Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial
La cuenca baja del rio Cusiana es un área afectada por diferentes actividades socioeconómicas. El trabajo tiene como objetivo establecer la estructura fisicoquímica y biológica de las áreas influenciadas por agricultura, ganadería y descargas de aguas residuales de áreas urbanas. El muestreo se real...
- Autores:
- Tipo de recurso:
- Fecha de publicación:
- 2022
- Institución:
- Universidad de Caldas
- Repositorio:
- Repositorio Institucional U. Caldas
- Idioma:
- eng
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- oai:repositorio.ucaldas.edu.co:ucaldas/23466
- Acceso en línea:
- https://repositorio.ucaldas.edu.co/handle/ucaldas/23466
https://doi.org/10.17151/bccm.2023.27.1.3
- Palabra clave:
- Macroinvertebrados bentónicos
agricultura
urbanismo
calidad ambiental
Benthic macroinvertebrates
agriculture
urbanism
environmental quality
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- openAccess
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- https://creativecommons.org/licenses/by-nc-sa/4.0/
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Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial Physicochemical and Biological Structure as Indicators of the Environmental Quality of Surface Water Streams |
| title |
Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial |
| spellingShingle |
Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial Macroinvertebrados bentónicos agricultura urbanismo calidad ambiental Benthic macroinvertebrates agriculture urbanism environmental quality |
| title_short |
Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial |
| title_full |
Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial |
| title_fullStr |
Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial |
| title_full_unstemmed |
Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial |
| title_sort |
Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficial |
| dc.subject.none.fl_str_mv |
Macroinvertebrados bentónicos agricultura urbanismo calidad ambiental Benthic macroinvertebrates agriculture urbanism environmental quality |
| topic |
Macroinvertebrados bentónicos agricultura urbanismo calidad ambiental Benthic macroinvertebrates agriculture urbanism environmental quality |
| description |
La cuenca baja del rio Cusiana es un área afectada por diferentes actividades socioeconómicas. El trabajo tiene como objetivo establecer la estructura fisicoquímica y biológica de las áreas influenciadas por agricultura, ganadería y descargas de aguas residuales de áreas urbanas. El muestreo se realizó en dos localidades, la primera en el municipio de Aguazul y la segunda en el municipio de Maní en el departamento del Casanare (Colombia). Se realizaron cuatro monitoreos considerando diferencias estacionales en precipitación y sequía, las variables analizadas fueron: Temperatura, Alcalinidad, Conductividad, Turbiedad, DBO, DQO, Dureza Total, Fósforo Total, Nitratos, Oxígeno Disuelto, pH, Sólidos Suspendidos y muestreo de comunidades de macroinvertebrados bentónicos. Para determinar la calidad en los periodos muestreados, se estimaron indicadores fisicoquímicos ICA NSF, teniendo en cuenta los usos que presenta el recurso hídrico, reportando calidad media. Se reportaron 1491 individuos, distribuidos en siete órdenes y 20 familias. Al calcular el índice BMWP/Col para las dos estaciones de monitoreo, la estación Aguazul presenta una calidad dudosa cuya significancia ambiental correspondió a Aguas Ligeramente Contaminadas, disminuyendo significativamente a Aguas Moderadamente Contaminadas. La Estación Maní pasó de estado dudoso a estado crítico y de aguas moderadamente contaminadas a muy contaminadas. Estudios de esta naturaleza permiten a las entidades tomar decisiones acertadas sobre el uso y manejo adecuado de los sistemas hídricos de la región. |
| publishDate |
2022 |
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2022-01-01 2023-01-01T00:00:00Z 2023-01-01T00:00:00Z 2025-10-08T21:06:25Z 2025-10-08T21:06:25Z |
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http://purl.org/coar/resource_type/c_2df8fbb1 |
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0123-3068 https://repositorio.ucaldas.edu.co/handle/ucaldas/23466 10.17151/bccm.2023.27.1.3 2462-8190 https://doi.org/10.17151/bccm.2023.27.1.3 |
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0123-3068 10.17151/bccm.2023.27.1.3 2462-8190 |
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eng |
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eng |
