BIBLIOTECA DE AGUA

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Aguirre, N., Eguiguren, P., Maita, J., Coronel, V., Samaniego, N., Ojeda-Luna, T., & Aguirre-Mendoza, Z. (2015). Vulnerabilidad al cambio climático en la Región Sur del Ecuador: Potenciales impactos en los ecosistemas, producción de biomasa y producción hídrica. Research Gate. https://www.researchgate.net/profile/Juan-Maita/publication/298753988_Vulnerabilidad_al_cambio_climatico_en_la_Region_Sur_del_Ecuador_Potenciales_impactos_en_los_ecosistemas_produccion_de_biomasa_y_produccion_hidrica/links/56f5e70508ae7c1fda2eec85/Vulnera
Albarracín, M., Gaona, J., Chicharo, L., Zalewski, M., Cholango, H., & Azoulay, A. (n.d.). Ecohidrología y su implementación en Ecuador.
Alimi, T. O., Fuller, D. O., Qualls, W. A., Herrera, S. V., Arevalo-Herrera, M., Quinones, M. L., Lacerda, M. V. G., & Beier, J. C. (2015). Predicting potential ranges of primary malaria vectors and malaria in northern South America based on projected changes in climate, land cover and human population. Parasites and Vectors, 8(1), 1–16. https://doi.org/10.1186/s13071-015-1033-9
Ángel-Huertas, A. (2019). Impactos a perpetuidad. El legado de la minería. https://aida-americas.org/es/impactos-a-perpetuidad-el-legado-de-la-mineria
Angelakis, A. N., & Snyder, S. A. (2015). Wastewater treatment and reuse: Past, present, and future. Water (Switzerland), 7(9), 4887–4895. https://doi.org/10.3390/w7094887
Arnal, J. M., Garcia-Fayos, B., Sancho, M., & Verdu, G. (2009). Ultrafiltration membrane cleaning with different chemical solutions after treating surface water. Desalination and Water Treatment, 7(1–3), 198–205. https://doi.org/10.5004/dwt.2009.709
Arteaga-Galarza, D., & Ordóñez-Arízaga, J. (2019). Guía para la gestión del riesgo en sistemas de agua y saneamiento ante amenazas naturales (pp. 1–47). https://doi.org/10.18235/0002038
Balasubramanya, S., & Stifel, D. (2020). Viewpoint: Water, agriculture & poverty in an era of climate change: Why do we know so little? Food Policy, 93. https://doi.org/10.1016/j.foodpol.2020.101905
Ballestero, M., Mejía-Betancourt, A., Arroyo, V., & Real, C. (2015). El Futuro de los Servicios de Agua y Saneamiento en América Latina (pp. 1–39).
Bertule, M., Lloyd, J., Korsgaard, L., Dalton, J., Welling, R., Barchiesi, S., & Smith, M. (2014). Nations Environment Programme Publication: Green Infrastructure Guide for Water Management: Ecosystem-based management approaches for water-related infrastructure projects. https://wedocs.unep.org/handle/20.500.11822/9291
Borja-Serrano, P., Ochoa-Herrera, V., Maurice, L., Morales, G., Quilumbaqui, C., Tejera, E., & Machado, A. (2020). Determination of the microbial and chemical loads in rivers from the Quito capital province of Ecuador (Pichincha)—A preliminary analysis of microbial and chemical quality of the main rivers. International Journal of Environmental Research and Public Health, 17(14), 1–26. https://doi.org/10.3390/ijerph17145048
Brill, G., Shiao, T., Kammeyer, C., & Diringer, S. (2020). Benefit Accounting of Nature-Based Solutions for Watersheds. Guide Project Team. http://www.ceowatermandate.org/nbs/guide
Cadilhac, L., Torres, R., Calles, J., Vanacker, V., & Calderón, E. (2017). Desafíos para la investigación sobre el cambio climático en Ecuador. Neotropical Biodiversity, 3(1), 168–181. https://doi.org/10.1080/23766808.2017.1328247
Capparelli, M. V., Moulatlet, G. M., Abessa, D. M. de S., Lucas-Solis, O., Rosero, B., Galarza, E., Tuba, D., Carpintero, N., Ochoa-Herrera, V., & Cipriani-Avila, I. (2020). An integrative approach to identify the impacts of multiple metal contamination sources on the Eastern Andean foothills of the Ecuadorian Amazonia. Science of the Total Environment, 709, 1–12. https://doi.org/10.1016/j.scitotenv.2019.136088
