Mostrar el registro sencillo del ítem

dc.contributor.advisorGómez Cerón, Giovanni Orlandospa
dc.contributor.authorMurillo Angulo, Gloricetspa
dc.date.accessioned2021-06-10T21:16:02Z
dc.date.available2021-06-10T21:16:02Z
dc.date.issued2016spa
dc.identifier.urihttps://repositorio.unipacifico.edu.co/handle/unipacifico/425
dc.descriptionDisponible en formato físico (T ACU 10 2016)spa
dc.description.abstractUna de las alternativas que empieza a incorporarse en los sistemas productivos de la piscicultura es la tecnología (BFT) que se basa en los sistema “Biofloc”, el cual se sustenta en aprovechar la acumulación de residuos de los alimentos, materia orgánica y compuestos inorgánicos tóxicos a través de microorganismos presentes en los medios acuáticos, dando condiciones de dominancia a comunidades autótrofas y heterótrofas. De igual manera, este sistema ha permitido que se disminuya y en algunos casos elimine el recambio de agua, además de disminuir los costos e incrementando los volúmenes de producción por unidad de área.spa
dc.description.tableofcontents1 INTRODUCCIÓN 1 2 OBJETIVOS 4 2.1 Objetivo General 4 2.2 Objetivos Específicos 4 3. ANTECEDENTES 5 4. MATERIALES Y MÉTODOS 10 4.1 Área de Estudio 10 4.2 Materiales y Equipos 10 4.3 Metodología 10 4.3.1 Armado de Instalaciones 10 4.4 Manejos y muestreos 13 5. RESULTADOS 15 6. DISCUSIÓN 21 CONCLUSIONES 24 BIBLIOGRAFIA 26 ANEXO 33spa
dc.format.extent41 pspa
dc.publisherUniversidad del Pacíficospa
dc.rightsDerechos Reservados - Universidad del Pacificospa
dc.rights.urihttps://creativecommons.org/licenses/by-nc/4.0/spa
dc.titleEnsayo preliminar de un sistema de “Biofloc”, en el centro de investigación y producción acuícola Henry Von Prahl – Sabaletasspa
dc.typeTrabajo de grado - Pregradospa
dcterms.referencesAbreu PC, Ballester ELC, Odebrecht C, Wasielesky WJr, Cavalli RO, Granéli W, Anésio AM. 2007. Importance of biofilm as food source for shrimp (Farfantepenaeus paulensis) evaluated by stable isotopes (d13C and d15N). J Expl Mar Biol Ecol.;347:88–96.spa
dcterms.referencesAsaduzzaman, M., Wahab, M.A., Verdegem, M.C.J.,Huque, S., Salam, M.A.,Azim, M.E. 2008. C/N ratio control and substrate addition for periphyton development jointly enhance freshwater prawn Macrobrachuim rosenbergii production in ponds. Aquaculture 280: 117-123.spa
dcterms.referencesAtencio GV, Pertuz BV, Bru CS, Ayazo GJ. 2013. Curso teórico - práctico tecnología de cultivo biofloc: fundamentos y manejo. Centro de Investigación Piscícola de la Universidad de Córdoba – CINPIC. Montería - Colombia.spa
dcterms.referencesAUNAP – Autoridad Nacional de Acuicultura y Pesca. 2013. Diagnóstico del estado de la acuicultura en Colombia. Bogotá, Colombia.spa
dcterms.referencesAvnimelech Y. 2012b. Biofloc Technology – A Pratical Guide Book. The World Aquaculture Society, Baton Rouge, Louisiana, United States. 2. Ed.spa
dcterms.referencesAvnimelech, Y. 2009. Biofloc technology a practical guide book. Luisiana, World Aquaculture Society. 181p.spa
dcterms.referencesAvnimelech, Y. 1999. Carbon nitrogen ratio as a control element in aquaculture systems. Aquaculture 176: 227-235.spa
dcterms.referencesAvnimelch, Y. 2007. Feeding with microbial flocs by tilapia in minimal discharge biofloc technology pons. Aquaculture, 264: 140-147.spa
dcterms.referencesAzim, M.E., Little, D.C.,Bron, J.E. 2008. Microbial protein production in activated suspension tanks manipulating C: N ration in feed and the implications for fish culture. Biores. Technol. 99: 3590 -3599.spa
dcterms.referencesBoyd CE, Clay JW. 2002. Evaluation of Belize Aquaculture, Ltd: A Superintensive Shrimp Aquaculture System. Report prepared under the World Bank, NACA, WWF and FAO Consortium Program on Shrimp Farming and the Environment. 17pp.spa