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70 1 55 27 Boletín Científico Centro de Museos Museo de Historia Natural Alba-Tercedor, J. (Dec. 1996). Macroinvertebrados acuaticos y calidad de las aguas de los rios. IV Simposio sobre el Agua en Andalucía: Almería (Vol. 2, p. 203). IGME. Allan, J. D., Flecker, A. S., Segnini, S., Taphorn, D. C., Sokol, E., & Kling, G. W. (2006). Limnology of Andean piedmont rivers of Venezuela. Journal of the North American Benthological Society, 25(1), 66-81. https://doi.org/10.1899/0887-3593(2006)25[66:LOAPRO]2.0.CO;2 Andrade, E. M. D., Lopes, F. B., Palácio, H. A. Q., Aquino, D. D. N., & Alexandre, D. M. B. (2010). Land use and groundwater quality: The case of baixo acaraú irrigated perimeter, brazil. Revista Ciência Agronômica, 41(2), 208-215. https://doi.org/10.1590/S1806-66902010000200006 Arciniégas Suárez, C. A. (2012). Diagnosis and control of particulate matter: total suspended particles pm10 breathable fraction. Luna Azul, 2(34), 195-213. http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S1909-24742012000100012 Arias-Madrid, D., López-Paz, O. A., & Jiménez-Builes, J. A. (2012). Sediment Analysis Using a StructuredProgramming Approach. TecnoLógicas, 2(29), 49-67. https://doi.org/10.22430/22565337.21 Benayas, J. M. R., Newton, A. C., Diaz, A., & Bullock, J. M. (2009). Enhancement of Biodiversity and Ecosystem Services by Ecological Restoration: A Meta-Analysis. Science, 325(5944), 1121-1124. https://doi.org/10.1126/science.1172460 Bernal, E., García, D., Novoa, M.A. & Pinzón, A. (2006). Characterization of the Macroinvertebrate Community of Paloblanco Gulch, Otun River Basin (Risaralda, Colombia). Acta Biológica Colombiana, 11(2), 45-59. http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0120-548X2006000200004 Bervoets, L., Wils, C. & Verheyen, R. (1996). Tolerance of chironomus riparius larvae (Diptera: Chironomidae) to salinity. Bulletin of Environmental Contamination and Toxicology, 57(5), 829-835. https://doi.org/10.1007/s001289900264 Castellanos Romero, K., Pizarro Del Río, J., Cuentas Villarreal, K., Costa Anillo, J. C., Pino Zarate, Z., Gutierrez, L. C., Franco, O. L., & Arboleda Valencia, J. W. (2017). Lentic water quality characterization using macroinvertebrates as bioindicators: an adapted BMWP index. Ecological Indicators, 72, 53-66. https://doi.org/10.1016/j.ecolind.2016.07.023 Cifuentes Osorio, G. R., Gamboa Becerra, R. A., & Rocha Gil, Z. E. (2014). Diagnóstico fisicoquímico, biológico y microbiológico de las aguas del embalse de La Copa (Boyacá). Universidad de Boyacá. https://doi.org/10.24267/9789588642529 Domínguez, E. & Fernández, H. R. (Eds.) (2009). Macroinvertebrados bentónicos Sudamericanos : sistemática y biología. Fundación Miguel Lillo. Dügel, M. & Kazanci, N. (2004). Assessment of water quality of the büyük menderes river (Turkey) by using ordination and classification of macroinvertebrates and environmental variables. Journal of Freshwater Ecology, 19(4), 605-612. https://doi.org/10.1080/02705060.2004.9664741 Forero, L. C., Longo, M., Ramírez, J. J. & Chalar, G. (2014). Aquatic Ecological Index based on freshwater (ICERN-MAE) for the Río Negro watershed, Colombia. Revista de Biología Tropical, 62(2), 233-247. https://www.scielo.sa.cr/scielo.php?script=sci_arttext&pid=S0034-77442014000600016 Gamboa, M., Reyes, R. & Arrivillaga, J. (2008). Benthic macroinvertebrates as bioindicators of environmental health. Boletín de Malariología y Salud Ambiental, 48(2), 109-120. Giacometti V., J. C. & Bersosa, V. F. (2019). Macroinvertebrados acuáticos y su importancia como bioindicadores de calidad del agua en el río Alambi. Boletín Técnico, Serie Zoológica, 6(2), 17-32. https://journal.espe.edu.ec/ojs/index.php/revista-serie-zoologica/article/view/1394 González, G., S. M., Ramírez, Y. P., Meza, A. M. & Gomes Dias, L. (2012). Acuatic macroinvertebrates diversity and water quality of supply streams from Manizales municipality. Boletín Científico. Centro de Museos. Museo de Historia Natural, 16(2), 135-148. http://www.scielo.org.co/scielo.php?pid=S0123-30682012000200012&script=sci_abstract Guerrero Chapal, O. E. & Romero Rojas, J.A. (2018). Evaluación de la planta de tratamiento de agua potable del sector La Loma del Cabí, en el municipio de Quibdó. Revista de la Escuela Colombiana de Ingeniería, 110, 67-71. Gutiérrez, Y., & Dias, L. G. (2015). Ephemeroptera (Insecta) from Caldas-Colombia, taxonomic keys to the genera, and distribution notes. Papéis Avulsos de Zoologia, 55(2), 13-46. https://doi.org/10.1590/0031-1049.2015.55.02 Heckman, C. W. (2006). Encyclopedia of South American Aquatic Insects: Odonata - Anisoptera. Illustrated keys to known families, genera, and species in South America. Springer Netherlands. Jacobsen, D., Schultz, R., & Encalada, A. (1997). Structure and diversity of stream invertebrate assemblages: The influence of temperature with altitude and latitude. Freshwater Biology, 38(2), 247-261. https://doi.org/10.1046/j.1365-2427.1997.00210.x Jiménez, M. A., & Vélez, M. V. (2006). Comparative analysis of