Carballo, F. M., Brito, L. M., Mero, P. C., Aguilar, M. A., & Ramírez, J. T. (2019). Urban wastewater treatment through a system of green filters in the Montañita commune, Santa elena, Ecuador. WIT Transactions on Ecology and the Environment, 239, 233–249. https://doi.org/10.2495/WS190211
Chafla, P., & Cerón, P. (2016). Esquemas de participación público-privada en el sector del agua y saneamiento en Latinoamérica. Tecnología y Ciencias Del Agua, VII(3), 5–17. http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S2007-24222016000300005
Chafloque, W. A. L., & Gómez, E. G. (2006). A design of an artificial marsh for treating waste water in the UNMSM. Revista Del Instituto de Investigaciones FIGMMG, 15(47), 85–96. https://revistasinvestigacion.unmsm.edu.pe/index.php/iigeo/article/view/699
Chávez-Jiménez, A., & González-Zeas, D. (2015). El impacto de los caudales medioambientales en la satisfacción de la demanda de agua bajo escenarios de cambio climático. Ribagua, 2(1), 3–13. https://doi.org/10.1016/j.riba.2015.04.001
Chen, X., Luo, A. C., Sato, K., Wakatsuki, T., & Masunaga, T. (2009). An introduction of a multi-soil-layering system: A novel green technology for wastewater treatment in rural areas. Water and Environment Journal, 23(4), 255–262. https://doi.org/10.1111/j.1747-6593.2008.00143.x
Chicaiza, C., Huaraca, L., Almeida-Naranjo, C. E., Guerrero, V. H., & Villamar, C. A. (2020). Improvement of organic matter and nutrient removal from domestic wastewater by using intermittent hydraulic rates on earthworm-microorganism biofilters. Water Science and Technology, 82(2), 281–291. https://doi.org/10.2166/wst.2020.139
Cipriani-Avila, I., Molinero, J., Jara-Negrete, E., Barrado, M., Arcos, C., Mafla, S., Custode, F., Vilaña, G., Carpintero, N., & Ochoa-Herrera, V. (2020). Heavy metal assessment in drinking waters of Ecuador: Quito, Ibarra and Guayaquil. Journal of Water and Health, 18(6), 1050–1064. https://doi.org/10.2166/wh.2020.093
Conte, G., Bolognesi, A., Bragalli, C., Branchini, S., Carli, A. de, Lenzi, C., Masi, F., Massarutto, A., Pollastri, M., & Principi, I. (2012). Innovative urban water management as a climate change adaptation strategy: Results from the implementation of the project “water against climate change (WATACLIC).” Water (Switzerland), 4(4), 1025–1038. https://doi.org/10.3390/w4041025
Damanik-Ambarita, M. N., Boets, P., Thi, H. T. N., Forio, M. A. E., Everaert, G., Lock, K., Musonge, P. L. S., Suhareva, N., Bennetsen, E., Gobeyn, S., Ho, T. L., Dominguez-Granda, L., & Goethals, P. L. M. (2018). Impact assessment of local land use on ecological water quality of the Guayas river basin (Ecuador). Ecological Informatics, 48, 1–32. https://doi.org/10.1016/j.ecoinf.2018.08.009
Donoso, J. M., & Rios-Touma, B. (2020). Microplastics in tropical Andean rivers: A perspective from a highly populated Ecuadorian basin without wastewater treatment. Heliyon, 6(7), 1–11. https://doi.org/10.1016/j.heliyon.2020.e04302
Encalada, A. C., Flecker, A. S., Poff, N. L., Suárez, E., Herrera-R, G. A., Ríos-Touma, B., Jumani, S., Larson, E. I., & Anderson, E. P. (n.d.). A global perspective on tropical montane rivers. http://science.sciencemag.org/ https://science.sciencemag.org/content/365/6458/1124/tab-pdf
