2012). Toxicological evaluation of three contaminants of emerging concern by use of the Allium cepa test. Mutation Research, 743, 20-24.
IDEAM, Instituto de Hidrología, Meteorología y Estudios Ambientales. (June 4, 2007a). Demanda bioquímica de oxígeno–5 días, incubación y electrometría. Recovered from http://www.ideam.gov.co/documents/14691/38155/Demanda+Bioqu%C3%ADmica+de+Ox%C3%ADgeno..pdf/ca6e1594-4217-4aa3-9627-d60e5c077dfa
IDEAM, Instituto de Hidrología, Meteorología y Estudios Ambientales. (December 28, 2007b). Demanda química de oxígeno por reflujo cerrado y volumetría. Recovered from http://www.ideam.gov.co/documents/14691/38155/Demanda+Qu%C3%ADmica+de+Ox%C3%ADgeno..pdf/20030922-4f81-4e8f-841c-c124b9ab5adb
Martin-Cereceda, M., Serrano, S., & Guinea, A. (2001). Biofilm Communities and Operational Monitoring of a Rotating Biological Contactor System. Water, Air, & Soil Pollution, 126, 193-206. Recovered from https://doi.org/10.1023/A:1005291015122
Ministerio de Ambiente y Desarrollo Sostenible. (March 17, 2015). Resolución 0631 de 2015. Recovered from https://www.icbf.gov.co/cargues/avance/docs/resolucion_minambienteds_0631_2015.htm
Murray, K. E., Thomas, S. M., & Bodour, A. A. (2010). Prioritizing research for trace pollutants and emerging contaminants in the freshwater environment. Environmental Pollution, 158, 3462-3471.
Nozaic, D., & Freese, S. (2009). Process Design Manual for Small Wastewater Works. Pretoria, South Africa: Water Research Commision South Africa.
Rajani-Rani, M., Sreekanth, D., & Himabindu, V. (2011). Aerobic treatment of pharmaceutical wastewater using lab-scale rotating biological contactor. IUP Journal of Environmental Sciences, V(1), 16-25.
Schmitt, N., García-Cundinach, R., & Dalmau-Soley, J. (2005). Biodiscos, una tecnología para la depuración de pequeños núcleos de población. Tecnología del Agua, 25(258), 74-81.
Stuart, M., Lapworth, D., Crane, E., & Hart, A. (2012). Review of risk from potential emerging contaminants in UK groundwater. Science of the Total Environment, 416, 21.
Su, R., Zhang, G., Wang, P., Li, S., Ravenelle, R. M., & Crittenden, J. C. (2015). Treatment of antibiotic pharmaceutical wastewater using a rotating biological contactor. Journal of Chemistry, 10, 1-8.
Unión Temporal Acuambiental. (December 30, 2008). Mantenimiento de las trampas de grasas. Recovered from ftp://ftp.ani.gov.co/Aeropuertos/Sur%20Occidente/T%C3%A9cnico/5.%20INVERSIONES/5.g)%20MEDIO%20AMBIENTE/NEIVA/PMA/2008/NEIVA/ANEXOS/ANEXO%205/MANUAL%20TRAMPA%20DE%20GRASAS.pdf
Wang, L., Wu, Z., & Shammas, N. (2009). Rotating biological contactors. Volume 8. Biological Treatment Processes. In: Wan, L. K., Pereira, N. C., & Hung, Y.-T. (eds.). Handbook of Environmental Engineering (pp. 435-458). Totowa, USA: The Humana Press.
Descargas
Publicado
Cómo citar
Número
Sección
Licencia
Derechos de autor 2023 Tecnología y ciencias del agua

Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-CompartirIgual 4.0.
Por Instituto Mexicano de Tecnología del Agua se distribuye bajo una Licencia Creative Commons Atribución-NoComercial-CompartirIgual 4.0 Internacional. Basada en una obra en https://www.revistatyca.org.mx/. Permisos que vayan más allá de lo cubierto por esta licencia pueden encontrarse en Política editorial