indicators of surface water quality. Avances en Recursos Hidráulicos, 1(14), 53-69. Kalibbala, H. M., Nalubega, M., wahlberg, O., & Hultman, B. (2006). Performance evaluation of drinking water treatment plants in Kampala—Case of Ggaba II. Reviewed Paper, 11, 273-376. Ledesma, C., Bonansea, M., Rodriguez, C., & Sánchez, A. R. (2013). Determination of eutrophication indicators in the Río Tercero reservoir, Córdoba (Argentina). Revista Ciência Agronômica, 44(3), 419-425. https://doi.org/10.1590/S1806-66902013000300002 Maltby, L. (1991). Pollution as a Probe of Life-History Adaptation in Asellus aquaticus (Isopoda). Oikos, 61(1), 11-18. https://doi.org/10.2307/3545402 Manzo, V. (2005). Key to the South American genera of Elmidae (Insecta: Coleoptera) with distributional data. Studies on Neotropical Fauna and Environment, 40(3), 201-208. https://doi.org/10.1080/01650520500140619 McClain, M. E., & Naiman, R. J. (2008). Andean influences on the biogeochemistry and ecology of the Amazon River. BioScience, 58(4), 325-338. https://doi.org/10.1641/B580408 Meléndez, V. G., Quintero, O. C., & Ramirez, N. A. (2013). Application of NSF, DINIUS, and BMWP water quality indices in the La Ayurá stream, Antioquia, Colombia. Gestión y Ambiente, 16(1), 97-107. Mosquera-Murillo, Z. & Córdoba-Aragón, K. (2017). Characterization of the aquatic macroinvertebrates community in three swamp of Atrato river, Chocó, Colombia. Investigación Biodiversidad y Desarrollo, 34(1), 22-35. Muñoz, D. (1999). Guide for the generic identification of Ephemeroptera in the savannah of Bogotá, Colombia. Nymphs and some genera of adults. Actualidades Biológicas, 21(70), 47-60. Oviedo-Machado, N., & Reinoso-Flórez, G. (2018). Ecological aspects of Chironomidae larvae (Diptera) in the Opia River (Tolima, Colombia). Revista Colombiana de Entomología, 44(1), 101-109. https://doi.org/10.25100/socolen.v44i1.6546 Paukert, C., & Willis, W. D. (2003). Aquatic invertebrate assemblages in shallow prairie lakes: Fish and environmental influences. Journal of Freshwater Ecology, 18(1), 523-536. https://doi.org/10.1080/02705060.2003.9663993 Pérez, B. (2005). Spatial variation of the composition and diversity of Ephemeroptera genera in a tropical high-Andean river. Entomotrópica, 20(1), 49-57. Pérez, J. H., Rocha-Gil, Z. E., Pérez-Rubiano, C. C., & Bernal-Figueroa, A. A. (2021). Biological quality in an aquatic system influenced by mining and agricultural activities: Salitre River, Boyacá (Colombia). Tropical and Subtropical Agroecosystems, 24(3), 93-107. Posada-García, J. A., & Roldán-Pérez, G. (2003). Illustrated key and diversity of Trichoptera larvae in the northwest of Colombia. Caldasia, 25(1), 169-192. Ramírez, A., Restrepo, R., & Viña, G. (1997). Four pollution indexes for characterization of continental waters. Formulations and application. Ciencia, Tecnología y Futuro, 1(3), 135-153. Restrepo-Manrique, R. (2013). Methodology of Environmental Engineering students using physicochemical and biological indexes to determine water quality in the Mensuli stream (Santander, Colombia). Revista AIDIS de Ingeniería y Ciencias Ambientales, 2(4), 37-45. Restrepo-Manrique, R., & Salcedo-Reyes, J. C. (2018). Application of physico-chemical indexes and BMWP/Col. to establish the impact of urbanization on Río Frío (Bucaramanga, Colombia). Universitas Scientiarum, 23(1), 109-128. https://doi.org/10.11144/javeriana.sc23-1.aopc Rice, S., Greenwood, M., & Joyce, C. (2001). Tributaries, sediment sources, and the longitudinal organization of macroinvertebrate fauna along river systems. Canadian Journal of Fisheries and Aquatic Sciences, 58, 824-840. https://doi.org/10.1139/f01-022 Ríos, T., Vega, J. A., & Guinard, J. C. (2013). Diversity and abundance of aquatic macroinvertebrates and water quality in the upper and lower basins of the Gariché River, Chiriquí province, Panama. Gestión y Ambiente, 16(2), 61-70. Riss, W., Ospina, R., & Rodríguez, J. D. (2002). Establishment of bioindication values for aquatic macroinvertebrates in the Sabana de Bogotá. Caldasia, 24(1), 135-156. Rizzo, L. (2009). Inactivation and injury of total coliform bacteria after primary disinfection of drinking water by TiO2 photocatalysis. Journal of Hazardous Materials, 165(3), 48-51. https://doi.org/10.1016/j.jhazmat.2008.09.068 Rocha, Z. E. G., Rodríguez, L. Á. C., Rodríguez, J. L. V., & Soler, X. D. (2015). Water quality bioindicators in areas with ecological restoration of the La Colorada stream, Villa de Leyva, Boyacá. Revista I3+, Investigación, Innovación, Ingeniería, 2(2), 10-27. https://doi.org/10.24267/23462329.108 Rodríguez-Zambrano, A. P., & Aranguren-Riaño, N. J. (2014). Planktonic community of a reservoir under high environmental stress: La Playa, upper basin of the Chicamocha River (Tuta, Boyacá), Colombia. Biota Colombiana, 15(2), 