Espinosa, M. F., Verbyla, M. E., Vassalle, L., Rosa-Machado, A. T., Zhao, F., Gaunin, A., & Mota, C. R. (2021). Reduction and partitioning of viral and bacterial indicators in a UASB reactor followed by high rate algal ponds treating domestic sewage. Science of the Total Environment, 760, 1–11. https://doi.org/10.1016/j.scitotenv.2020.144309
Espinosa, M. F., Sperling, M. V., & Verbyla, M. E. (2017). Performance evaluation of 388 full-scale waste stabilization pond systems with seven different configurations. Water Science and Technology, 75(4), 916–927. https://doi.org/10.2166/wst.2016.532
Feio, M. J., Hughes, R. M., Callisto, M., Nichols, S. J., Odume, O. N., Quintella, B. R., Kuemmerlen, M., Aguiar, F. C., Almeida, S. F. P., Alonso-EguíaLis, P., Arimoro, F. O., Dyer, F. J., Harding, J. S., Jang, S., Kaufmann, P. R., Lee, S., Li, J., Macedo, D. R., Mendes, A., … Yates, A. G. (2021). The Biological Assessment and Rehabilitation of the World’s Rivers: An Overview. Water, 13(3), 1–45. https://doi.org/10.3390/w13030371
Feld, B., & Galiani, S. (2015). Climate change in Latin America and the Caribbean: Policy options and research priorities. Latin American Economic Review, 24(1), 1–39. https://doi.org/10.1007/s40503-015-0028-4
Fernandez, M. A., Bucaram, S. J., & Renteria, W. (2015). Assessing local vulnerability to climate change in Ecuador. SpringerPlus, 4(1), 1–20. https://doi.org/10.1186/s40064-015-1536-z
Goldstein, J., Tallis, H., Linou, N., Small, R., Huikuri, S., Kreis, K., Olander, L., Ringler, C., Jacobs, C., Kelso, M., Mason, S., Zobrist, S., Bernal, L., Bok, L., Bryan, E., Chao, V., Cooper, S., Dhaliwal, M., Giné-Garriga, R., … Zhang, W. (2019). Bigger Change Faster: Integrated development, health, and environment actions for a sustainable future (pp. 1–64). https://www.undp.org/content/undp/en/home/librarypage/hiv-aids/bigger-change-faster–.html#: :text=English (10.6 MB)-,Bigger Change Faster - Integrated Development%2C Health and Environment,Actions for a Sustainable Future&text=Achieving the Sustainable D
González, L. B. G. (2017). Cooperación Internacional para el cambio climático. Estudio de casos: América Latina y la Unión Europea. M+A. Revista Electrónica de Medioambiente, 18(1), 27–48. https://doi.org/10.5209/mare.56880
Guerrero-Latorre, L., Romero, B., Bonifaz, E., Timoneda, N., Rusiñol, M., Girones, R., & Rios-Touma, B. (2018). Quito’s virome: Metagenomic analysis of viral diversity in urban streams of Ecuador’s capital city. Science of the Total Environment, 645, 1334–1343. https://doi.org/10.1016/j.scitotenv.2018.07.213
Guerrero-Latorre, L., Ballesteros, I., Villacrés-Granda, I., Granda, M. G., Freire-Paspuel, B., & Ríos-Touma, B. (2020). SARS-CoV-2 in river water: Implications in low sanitation countries. Science of the Total Environment, 743, 1–5. https://doi.org/10.1016/j.scitotenv.2020.140832
Hinojosa, L., Guerrero-Villegas, W., & Arias-Muñoz, P. (2017). Exploring water security and water demand determinants in rural areas. The case of canton Cotacachi in Ecuador. Water Resources and Rural Development, 10, 22–32. https://doi.org/10.1016/j.wrr.2018.09.001
Hoffmann, H., Platzer, C., Winker, M., & Muench, E. von. (2011). Technology review of constructed wetlands - Subsurface flow constructed wetlands for greywater and domestic wastewater treatment (pp. 1–36). http://www.gtz.de/ecosan https://www.susana.org/en/knowledge-hub/resources-and-publications/library/details/930
Holguin-Gonzalez, J. E., Boets, P., Alvarado, A., Cisneros, F., Carrasco, M. C., Wyseure, G., Nopens, I., & Goethals, P. L. M. (2013). Integrating hydraulic, physicochemical and ecological models to assess the effectiveness of water quality management strategies for the River Cuenca in Ecuador. Ecological Modelling, 254, 1–14. https://doi.org/10.1016/j.ecolmodel.2013.01.011
