Assessing critical water quality indicators in raw and drinking waters of the main treatment plants in the city of Cuenca, Ecuador

Autores/as

DOI:

https://doi.org/10.24850/j-tyca-2026-04-01

Palabras clave:

water quality, drinking water, water treatment, water supply, water resources, chemical analysis, pollutants, Ecuador

Resumen

Ecuador is a tropical country with wet and dry periods. The seasonality of water resources leads to water availability and quality variability. This study investigated the variability of physical-chemical characteristics (pH, colour, turbidity, and conductivity), aluminum content, residual free chlorine, and caffeine levels in the inlets and outlets, and in the distribution networks of the three main drinking water treatment plants in the city of Cuenca: El Cebollar (Tomebamba River), Sustag (Yanuncay River), and Tixan (Machangara River). Samples were collected from May 2023 to December 2024. The average values for each parameter fell below regulatory limits. No caffeine was detected. There were isolated instances of values exceeding the regulatory standard for aluminum in inlet and distribution samples. A deficiency of free chlorine was also observed at some points in the distribution system, which might be due to the distance from the treatment plant and the state of the pipes. These findings indicate the quality of Cuenca's drinking water. However, more water quality controls should be implemented throughout the distribution network.

Referencias

Alcocer-Yamanaka, V. H., Tzatchkov, V., & Arreguín Cortés, F. I. (2004). Modelo de calidad del agua en redes de distribución. Ingeniería Hidráulica en México, 19(2), 77-88. http://repositorio.imta.mx/handle/20.500.12013/743

Arcentales-Ríos, R., Carrión-Méndez, A., Cipriani-Ávila, I., Acosta, S., Capparelli, M., Moulatlet, G. M., & Pinos-Vélez, V. (2022). Assessment of metals, emerging contaminants, and physicochemical characteristics in the drinking water and wastewater of Cuenca, Ecuador. Journal of Trace Elements and Minerals, 2, 100030. https://doi.org/10.1016/j.jtemin.2022.100030

Arias-Muñoz, P., Díaz-Chapués, D., Cabrera-García, S., & Jácome-Aguirre, G. (2025). Índice de escasez hídrica en la cuenca del río Ambi, Ecuador. Tecnología y ciencias del agua, 16(1), 1-40. https://doi.org/10.24850/j-tyca-2025-01-01

Ávila, R. (2013). Sistemas de Agua Potable y Aguas Residuales de la Ciudad de Cuenca. Galileo, 23, 141-151. http://dspace.ucuenca.edu.ec/handle/123456789/30007

Capparelli, M. V., Cipriani-Avila, I., Jara-Negrete, E., Acosta-López, S., Acosta, B., Pérez-González, A., Molinero, J., & Pinos-Vélez, V. (2021). Emerging contaminants in the Northeast Andean Foothills of Amazonia: The case of study of the City of Tena, Napo, Ecuador. Bulletin of Environmental Contamination and Toxicology, 107(1), 2-10. https://doi.org/10.1007/s00128-021-03275-8

Cipriani-Avila, I., Molinero, J., Cabrera, M., Medina-Villamizar, E. J., Capparelli, M. V., Jara-Negrete, E., Pinos-Velez, V., Acosta, S., Andrade, D. L., Barrado, M., & Mogollón, N. G. S. (2023). Occurrence of emerging contaminants in surface water bodies of a coastal province in Ecuador and possible influence of tourism decline caused by COVID-19 lockdown. Science of the Total Environment, 866, 161340. https://doi.org/10.1016/j.scitotenv.2022.161340

Cogollo, J. (2011). Clarificación de aguas usando cuagulantes polimerizados: caso del hidroxicloruro de aluminio. DYNA, 78(165), 18-27. https://revistas.unal.edu.co/index.php/dyna/article/view/25636/39133

Delpla, I., Bouchard, C., Dorea, C., & Rodriguez, M. J. (2023). Assessment of rain event effects on source water quality degradation and subsequent water treatment operations. The Science of the Total Environment, 866, 161085. https://doi.org/10.1016/j.scitotenv.2022.161085

ETAPA EP, Empresa Pública de Telecomunicaciones, Agua Potable, Saneamiento y Gestión Ambiental del Cantón Cuenca. (2020). Planta de tratamiento de aguas residuales de Ucubamba. ETAPA EP. https://www.etapa.net.ec/agua-potable-y-saneamiento/operacion-y-mantenimiento-agua-potable-y-saneamiento/planta-de-tratamiento-de-aguas-residuales-de-ucubamba/

Gonzalez, S., Lopez-Roldan, R., & Cortina, J.-L. (2013). Presence of metals in drinking water distribution networks due to pipe material leaching: A review. Toxicological & Environmental Chemistry, 95(6), 870-889. https://doi.org/10.1080/02772248.2013.840372

Guerrero, R., Serpa, J., & Mora, D. (2017). Evaluación de intensidades de precipitación influenciadas por oscilaciones decadales: Cuenca del Río Paute. Maskana, 8, 185–190. https://publicaciones.ucuenca.edu.ec/ojs/index.php/maskana/article/view/1978

Hidalgo-Proaño, M. (2017). Variabilidad Climática interanual sobre el Ecuador asociada a ENOS. CienciAmérica: Revista de Divulgación Científica de la Universidad Tecnológica Indoamérica, 6(2), 42-47. https://cienciamerica.edu.ec/index.php/uti/article/view/82

Hofstede, R., Mena-Vásconez, P., & Suárez, E. (2023). Los páramos del Ecuador: pasado, presente y futuro. USFQ PRESS. https://doi.org/10.18272/USFQPRESS.71

INEC, Instituto Nacional de Estadística y Censos. (2022). Home – Instituto Nacional de Estadística y Censos. https://www.ecuadorencifras.gob.ec/institucional/home/

INEN, Servicio Ecuatoriano de Normalización. (2020). NTE INEN 1108. Agua para consumo humano. Requisitos (6ª rev.). Servicio Ecuatoriano de Normalización.