95-110. https://doi.org/10.21068/bc.v15i2.323 Rojas-Higuera, N., Sánchez-Garibello, A., Matiz-Villamil, A., Salcedo-Reyes, J., Carrascal-Camacho, A. K., & Pedroza-Rodríguez, A. M. (2010). Evaluation of three methods for the inactivation of coliforms and Escherichia coli present in domestic wastewater used for irrigation. Universitas Scientiarum, 15(2), 139. https://doi.org/10.11144/javeriana.SC15-2.iaon Roldán-Pérez, G. (2016). Macroinvertebrates as bioindicators of water quality: Four decades of development in Colombia and Latin America. Revista de la Academia Colombiana de Ciencias Exactas, Físicas y Naturales, 40(155), 254-274. https://doi.org/10.18257/raccefyn.335 Roldán-Pérez, G. (2009). Development of Limnology in Colombia: Four decades of progressive advances. Actualidades Biológicas, 31(91), 227-237. Roldán-Pérez, G. (2003). Bioindication of water quality in Colombia: Proposal for the use of the BMWP Col method. Editorial Universidad de Antioquia. Roldán-Pérez, G. (1999). Macroinvertebrates and their value as indicators of water quality. Revista de La Academia Colombiana de Ciencias Exactas Físicas y Naturales, 23(88), 375-387. Roldán-Pérez, G. (1985). Contribution to the knowledge of the nymphs of ephemeropterans (class: insecta, order: Ephemeroptera) in the department of Antioquia, Colombia. Actualidades Biológicas, 14(51), 3-13. Roldán-Pérez, G. (1980). Limnological studies of four different Neotropical ecosystems with special reference to their ephemeropteran fauna. Actualidades Biológicas, 9(34), 103-117. Roldán-Pérez, G. (1996). Guide for the study of aquatic macroinvertebrates in the department of Antioquia. Fondo FEN Colombia. Rúa García, G., Tamaris Turizo, C., & Zúñiga, M. d. C. (2018). Composition and Distribution of the Ephemeroptera, Plecoptera and Trichoptera Orders (Insecta) in Rivers of Sierra Nevada of Santa Marta, Colombia. Revista de Ciencias, 19(2), 19. https://doi.org/10.25100/rc.v19i2.6270 Soto, B.H, Pardo, R., Vega, M., Barrado, E., Fernandez, J. M., & Fernandez, L. (2000). Temporal evolution of groundwater composition in an alluvial aquifer (Pisuerga River, Spain) by principal component analysis. Water Research, 34(3), 807-816. https://doi.org/10.1016/S0043-1354(99)00225-0 Stefouli, M. (2005). Monitoring and Assessing Internal Waters (Lakes) Using Operational Space Born Data and Field Measurements. European Water, 25, 25-33. Tejerina, E. G., & Molineri, C. (2007). Chironomidae communities (Diptera) in mountain streams of the NOA: A comparison between Yungas and Monte. Revista de la Sociedad Entomológica Argentina, 66(3), 169-177. Terneus, E., Hernández, K., & Racines, M. J. (2012). Ecological assessment of the Lliquino River through aquatic macroinvertebrates, Pastaza - Ecuador. Revista de Ciencias, 16, 31-45. Tokeshi, M. (1993). On the evolution of commensalism in the Chironomidae. Freshwater Biology, 29(3), 481-489. https://doi.org/10.1111/j.1365-2427.1993.tb00782.x Torrado, R. D. G. (2016). Evaluation of water quality in the Tejo River (Ocaña, Colombia) using aquatic macroinvertebrates and physicochemical parameters. Revista Ingenio UFPSO, 9(1), 121-132. Torralba, A., & Alonso, M. (2011). Biodiversity of Odonata in the Sierra de Fonfría and Jiloca River Basin (Teruel): Community analysis. Xiloca, 39(1), 151-168. Trama, F. A., Gustavson, S. A., Demarcy, L., Cardozo, L. E., Palomino, B. A. J., Ccuro, F. E. M., Alvarado, J. R., & Viale, F. S. L. (2020). Habitat quality indices and macroinvertebrates in seven basins of the Yanachaga Chemillén National Park and its Buffer Zone. Revista Peruana de Biología, 27(2), 149-168. https://doi.org/10.15381/rpb.v27i2.16730 Wallace, J. B., & Merritt, R. W. (1980). Filter-feeding ecology of aquatic insects. Annual Review of Entomology, 25(1), 103-132. https://doi.org/10.1146/annurev.en.25.010180.000535 Walteros-Rodríguez, J. M. (2010). Preliminary study of the community of aquatic macroinvertebrates in the Torre Cuatro Forest Reserve. Centro de Museos Museo de Historia Natural, 14, 137-149. Whiles, M. R., Brock, B. L., Franzen, A. C., & Dinsmore, S. C. (2000). Stream invertebrate communities, water quality, and landuse patterns in an agricultural drainage basin of northeastern Nebraska, USA. Environmental Management, 26(5), 563-576. Xie, Z., Cai, Q., Tang, T., Ma, K., Liu, R., & Ye, L. (2003). Structure of macrozoobenthos of the East Dongting Nature Reserve, with emphasis on relationships with environmental variables. Journal of Freshwater Ecology, 18, 405-413. https://doi.org/10.1080/02705060.2003.9663976 Zúñiga, M., Rojas, A. M. H., & Caicedo, G. (1993). Environmental indicators of water quality in the Cauca River Basin. Revista AINSA, 13(2), 17-28. Zúñiga, M., Rojas, A., & Serrato, C. (1994). Interrelation of environmental indicators of quality in superficial water bodies of the Cauca Valley. Revista Colombiana de Entomología, 20, 124-130. Núm. 1 , Año 2023 : Enero - Junio https://revistasojs.ucaldas.edu.co/index.php/boletincientifico/article/download/8108/6857 |