dcterms.referencesBoyd C, 1998. Pond water aeration systems. Aquac Eng.;18:9-40.spa
dcterms.referencesBrown, L. 2000. Acuicultura para veterinarios. Producción y clínica de peces. Zaragoza, Acribia. 400 p.spa
dcterms.referencesBurford MA, Thompson PJ, McIntosh RP, Bauman RH, Pearson DC. 2004. The contribution of flocculated material to shrimp (Litopenaeus vannamei) nutrition in a high-intensity, zero-exchange system. Aquaculture.;232:525-537.spa
dcterms.referencesColl Morales, J. 1983. Acuicultura marina animal. Madrid, Mundiprensa. 670 p.spa
dcterms.referencesCollazos LLF y Arias CJA. 2007. Influencia de la temperatura en la sobrevivencia de larvas de Rhamdia sebae c.f. (Siluriformes heptapteridae). Orinoquia.;11(1): 56–62.spa
dcterms.referencesCrab R, Chielens B, Wille M, Bossier P, Verstraete W. 2010. The effect of different carbon sources on the nutritional value of bioflocs, a feed for Macrobrachium rosenbergii postlarvae. Aquacult Res.;41:559–567spa
dcterms.referencesCrab, R, Lambert, A, Defoirdt, T, Bossier, P, Verstraete, W. 2010. The application of bioflocs technology to protect brine shrimp (Artemia franciscana) from pathogenic Vibrio harveyi. J. Appl Microbiol, 109 (5): 1643 – 1649.spa
dcterms.referencesCraig LB, Andrew JR, John WL, Avnimelech Y. 2012. Biofloc-based Aquaculture Systems. Aquaculture Production Systems, First Edition.Edited by James Tidwell.;12:278-306.spa
dcterms.referencesCraig S, Helfrich LA. 2002. Understanding Fish Nutrition, Feeds and Feeding (Publication 420–256). Virginia Cooperative Extension, Yorktown (Virginia). 4 pp.spa
dcterms.referencesDe Schryver, P, Crab, R, Defoirdt, T, Boon, N, Verstraete, W. 2008. The basics of biofloc technology: the added value of aquaculture. Aquaculture; 277: 125-137spa
dcterms.referencesEbeling, J.M., Timmons,M.B.,Bisogni, J.J. 2006. Engineering análisis of the stoichiometry of photoautrophic, autotrophic, and heterotrophic renoval of ammonia-nitrogen in aquaculture systems. Aquaculture 257: 346-358.spa
dcterms.referencesEkasari J, R Crab & W Verstraete. 2010. Primary nutritionalcontent of bio-flocs cultured with different organic carbonsources and salinity. Hayati Journal of Bioscience 17: 125-130.spa
dcterms.referencesEkasari J, Deasy A, Waluyo SH, Bachtiar T, Surawidjaja EH, Bossier P, De Schryver P. 2014. The size of biofloc determines the nutritional composition and the nitrogen recovery by aquaculture animals. Aquaculture.(426-427):105-111.spa
dcterms.referencesEmerciano, M., Ballester, E., Cavalli, R, Wasielesky, W. 2011. Effect of bioflocs technology on the early postlarval stage of pink shrimp Farfantepenaeus paulensis: growth performance, floc composition and salinity stress tolerance. Aquacult. Internat. 19:891-901.spa
dcterms.referencesEmerciano, M, Ballester, E, Cavalli, R, Wasielesky, W. 2012. Biofloc technology application as a food source in a limited water exchange nursery system for pink shrimp Farfantepenaeus brasiliensis. Aquacult. Res. (43): 447-457.spa
dcterms.referencesEmerenciano M, Gaxiola G y Cuzon G. 2013. Biofloc Technology (BFT): A Review for Aquaculture Application and Animal Food Industry. INTECH open science_ open minds. Cap 12: 301-327. http://dx.doi.org/10.5772/53902.spa
dcterms.referencesEmerson K, Russo RC, Lund RE, Thurston RV. 1975. Aqueous ammonia equilibrium calculations: effect of pH and temperature. J Fish Res Board Can.32:2379-2383spa
dcterms.referencesFAO, 2003. Review of the state or World aquaculture. FAO Fisheries Circular No. 886, Rev. 2, Rome. 95pp.spa
dcterms.referencesFAO. 2006. State of World Aquaculture 2006. Fisheries Technical Paper No500. Roma, FAO, 129p.Disponible en: http://www.fao.org/docrep/013/i1820s/i1820s00.htm.spa
