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1Academic Journal
المؤلفون: Zambrano Rodríguez, Luz María, Farfán Casanova, Olmedo Daniel, Zambrano Acosta, Jimmy Manuel
المصدر: Estudios del desarrollo social: Cuba y América Latina; Vol. 11 No. 2 (2023): Mayo-Agosto, 2023; 36-51 ; Estudios del Desarrollo Social: Cuba y América Latina; Vol. 11 Núm. 2 (2023): Mayo-Agosto, 2023; 36-51 ; 2308-0132
مصطلحات موضوعية: motivación académica, estrategia metodológica, aprendizaje cooperativo, trabajo colaborativo, rendimiento académico, academic motivation, methodological strategy, cooperative learning, collaborative work, academic performance
وصف الملف: application/pdf
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2Academic Journal
المؤلفون: Marín Leal, Julio César, Chinga Panta, Carlos Aníbal, Velásquez Ferrín, Abrahan Isaac, González Cabo, Pierre Andrés, Zambrano Rodríguez, Luz María
المصدر: Ciencia e Ingenieria Neogranadina; Vol. 25 No. 1 (2015); 27-42 ; Ciencia e Ingeniería Neogranadina; Vol. 25 Núm. 1 (2015); 27-42 ; Ciencia e Ingeniería Neogranadina; v. 25 n. 1 (2015); 27-42 ; 1909-7735 ; 0124-8170
مصطلحات موضوعية: Anaerobic sludge, anaerobic treatability, batch reactor, biodegradable matter, industrial effluent, Efluente industrial, materia biodegradable, lodo anaerobio, reactores discontinuos, tratabilidad anaeróbica
وصف الملف: application/pdf; text/html
Relation: http://revistas.unimilitar.edu.co/index.php/rcin/article/view/431/231; http://revistas.unimilitar.edu.co/index.php/rcin/article/view/431/1574; Lynch, G. (2007). Auditoría ambiental al proyecto de control de la contaminación del río Manta y su área de influencia de la empresa de agua potable y alcantarillado de Manta, EAPAM. Manta, Ecuador: Dirección de Auditoría de Proyectos y Ambiente de Manta. p. 71.; Chan, Y.J., Chong, M.F., Law, C.L. y Hassell, D.G., (2009). A review on anaerobic–aerobic treatment of industrial and municipal wastewater. Chemical Engineering Journal, 155, 1-18. http://dx.doi.org/10.1016/j.cej.2009.06.041; Chowdhury, P., Viraraghavan, T. y Srinivasan, A. (2010). Biological treatment processes for fish processing wastewater – A review. Bioresource Technology, 101, 439-449. http://dx.doi.org/10.1016/j.biortech.2009.08.065; Cristóvão, R.O., Botelho, C.M.S., Martins, R.J.E, y Boaventura, R.A.R. (2012). Chemical and biological treatment of fish canning wastewaters. International Journal of Bioscience, Biochemistry and Bioinformatics, 2, 237-242. http://dx.doi.org/10.7763/IJBBB.2012.V2.108; Muthukumaran, S. y Baskaran, K. (2013). Organic and nutrient reduction in a fish processing facility – A case study. International Biodeterioration & Biodegradation, 85, 563-570. http://dx.doi.org/10.1016/j.ibiod.2013.03.023; Latif, M.A., Ghufran, R., Wahid, Z.A. y Ahmad, A. (2011). Integrated application of upflow anaerobic sludge blanket reactor for the treatment of wastewaters. Water Research, 45, 4683-4699. http://dx.doi.org/10.1016/j.watres.2011.05.049; Nges, I.A., Mbatia, B. y Björnsson, L. (2012). Improved utilization of fish waste by anaerobic digestion following omega-3 fatty acids extraction. Journal of Environmental Management, 110, 159-165. http://dx.doi.org/10.1016/j.jenvman.2012.06.011; Chacín, E. (1993). Treatment characteristics of two phase anaerobic system using an UASB reactor (Tesis doctoral inédita). University of Birmingham, Birmingham Inglaterra.; Aloui, F., Khoufi, S., Loukil, S. y Sayadi, S. (2009). Performances