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Estructura fisicoquímica y biológica como indicadores de la calidad ambiental de corrientes de agua superficialPhysicochemical and Biological Structure as Indicators of the Environmental Quality of Surface Water StreamsMacroinvertebrados bentónicosagriculturaurbanismocalidad ambientalBenthic macroinvertebratesagricultureurbanismenvironmental qualityLa cuenca baja del rio Cusiana es un área afectada por diferentes actividades socioeconómicas. El trabajo tiene como objetivo establecer la estructura fisicoquímica y biológica de las áreas influenciadas por agricultura, ganadería y descargas de aguas residuales de áreas urbanas. El muestreo se realizó en dos localidades, la primera en el municipio de Aguazul y la segunda en el municipio de Maní en el departamento del Casanare (Colombia). Se realizaron cuatro monitoreos considerando diferencias estacionales en precipitación y sequía, las variables analizadas fueron: Temperatura, Alcalinidad, Conductividad, Turbiedad, DBO, DQO, Dureza Total, Fósforo Total, Nitratos, Oxígeno Disuelto, pH, Sólidos Suspendidos y muestreo de comunidades de macroinvertebrados bentónicos. Para determinar la calidad en los periodos muestreados, se estimaron indicadores fisicoquímicos ICA NSF, teniendo en cuenta los usos que presenta el recurso hídrico, reportando calidad media. Se reportaron 1491 individuos, distribuidos en siete órdenes y 20 familias. Al calcular el índice BMWP/Col para las dos estaciones de monitoreo, la estación Aguazul presenta una calidad dudosa cuya significancia ambiental correspondió a Aguas Ligeramente Contaminadas, disminuyendo significativamente a Aguas Moderadamente Contaminadas. La Estación Maní pasó de estado dudoso a estado crítico y de aguas moderadamente contaminadas a muy contaminadas. Estudios de esta naturaleza permiten a las entidades tomar decisiones acertadas sobre el uso y manejo adecuado de los sistemas hídricos de la región.The lower basin of the Cusiana River is an area affected by various socioeconomic activities. This study aims to establish the physicochemical and biological structure of areas influenced by agriculture, livestock, and wastewater discharges from urban areas. Sampling was conducted at two locations, the municipality of Aguazul and the municipality of Maní in the Casanare department, Colombia. Four monitoring surveys were carried out considering seasonal differences in rainfall and drought. The variables analyzed were: temperature, alkalinity, conductivity, turbidity, BOD, COD, total hardness, total phosphorus, nitrates, dissolved oxygen, pH, suspended solids and sampling of benthic macroinvertebrate communities. To assess water quality in the sampled periods, physicochemical indicators ICA NSF were estimated, considering the intended uses of the water resource, and reporting average quality. A total of 1491 individuals were reported, distributed across seven orders and 20 families. The BMWP/Col index was calculated for the two monitoring stations. The Aguazul station showed doubtful water, categorized as slightly polluted waters, which decreased significantly to moderately polluted waters. The Maní Station transitioned from dubious to critical condition and from moderately polluted to very polluted waters. Studies of this nature allow entities to make informed decisions regarding the proper using and management of the region’s water systems.Boletín Científico2023-01-01T00:00:00Z2025-10-08T21:06:25Z2023-01-01T00:00:00Z2025-10-08T21:06:25Z2022-01-01Artículo de revistahttp://purl.org/coar/resource_type/c_6501Textinfo:eu-repo/semantics/articleJournal articleinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/version/c_970fb48d4fbd8a85http://purl.org/coar/resource_type/c_2df8fbb1application/pdf0123-3068https://repositorio.ucaldas.edu.co/handle/ucaldas/2346610.17151/bccm.2023.27.1.32462-8190https://doi.org/10.17151/bccm.2023.27.1.3https://revistasojs.ucaldas.edu.co/index.php/boletincientifico/article/view/8108eng7015527Boletín Científico Centro de Museos Museo de Historia NaturalAlba-Tercedor, J. (Dec. 1996). Macroinvertebrados acuaticos y calidad de las aguas de los rios. IV Simposio sobre el Agua en Andalucía: Almería (Vol. 2, p. 203). IGME.Allan, J. D., Flecker, A. S., Segnini, S., Taphorn, D. C., Sokol, E., & Kling, G. W. (2006). Limnology of Andean piedmont rivers of Venezuela. Journal of the North American Benthological Society, 25(1), 66-81. https://doi.org/10.1899/0887-3593(2006)25[66:LOAPRO]2.0.CO;2Andrade, E. M. D., Lopes, F. B., Palácio, H. A. Q., Aquino, D. D. N., & Alexandre, D. M. B. (2010). Land use and groundwater