dcterms.referencesFAO, 2010, El estado mundial de la pesca y acuicultura 2010. Roma, departamento de pesca y acuicultura de la FAO.spa
dcterms.referencesFAO, 2009. Fishery and Aquaculture Stadistics, Servicios de Estadistica y información, Departamento de pesca y acuicultura, FAO.Rome, 2011.Disponible en: http://www.fao.org/docrep/016/aq187t/aq187t.pdfFecha de consulta: 25 -7-13spa
dcterms.referencesFroster, C.F. 1976. Bioflocculation in the activated sludge process. Water. 2: 119-125. Disponible en:http://www.wrc.org.za/Lists/Knowledge%20Hub%20Items/Attachments/617 3/WaterSA_1976_%202_0031_abstract.pdf Fecha de consulta:25-8-12spa
dcterms.referencesGhanekar, A. 2009. How biofloc technology reduces feed and filtration costs in recirculated shrimp nursery systems. Aquacult Asia Pacific 5 (3): 72 – 74.spa
dcterms.referencesGutierrez-Wing, M., Malon, F. 2006. Biological filtres in aquaculture: trenes and research directions for freshwater and marine applications. Aquacult. Eng. 34, 3: 163-171.spa
dcterms.referencesHari, B., Kuruo, B.M., Varghese, J.T., Scharama, J.W., Verdegem, M.C.S. 2004. Effects of carbohidrate addition on production in extensive shrimp culture system. Aquacult. 241 179-194spa
dcterms.referencesHargreaves JA. 2013. Bioflóc Production Systems for Aquaculture. En: SRAC. Abril,:4503:8-10spa
dcterms.referencesJorand F, Zartarian F, Thomas F, Block J, Bottero J, Villemin G, Urbain V, Manem J. 1995. Chemical and structural (2d) linkage between bacteria within activated-sludge flocs. Water Res.;29(7):1639–1647spa
dcterms.referencesKuhn D, Boardman G, Lawrence A, Marsh L, Flick G. 2009. Microbial floc meal as a replacement ingredient for fish meal and soybean protein in shrimp feed. Aquaculture.;296:51-57.spa
dcterms.referencesLososrdo, T.M., Wesrerman, P.W. 1994. An análisis of biological. Economic, and engineering factors affecting the cost fish production in recirculating aquaculture systems. J. Words Aquacult. Soc. 25: 193-203.spa
dcterms.referencesMcItosh, P.R. 2000.Changing paradigms in shrimp farming.IV. Low protein feeds and feeding strategies. Global Aquacult. Adv. 3: 44-50.spa
dcterms.referencesMGAP-DINARA-FAO. 2010. Manual básico de piscicultura en estanques/Uruguay. Dirección Nacional de Recursos Acuáticos. Montevideo. Departamento de Acuicultura. 50 p.spa
dcterms.referencesMonroy DMC, De Lara AR, Castro MJ, Castro MG y Emerenciano CM. 2013.Composición y abundancia de comunidades microbianas. Rev Biol Mar Oceanogr.48(3):511-520spa
dcterms.referencesMoss S. 2002. Dietary importance of microbes and detritus in penaeid shrimp aquaculture, pp.1-18. In: Microbial Approaches to Aquatic Nutrition within Environmentally Sound Aquaculture Production Systems, CS Lee and P. O’Bryen (editors). The World Aquaculture Society, Baton Rouge, Louisisana, USA, 2002.spa
dcterms.referencesNewman, S, 2011. Understanding biofloc in aquaculture production systems. Aquaculture Asia Pacific Magazine, 7 (2): 25-26.spa
dcterms.referencesPoli MA, Schveitzer R, Oliveira N. 2015. The use of biofloc technology in a South American catfish (Rhamdia quelen) hatchery: Effect of suspended solids in the performance of larvae. Aquacult Eng.;66:17-21.spa
dcterms.referencesProença,C. E.M. de., Biiencourt P.R. 1994. Manual de pisciculturía tropical. Brasilia: IBAMAspa
dcterms.referencesRay JA, Lotz JM. 2014. Comparing a chemoautotrophic-based biofloc system and three heterotrophic-based systems receiving different carbohydrate sources. Aquacult Eng.;63:54–61.spa
dcterms.referencesRay AJ, Seaborn G, Leffler JW, Wilde SB, Lawson A, Browdy CL. 2010. Characterization of microbial communities in minimal-exchange, intensive aquaculture systems and the effects of suspended solids management. Aquaculture. 310:130–138.spa