Jara-Negrete, E., Cipriani-Avila, I., Molinero, J., Pinos-Vélez, V., Acosta-López, S., Cabrera, M., Medina-Villamizar, E. J., Leiva-Andrade, D., Pozo, A., Martínez, O., & Mogollón, N. G. S. (2023). Pharmaceutical compounds in urban drinking waters of Ecuador. Frontiers in Environmental Science, 11. https://doi.org/10.3389/fenvs.2023.1232405

Kwio-Tamale, J. C., & Onyutha, C. (2024). Influencia de los parámetros físicos y de calidad del agua en la disminución del cloro residual en la red de distribución de agua. Heliyon, 10(10), e30892. https://doi.org/10.1016/j.heliyon.2024.e30892

Mahler, C. F., Svierzoski, N. D. S., & Bernardino, C. A. R. (2021). Chemical characteristics of humic substances in nature. In: Cruz, A. C. D., De Oliveira, R. A. F., & Da Silva, M. M. (eds.). Humic substances in nature (pp. 147–167). IntechOpen. https://doi.org/10.5772/intechopen.97414

Ministerio del Ambiente. (2015). Texto Unificado de Legislación Secundaria del Ministerio del Ambiente (TULSMA), Libro VI, Anexo 1: Norma de calidad ambiental y de descarga de efluentes: Recurso Agua. Registro Oficial.

Ngumba, E., Gachanja, A., & Tuhkanen, T. (2016). Occurrence of selected antibiotics and antiretroviral drugs in Nairobi River Basin, Kenya. Science of the Total Environment, 539, 206-213. https://doi.org/10.1016/j.scitotenv.2015.08.139

OECD, Organización para la Cooperación y el Desarrollo Económicos. (2004). Test No. 202: Daphnia sp. acute immobilisation test. In: OECD Guidelines for the Testing of Chemicals, Section 2. https://doi.org/10.1787/9789264069947-en

Oliveira, L. de, Reis, D. R. dos, & Hoffmann, N. K. S. del A. (2022). Decay process of free residual chlorine concentration affected by travel time in water distribution systems. Revista Ambiente & Água, 17, e2830. https://doi.org/10.4136/ambi-agua.2830

Pinos-Vélez, V., Araujo, G. S., Moulatlet, G. M., Pérez-González, A., Cipriani-Ávila, I., Tripaldi, P., & Capparelli, M. V. (2023). Acute toxicity of daphnia magna neonates exposed to single and composite mixtures of four emerging contaminants. Bulletin of Environmental Contamination and Toxicology, 110(1), 14. https://doi.org/10.1007/s00128-022-03663-8

Pinos-Vélez, V., Esquivel-Hernández, G., Cipriani-Avila, I., Mora-Abril, E., Cisneros, J. F., Alvarado, A., & Abril-Ulloa, V. (2019). Emerging Contaminants in Trans-American Waters. Ambiente e Agua - An Interdisciplinary Journal of Applied Science, 14(6), 1-26. https://doi.org/10.4136/ambi-agua.2436

Spînu, D., & Racoviteanu, G. (2014). Behavior of aluminum based coagulants in treatment of surface water–assessment of chemical and microbiological properties of treated water. Modelling in Civil Environmental Engineering, 10(1), 9-20. https://doi.org/10.2478/mmce-2014-0002

Spongberg, A. L., Witter, J. D., Acuña, J., Vargas, J., Murillo, M., Umaña, G., Gómez, E., & Perez, G. (2011). Reconnaissance of selected PPCP compounds in Costa Rican surface waters. Water Research, 45(20), 6709-6717. https://doi.org/10.1016/j.watres.2011.10.004

MAE, Ministerio del Ambiente del Ecuador. (2018). Texto unificado de legislación secundaria de medio ambiente (TULSMA). https://www.ambiente.gob.ec/wp-content/uploads/downloads/2018/05/TULSMA.pdf

UN, United Nations. (2022). The sustainable development goals report 2022. https://unstats.un.org/sdgs/

WHO, World Health Organization. (2003). Aluminium in drinking-water. https://apps.who.int/iris/bitstream/handle/10665/75362/WHO_SDE_WSH_03.04_53_eng.pdf

WHO, World Health Organization. (2023). Agua para consumo humano. https://www.who.int/es/news-room/fact-sheets/detail/drinking-water

Descargas

Publicado

2026-07-01

Número

Sección

Artículos

Cómo citar

Carrión-Aguilar, V., Chaca-Jimbo, I., Pinos-Vélez, V., Cisneros, J. F., Abril-González, M., Espinoza, J. D., Duque-Sarango, P., García-Sánchez, C., Rodriguez, M., & Tonon, M. D. (2026). Assessing critical water quality indicators in raw and drinking waters of the main treatment plants in the city of Cuenca, Ecuador. Tecnología Y Ciencias Del Agua, 17(4), 01-34. https://doi.org/10.24850/j-tyca-2026-04-01