quality: The case of baixo acaraú irrigated perimeter, brazil. Revista Ciência Agronômica, 41(2), 208-215. https://doi.org/10.1590/S1806-66902010000200006Arciniégas Suárez, C. A. (2012). Diagnosis and control of particulate matter: total suspended particles pm10 breathable fraction. Luna Azul, 2(34), 195-213. http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S1909-24742012000100012Arias-Madrid, D., López-Paz, O. A., & Jiménez-Builes, J. A. (2012). Sediment Analysis Using a StructuredProgramming Approach. TecnoLógicas, 2(29), 49-67. https://doi.org/10.22430/22565337.21Benayas, J. M. R., Newton, A. C., Diaz, A., & Bullock, J. M. (2009). Enhancement of Biodiversity and Ecosystem Services by Ecological Restoration: A Meta-Analysis. Science, 325(5944), 1121-1124. https://doi.org/10.1126/science.1172460Bernal, E., García, D., Novoa, M.A. & Pinzón, A. (2006). Characterization of the Macroinvertebrate Community of Paloblanco Gulch, Otun River Basin (Risaralda, Colombia). Acta Biológica Colombiana, 11(2), 45-59. http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0120-548X2006000200004Bervoets, L., Wils, C. & Verheyen, R. (1996). Tolerance of chironomus riparius larvae (Diptera: Chironomidae) to salinity. Bulletin of Environmental Contamination and Toxicology, 57(5), 829-835. https://doi.org/10.1007/s001289900264Castellanos Romero, K., Pizarro Del Río, J., Cuentas Villarreal, K., Costa Anillo, J. C., Pino Zarate, Z., Gutierrez, L. C., Franco, O. L., & Arboleda Valencia, J. W. (2017). Lentic water quality characterization using macroinvertebrates as bioindicators: an adapted BMWP index. Ecological Indicators, 72, 53-66. https://doi.org/10.1016/j.ecolind.2016.07.023Cifuentes Osorio, G. R., Gamboa Becerra, R. A., & Rocha Gil, Z. E. (2014). Diagnóstico fisicoquímico, biológico y microbiológico de las aguas del embalse de La Copa (Boyacá). Universidad de Boyacá. https://doi.org/10.24267/9789588642529Domínguez, E. & Fernández, H. R. (Eds.) (2009). Macroinvertebrados bentónicos Sudamericanos : sistemática y biología. Fundación Miguel Lillo.Dügel, M. & Kazanci, N. (2004). Assessment of water quality of the büyük menderes river (Turkey) by using ordination and classification of macroinvertebrates and environmental variables. Journal of Freshwater Ecology, 19(4), 605-612. https://doi.org/10.1080/02705060.2004.9664741Forero, L. C., Longo, M., Ramírez, J. J. & Chalar, G. (2014). Aquatic Ecological Index based on freshwater (ICERN-MAE) for the Río Negro watershed, Colombia. Revista de Biología Tropical, 62(2), 233-247. https://www.scielo.sa.cr/scielo.php?script=sci_arttext&pid=S0034-77442014000600016Gamboa, M., Reyes, R. & Arrivillaga, J. (2008). Benthic macroinvertebrates as bioindicators of environmental health. Boletín de Malariología y Salud Ambiental, 48(2), 109-120.Giacometti V., J. C. & Bersosa, V. F. (2019). Macroinvertebrados acuáticos y su importancia como bioindicadores de calidad del agua en el río Alambi. Boletín Técnico, Serie Zoológica, 6(2), 17-32. https://journal.espe.edu.ec/ojs/index.php/revista-serie-zoologica/article/view/1394González, G., S. M., Ramírez, Y. P., Meza, A. M. & Gomes Dias, L. (2012). Acuatic macroinvertebrates diversity and water quality of supply streams from Manizales municipality. Boletín Científico. Centro de Museos. Museo de Historia Natural, 16(2), 135-148. http://www.scielo.org.co/scielo.php?pid=S0123-30682012000200012&script=sci_abstractGuerrero Chapal, O. E. & Romero Rojas, J.A. (2018). Evaluación de la planta de tratamiento de agua potable del sector La Loma del Cabí, en el municipio de Quibdó. Revista de la Escuela Colombiana de Ingeniería, 110, 67-71.Gutiérrez, Y., & Dias, L. G. (2015). Ephemeroptera (Insecta) from Caldas-Colombia, taxonomic keys to the genera, and distribution notes. Papéis Avulsos de Zoologia, 55(2), 13-46. https://doi.org/10.1590/0031-1049.2015.55.02Heckman, C. W. (2006). Encyclopedia of South American Aquatic Insects: Odonata - Anisoptera. Illustrated keys to known families, genera, and species in South America. Springer Netherlands.Jacobsen, D., Schultz, R., & Encalada, A. (1997). Structure and diversity of stream invertebrate assemblages: The influence of temperature with altitude and latitude. Freshwater Biology, 38(2), 247-261. https://doi.org/10.1046/j.1365-2427.1997.00210.xJiménez, M. A., & Vélez, M. V. (2006). Comparative analysis of indicators of surface water quality. Avances en Recursos Hidráulicos, 1(14), 53-69.Kalibbala, H. M., Nalubega, M., wahlberg, O., & Hultman, B. (2006). Performance evaluation of drinking water treatment plants in Kampala—Case of Ggaba II. Reviewed Paper, 11, 273-376.Ledesma, C., Bonansea, M., Rodriguez, C., & Sánchez, A. R. (2013). Determination of eutrophication indicators in the Río Tercero reservoir, Córdoba (Argentina). Revista Ciência Agronômica, 