dcterms.referencesSagratzki CBA, Pereira-Filho M, Bordinhon A, Fonseca FA, Ituassú D, Roubach R. y Ono EA. 2004. Tolerância de juvenis de pirarucuao aumento da concentração de amôniaem ambiente confinado. Pesq Agrop Bras. 39:513-516.spa
dcterms.referencesSchveitzer R, Arantes R, Costódio PFS, do Espírito Santo CM, Arana LV, Seiffert WQ, Andreatta ER, 2013. Effect of different biofloc levels on microbial activity, water quality and performance of Litopenaeus vannameiin a tank system operated with no water exchange. Aquacult Eng. 56:59-70.spa
dcterms.referencesStickney, R, 2000. Encyclopedia of Aquaculture. New York, Wiley. 988p.spa
dcterms.referencesTacon,A.G.J., Cody, J.J., Conquest, L.D., Divakaran, S.,Forster, I.P.,Decamp, O.E. 2002. Effect of culture system on the nutrition and growth performance of Pacific white shrimp Litopenaeus vannamei (Bonne) fed different diets. Aquacult. Nutr. 8: 121-139.spa
dcterms.referencesTimmons MB, Ebeling JM, Wheaton FW, Sommerfelt ST, Vinci BJ. 2002. Microbial biofloc and protein levels in green tiger shrimp. Recirculating aquaculture systems, 748 pp. Caruga Aqua Ventures, New York.spa
dcterms.referencesTimmons MB y Ebeling JM. 2010. Recirculating Aquaculture. NRAC Publication No. 401. Ithaca, NY, 948 ppspa
dcterms.referencesTzachi M, Samocha BA, Correia ES, Morris TC, Wilkenfeld JS. 2012. Growth performance of Litopenaeus vannameiin super-intensive mixotrophic raceway culture with zero discharge using Tareation® technology for aeration and extended CO2degassing.TexasAgriLife Research Mariculture Lab. at Flour Bluff, Corpus Christi, Texas. 45pspa
dcterms.referencesVan Wik. P.M., 2001. Designing efficient indoor shrimp production systems: a bioeconomic approach. In Browdy, C.L., Jory.D.E. (Eds.), The New Wave, Proceedings of the Special Session on Sustainable Shrimp Farming, pp.285-291. World Aquacult. Soc, Baton Rouge, Luisana, 375p.spa
dcterms.referencesWasielesky, W.,Atwood, H., Stokes, A.,Browdy, C.L. 2006. Effect of natural production in a zero exchange suspended microbial floc based super-intensive culture system for white shrimp Litopnaeus vannamei. Aquaculture 258: 396-403.spa
dcterms.referencesXu, W.J., Pan, L.Q., Zhao, D.H., Huang, J. 2012b. Preliminary investigation into the contribution of floc on protein nutrition of Litopenaeus vannamei fed with different dietary protein levels in zerowater exchange culture tanks. Aquaculturespa
dc.description.notesTesis (Acuicultura) - Universidad del Pacífico. Facultad de Ciencias y Tecnologías, 2016spa
dc.description.degreelevelPregradospa
dc.description.degreenameTecnólogo(a) en Acuiculturaspa
dc.publisher.placeColombia, Buenaventuraspa
dc.publisher.programTecnología en Acuiculturaspa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.rights.creativecommonsAtribución-NoComercial 4.0 Internacional (CC BY-NC 4.0)spa
dc.subject.proposalPecesspa
dc.subject.proposalAlimentos del marspa
dc.subject.proposalAcuiculturaspa
dc.type.coarhttp://purl.org/coar/resource_type/c_7a1fspa
dc.type.coarversionhttp://purl.org/coar/version/c_970fb48d4fbd8a85spa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/bachelorThesisspa
dc.type.redcolhttp://purl.org/redcol/resource_type/TPspa
dc.identifier.local14053spa
dc.type.versioninfo:eu-repo/semantics/publishedVersionspa
dc.identifier.signatureT ACU 10 2016spa
dc.rights.coarhttp://purl.org/coar/access_right/c_abf2spa


Ficheros en el ítem

Thumbnail

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro sencillo del ítem

Derechos Reservados - Universidad del Pacifico
Excepto si se señala otra cosa, la licencia del ítem se describe como Derechos Reservados - Universidad del Pacifico