Huera-Lucero, T., Salas-Ruiz, A., Changoluisa, D., & Bravo-Medina, C. (2020). Towards sustainable urban planning for Puyo (Ecuador): Amazon forest landscape as potential green infrastructure. Sustainability (Switzerland), 12(11). https://doi.org/10.3390/su12114768
Jerves-Cobo, R., Benedetti, L., Amerlinck, Y., Lock, K., Mulder, C. D., Butsel, J. V., Cisneros, F., Goethals, P., & Nopens, I. (2020). Integrated ecological modelling for evidence-based determination of water management interventions in urbanized river basins: Case study in the Cuenca River basin (Ecuador). Science of the Total Environment, 709, 1–18. https://doi.org/10.1016/j.scitotenv.2019.136067
Jerves-Cobo, R., Lock, K., Butsel, J. V., Pauta, G., Cisneros, F., Nopens, I., & Goethals, P. L. M. (2018). Biological impact assessment of sewage outfalls in the urbanized area of the Cuenca River basin (Ecuador) in two different seasons. Limnologica, 71, 8–28. https://doi.org/10.1016/j.limno.2018.05.003
Kabisch, N., Korn, H., Stadler, J., & Bonn, A. (n.d.). Nature-Based Solutions to Climate Change Adaptation in Urban Areas: Linkages Between Science, Policy and Practice. http://www.springer.com/series/13408
Kauffman, C. M. (2014). Financing watershed conservation: Lessons from Ecuador’s evolving water trust funds. Agricultural Water Management, 145, 39–49. https://doi.org/10.1016/j.agwat.2013.09.013
Koop, S. H. A., Koetsier, L., Doornhof, A., Reinstra, O., Leeuwen, C. J. V., Brouwer, S., Dieperink, C., & Driessen, P. P. J. (2017). Assessing the Governance Capacity of Cities to Address Challenges of Water, Waste, and Climate Change. Water Resources Management, 31(11), 3427–3443. https://doi.org/10.1007/s11269-017-1677-7
Langeveld, J. G., Schilperoort, R. P. S., & Weijers, S. R. (2013). Climate change and urban wastewater infrastructure: There is more to explore. Journal of Hydrology, 476, 112–119. https://doi.org/10.1016/j.jhydrol.2012.10.021
Lee, G. O., Whitney, H. J., Blum, A. G., Lybik, N., Cevallos, W., Trueba, G., Levy, K., & Eisenberg, J. N. S. (2020). Household coping strategies associated with unreliable water supplies and diarrhea in Ecuador, an upper-middle-income country. Water Research, 170. https://doi.org/10.1016/j.watres.2019.115269
Lessmann, J., Troya, M. J., Flecker, A. S., ChrisFunk, W. W., Guayasamin, J. M., Ochoa-Herrera, V., LeRoyPoff, N. N., Suárez, E., & Encalada, A. C. (2019). Validating anthropogenic threat maps as a tool for assessing river ecological integrity in Andean-Amazon basins. PeerJ, 2019(11), 1–23. https://doi.org/10.7717/peerj.8060
Liu, W., Chen, W., & Peng, C. (2015). Influences of setting sizes and combination of green infrastructures on community’s stormwater runoff reduction. Ecological Modelling, 318, 236–244. https://doi.org/10.1016/j.ecolmodel.2014.11.007
Lutterbeck, C. A., Kist, L. T., Lopez, D. R., Zerwes, F. V., & Machado, E. L. (2017). Life cycle assessment of integrated wastewater treatment systems with constructed wetlands in rural areas. Journal of Cleaner Production, 148, 527–536. https://doi.org/10.1016/j.jclepro.2017.02.024
Maragno, D., Gaglio, M., Robbi, M., Appiotti, F., Fano, E. A., & Gissi, E. (2018). Fine-scale analysis of urban flooding reduction from green infrastructure: An ecosystem services approach for the management of water flows. Ecological Modelling, 386, 1–10. https://doi.org/10.1016/j.ecolmodel.2018.08.002
Marselle, M. R., Stadler, J., Korn, H., Irvine, K. N., & Bonn, A. (2019). Biodiversity and Health in the Face of Climate Change. https://www.springer.com/gp/book/9783030023171