44(3), 419-425. https://doi.org/10.1590/S1806-66902013000300002Maltby, L. (1991). Pollution as a Probe of Life-History Adaptation in Asellus aquaticus (Isopoda). Oikos, 61(1), 11-18. https://doi.org/10.2307/3545402Manzo, V. (2005). Key to the South American genera of Elmidae (Insecta: Coleoptera) with distributional data. Studies on Neotropical Fauna and Environment, 40(3), 201-208. https://doi.org/10.1080/01650520500140619McClain, M. E., & Naiman, R. J. (2008). Andean influences on the biogeochemistry and ecology of the Amazon River. BioScience, 58(4), 325-338. https://doi.org/10.1641/B580408Meléndez, V. G., Quintero, O. C., & Ramirez, N. A. (2013). Application of NSF, DINIUS, and BMWP water quality indices in the La Ayurá stream, Antioquia, Colombia. Gestión y Ambiente, 16(1), 97-107.Mosquera-Murillo, Z. & Córdoba-Aragón, K. (2017). Characterization of the aquatic macroinvertebrates community in three swamp of Atrato river, Chocó, Colombia. Investigación Biodiversidad y Desarrollo, 34(1), 22-35.Muñoz, D. (1999). Guide for the generic identification of Ephemeroptera in the savannah of Bogotá, Colombia. Nymphs and some genera of adults. Actualidades Biológicas, 21(70), 47-60.Oviedo-Machado, N., & Reinoso-Flórez, G. (2018). Ecological aspects of Chironomidae larvae (Diptera) in the Opia River (Tolima, Colombia). Revista Colombiana de Entomología, 44(1), 101-109. https://doi.org/10.25100/socolen.v44i1.6546Paukert, C., & Willis, W. D. (2003). Aquatic invertebrate assemblages in shallow prairie lakes: Fish and environmental influences. Journal of Freshwater Ecology, 18(1), 523-536. https://doi.org/10.1080/02705060.2003.9663993Pérez, B. (2005). Spatial variation of the composition and diversity of Ephemeroptera genera in a tropical high-Andean river. Entomotrópica, 20(1), 49-57.Pérez, J. H., Rocha-Gil, Z. E., Pérez-Rubiano, C. C., & Bernal-Figueroa, A. A. (2021). Biological quality in an aquatic system influenced by mining and agricultural activities: Salitre River, Boyacá (Colombia). Tropical and Subtropical Agroecosystems, 24(3), 93-107.Posada-García, J. A., & Roldán-Pérez, G. (2003). Illustrated key and diversity of Trichoptera larvae in the northwest of Colombia. Caldasia, 25(1), 169-192.Ramírez, A., Restrepo, R., & Viña, G. (1997). Four pollution indexes for characterization of continental waters. Formulations and application. Ciencia, Tecnología y Futuro, 1(3), 135-153.Restrepo-Manrique, R. (2013). Methodology of Environmental Engineering students using physicochemical and biological indexes to determine water quality in the Mensuli stream (Santander, Colombia). Revista AIDIS de Ingeniería y Ciencias Ambientales, 2(4), 37-45.Restrepo-Manrique, R., & Salcedo-Reyes, J. C. (2018). Application of physico-chemical indexes and BMWP/Col. to establish the impact of urbanization on Río Frío (Bucaramanga, Colombia). Universitas Scientiarum, 23(1), 109-128. https://doi.org/10.11144/javeriana.sc23-1.aopcRice, S., Greenwood, M., & Joyce, C. (2001). Tributaries, sediment sources, and the longitudinal organization of macroinvertebrate fauna along river systems. Canadian Journal of Fisheries and Aquatic Sciences, 58, 824-840. https://doi.org/10.1139/f01-022Ríos, T., Vega, J. A., & Guinard, J. C. (2013). Diversity and abundance of aquatic macroinvertebrates and water quality in the upper and lower basins of the Gariché River, Chiriquí province, Panama. Gestión y Ambiente, 16(2), 61-70.Riss, W., Ospina, R., & Rodríguez, J. D. (2002). Establishment of bioindication values for aquatic macroinvertebrates in the Sabana de Bogotá. Caldasia, 24(1), 135-156.Rizzo, L. (2009). Inactivation and injury of total coliform bacteria after primary disinfection of drinking water by TiO2 photocatalysis. Journal of Hazardous Materials, 165(3), 48-51. https://doi.org/10.1016/j.jhazmat.2008.09.068Rocha, Z. E. G., Rodríguez, L. Á. C., Rodríguez, J. L. V., & Soler, X. D. (2015). Water quality bioindicators in areas with ecological restoration of the La Colorada stream, Villa de Leyva, Boyacá. Revista I3+, Investigación, Innovación, Ingeniería, 2(2), 10-27. https://doi.org/10.24267/23462329.108Rodríguez-Zambrano, A. P., & Aranguren-Riaño, N. J. (2014). Planktonic community of a reservoir under high environmental stress: La Playa, upper basin of the Chicamocha River (Tuta, Boyacá), Colombia. Biota Colombiana, 15(2), 95-110. https://doi.org/10.21068/bc.v15i2.323Rojas-Higuera, N., Sánchez-Garibello, A., Matiz-Villamil, A., Salcedo-Reyes, J., Carrascal-Camacho, A. K., & Pedroza-Rodríguez, A. M. (2010). Evaluation of three methods for the inactivation of coliforms and Escherichia coli present in domestic wastewater used for irrigation. Universitas Scientiarum, 15(2), 139. https://doi.org/10.11144/javeriana.SC15-2.iaonRoldán-Pérez, G. (2016). Macroinvertebrates as bioindicators of water