of an activated sludge process for the treatment of fish processing saline wastewater. Desalination, 246, 389-396. http://dx.doi.org/10.1016/j.desal.2008.03.062; Xiao, Y. y Roberts, D.J. (2010). A review of anaerobic treatment of saline wastewater. Environmental Technology, 31, 1025-1043. http://dx.doi.org/10.1080/09593331003734202; Yang, J., Spanjers, H., Jeison, D. y van Lier, J.B., (2013). Impact of Na+ on biological wastewater treatment and the potential of anaerobic membrane bioreactors: A review. Critical Reviews in Environmental Science and Technology, 43, 2722-2746. http://dx.doi.org/10.1080/10643389.2012.694335; American Public Health Association (APHA), American Water Works Association (AWWA) y Water Environment Federation (WEF). (2005). Standard Methods for the Examination of Water and Wastewater (21th Edition). Washington, D.C. EE.UU.: American Public Health Association.; República de Ecuador. (2008). Libro VI, Norma de calidad ambiental y de descarga de efluentes: recurso agua. Anexo 1 (pp.286-340). Ecuador: Presidencia de la República de Ecuador.; Sankpal, S.T. y Naikwade, P.V. (2012). Physicochemical analysis of effluent discharge of fish processing industries in Ratnagiri India. Bioscience Discovery, 3(1), 107-111.; Tay, J.H., Show, K.Y. y Hung, Y.T. (2006). Seafood processing wastewater treatment. En L.K. Wang, Y.T. Hung, H.H. Lo y C. Yapijakis (Eds.), Waste Treatment in the Food Processing Industry (pp.29-66). Boca Ratón, FL, EE.UU.: Taylor & Francis Group. http://dx.doi.org/10.1002/chin.200613273; Sandberg, M. y Ahring, B.K. (1992). Anaerobic treatment of fish meal process waste-water in a UASB reactor at high pH. Applied Microbiology and Biotechnology, 36, 800-804. http://dx.doi.org/10.1007/bf00172198; Bai, H., Yang, Y., Quan, H., Han, Y., Sun, J. y Feng, Y. (2013). Bioremediation of copper-containing wastewater by sulfate reducing bacteria coupled with iron. Journal of Environmental Management, 129, 350-356. http://dx.doi.org/10.1016/j.jenvman.2013.06.050; Sarti, A. y Zaiat, M. (2011). Anaerobic treatment of sulfate-rich wastewater in an anaerobic sequential batch reactor (AnSBR) using butanol as the carbon source. Journal of Environmental Management, 92, 1537-1541. http://dx.doi.org/10.1016/j.jenvman.2011.01.009; Celis-García, L.B., Villa-Gómez, D., Alpuche-Solís, A.G., Ortega-Morales, B.O. y Razo-Flores, E. (2009). Characterization of sulfate-reducing bacteria dominated surface communities during start-up of a down-flow fluidized bed reactor. Journal of Industrial Microbiology and Biotechnology, 36, 111-121. http://dx.doi.org/10.1007/s10295-008-0478-7; Li, J., Yu, L., Yu, D., Wang, D., Zhang, P. y Ji, Z. (2014). Performance and granulation in an upflow anaerobic sludge blanket (UASB) reactor treating saline sulfate wastewater. Biodegradation, 24(1), pp. 127-136. http://dx.doi.org/10.1007/s10532-013-9645-2; Alexandre, V.M.F., Valente, A.M., Cammarota, M.C. y Freire, D.M.G. (2011). Performance of anaerobic bioreactor treating fish-processing plant wastewater pre-hydrolyzed with a solid enzyme pool. Renewable Energy, 36, 3439-3444. http://dx.doi.org/10.1016/j.renene.2011.05.024; Boardman, G.D., Tisinger J.L., y Gallagher D.L. (1995). Treatment of clam processing wastewaters by means of upflow anaerobic sludge blank technology. Water Research, 29, 1483. http://dx.doi.org/10.1016/0043-1354(94)00303-O; VyridesI y Stuckey, D.C. (2009). Adaptation of anaerobic biomass to saline