quality: Four decades of development in Colombia and Latin America. Revista de la Academia Colombiana de Ciencias Exactas, Físicas y Naturales, 40(155), 254-274. https://doi.org/10.18257/raccefyn.335Roldán-Pérez, G. (2009). Development of Limnology in Colombia: Four decades of progressive advances. Actualidades Biológicas, 31(91), 227-237.Roldán-Pérez, G. (2003). Bioindication of water quality in Colombia: Proposal for the use of the BMWP Col method. Editorial Universidad de Antioquia.Roldán-Pérez, G. (1999). Macroinvertebrates and their value as indicators of water quality. Revista de La Academia Colombiana de Ciencias Exactas Físicas y Naturales, 23(88), 375-387.Roldán-Pérez, G. (1985). Contribution to the knowledge of the nymphs of ephemeropterans (class: insecta, order: Ephemeroptera) in the department of Antioquia, Colombia. Actualidades Biológicas, 14(51), 3-13.Roldán-Pérez, G. (1980). Limnological studies of four different Neotropical ecosystems with special reference to their ephemeropteran fauna. Actualidades Biológicas, 9(34), 103-117.Roldán-Pérez, G. (1996). Guide for the study of aquatic macroinvertebrates in the department of Antioquia. Fondo FEN Colombia.Rúa García, G., Tamaris Turizo, C., & Zúñiga, M. d. C. (2018). Composition and Distribution of the Ephemeroptera, Plecoptera and Trichoptera Orders (Insecta) in Rivers of Sierra Nevada of Santa Marta, Colombia. Revista de Ciencias, 19(2), 19. https://doi.org/10.25100/rc.v19i2.6270Soto, B.H, Pardo, R., Vega, M., Barrado, E., Fernandez, J. M., & Fernandez, L. (2000). Temporal evolution of groundwater composition in an alluvial aquifer (Pisuerga River, Spain) by principal component analysis. Water Research, 34(3), 807-816. https://doi.org/10.1016/S0043-1354(99)00225-0Stefouli, M. (2005). Monitoring and Assessing Internal Waters (Lakes) Using Operational Space Born Data and Field Measurements. European Water, 25, 25-33.Tejerina, E. G., & Molineri, C. (2007). Chironomidae communities (Diptera) in mountain streams of the NOA: A comparison between Yungas and Monte. Revista de la Sociedad Entomológica Argentina, 66(3), 169-177.Terneus, E., Hernández, K., & Racines, M. J. (2012). Ecological assessment of the Lliquino River through aquatic macroinvertebrates, Pastaza - Ecuador. Revista de Ciencias, 16, 31-45.Tokeshi, M. (1993). On the evolution of commensalism in the Chironomidae. Freshwater Biology, 29(3), 481-489. https://doi.org/10.1111/j.1365-2427.1993.tb00782.xTorrado, R. D. G. (2016). Evaluation of water quality in the Tejo River (Ocaña, Colombia) using aquatic macroinvertebrates and physicochemical parameters. Revista Ingenio UFPSO, 9(1), 121-132.Torralba, A., & Alonso, M. (2011). Biodiversity of Odonata in the Sierra de Fonfría and Jiloca River Basin (Teruel): Community analysis. Xiloca, 39(1), 151-168.Trama, F. A., Gustavson, S. A., Demarcy, L., Cardozo, L. E., Palomino, B. A. J., Ccuro, F. E. M., Alvarado, J. R., & Viale, F. S. L. (2020). Habitat quality indices and macroinvertebrates in seven basins of the Yanachaga Chemillén National Park and its Buffer Zone. Revista Peruana de Biología, 27(2), 149-168. https://doi.org/10.15381/rpb.v27i2.16730Wallace, J. B., & Merritt, R. W. (1980). Filter-feeding ecology of aquatic insects. Annual Review of Entomology, 25(1), 103-132. https://doi.org/10.1146/annurev.en.25.010180.000535Walteros-Rodríguez, J. M. (2010). Preliminary study of the community of aquatic macroinvertebrates in the Torre Cuatro Forest Reserve. Centro de Museos Museo de Historia Natural, 14, 137-149.Whiles, M. R., Brock, B. L., Franzen, A. C., & Dinsmore, S. C. (2000). Stream invertebrate communities, water quality, and landuse patterns in an agricultural drainage basin of northeastern Nebraska, USA. Environmental Management, 26(5), 563-576.Xie, Z., Cai, Q., Tang, T., Ma, K., Liu, R., & Ye, L. (2003). Structure of macrozoobenthos of the East Dongting Nature Reserve, with emphasis on relationships with environmental variables. Journal of Freshwater Ecology, 18, 405-413. https://doi.org/10.1080/02705060.2003.9663976Zúñiga, M., Rojas, A. M. H., & Caicedo, G. (1993). Environmental indicators of water quality in the Cauca River Basin. Revista AINSA, 13(2), 17-28.Zúñiga, M., Rojas, A., & Serrato, C. (1994). Interrelation of environmental indicators of quality in superficial water bodies of the Cauca Valley. Revista Colombiana de Entomología, 20, 124-130.Núm. 1 , Año 2023 : Enero - Juniohttps://revistasojs.ucaldas.edu.co/index.php/boletincientifico/article/download/8108/6857https://creativecommons.org/licenses/by-nc-sa/4.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2Pérez, Johan HernánRocha Gil, Zulma EdelmiraCifuentes Osorio, Gabriel RicardoPérez Rubiano, Claudia ConstanzaParrales Ramírez, Dumar Arieloai:repositorio.ucaldas.edu.co:ucaldas/234662025-10-08T21:06:25Z |