conditions: Role of compatible solutes and extracellular polysaccharides. Enzyme and Microbial Technology, 44, 46-51. http://dx.doi.org/10.1016/j.enzmictec.2008.09.008; Yerkes, D.W., Boonyakitsombut, S. y Speece R.E. (1997). Antagonism of sodium toxicity by the compatible solute betaine in anaerobic methanogenic systems. Water Science and Technology, 36, 15-24. http://dx.doi.org/10.1016/S0273-1223(97)00502-7; Estevez, M.M., Sapci, Z., Linjordet, R. y Morken, J. (2014). Incorporation of fish by-product into the semi-continuous anaerobic co-digestion of pre-treated lignocellulose and cow manure, with recovery of digestate's nutrients. Renewable Energy, 66, 550-558. http://dx.doi.org/10.1016/j.renene.2014.01.001; Panswad, T. y Anan, C. (1999). Impact of high chloride wastewater on an anaerobic/anoxic/aerobic process with and without inoculation of chloride acclimated seeds. Water Research, 33, 1165-1172. http://dx.doi.org/10.1016/S0043-1354(98)00314-5; Aspé, E., Martí, M.C., Jara, A. y Roeckel M. (2001). Ammonia inhibition in the anaerobic treatment of fishery effluents. Water Environment Research, 73, 154-164. http://dx.doi.org/10.2175/106143001X138813; Andalib, M., Nakhla, G., McIntee, E. y Zhu J. (2011). Simultaneous denitrification and methanogenesis (SDM): Review of two decades of research. Desalination, 279, 1-14. http://dx.doi.org/10.1016/j.desal.2011.06.018; Cervantes-Carrillo, F., Pérez, J. y Gómez, J. (2000). Avances en la eliminación biológica del nitrógeno de las aguas residuales. Revista Latinoamericana de Microbiología, 42, 73-82.; Dapena-Mora, A., Campos, J.L., Mosquera-Corral, A. y Méndez, R. (2006). Anammox process for nitrogen removal from anaerobically digested fish canning effluents. Water Science and Technology, 53(12), 265-274. http://dx.doi.org/10.2166/wst.2006.429; Magrí, A., Béline, F. y Dabert, P. (2013). Feasibility and interest of the anammox process as treatment alternative for anaerobic digester supernatants in manure processing – An overview. Journal of Environmental Management, 131, 170-184. http://dx.doi.org/10.1016/j.jenvman.2013.09.021; Hong, C.C., Chan, S.K. y Shim, H. (2007). Effect of chloride on biological nutrient removal from wastewater. Journal of Applied Sciences in Environmental Sanitation, 2(3), 85-92.; http://revistas.unimilitar.edu.co/index.php/rcin/article/view/431
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3Academic Journal
المؤلفون: Marín Leal, Julio César, Chinga Panta, Carlos Aníbal, Velásquez Ferrín, Abrahan Isaac, González Cabo, Pierre Andrés, Zambrano Rodríguez, Luz María
المصدر: Ciencia e Ingeniería Neogranadina, ISSN 0124-8170, Vol. 25, Nº. 1, 2015
مصطلحات موضوعية: Anaerobic sludge, anaerobic treatability, batch reactor, biodegradable matter, industrial effluent, Efluente industrial, materia biodegradable, lodo anaerobio, reactores discontinuos, tratabilidad anaeróbica
وصف الملف: application/pdf
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4Dissertation/ Thesis
المؤلفون: ZAMBRANO RODRÍGUEZ, LUZ MARÍA
مصطلحات موضوعية: AGUAS RESIDUALES, TRATAMIENTO
وصف الملف: application/pdf
Relation: ULEAM-RNA;0016; ZAMBRANO RODRÍGUEZ, LUZ M. (2016). REMOCIÓN DEL COLORANTE TEXTIL C.I. RB5 EN UNA MUESTRA SINTÉTICA UTILIZANDO CARBÓN ACTIVADO PROVENIENTE DE DESECHOS DEL FRUTO DE Phytelephas aequatorialis A FLUJO CONTINUO Y POR LOTES. (TESIS DE PREGRADO). UNIVERSIDAD LAICA ELOY ALFARO DE MANABÍ, MANTA.; http://repositorio.uleam.edu.ec/handle/123456789/302