Zobrazeno 1 - 3
of 3
pro vyhledávání: '"Torres Mesa, Ana Constanza"'
Autor:
Fernando Cárdenas, Diego1 diegof.cardenas@unad.edu.co, Torres Mesa, Ana Constanza2 ana.torres@unimilitar.edu.co, Gómez Ramírez, Edwin3 edwin.gomez@unimilitar.edu.co
Publikováno v:
Revista de Investigación Agraria y Ambiental. jul-dic2022, Vol. 13 Issue 2, p149-163. 15p.
Autor:
Torres Mesa, Ana Constanza
Publikováno v:
Aguilar F, Afanador-Téllez G y Muñoz-Ramírez A. 2010. Efecto del procesamiento de la dieta sobre el desempeño productivo de tilapia nilótica (Oreochromis niloticus Var. Chitralada) en un ciclocomercial de producción. Revista de la Facultad de Medicina Veterinaria y de Zootecnia, 57(2):104-118.
Ako H, Baker A. 2009a. Small-scale lettuce production with hydroponics or aquaponics. Sustainable Agriculture, SA-2. College of Tropical Agriculture and Human Resources. University of Hawai at Manoa
Ako Hm, Baker A. 2009b. Nutrient fluxes in aquaponic systems. www.ctahr.hawai.edu/mbbe/
Alatorres-Jacome O, Garcia F, Soto-Zarazua GM y Rico-Garcia E. 2012. Techniques to asses fish productivity in aquaculture farmers and small fisheries: an overview of algebraic methods. Journal of Applied Sciences, 12(9): 888-892.
Alturo CC. 2016. Crecimiento y producción de acelga (Beta vulgaris car cicla) roja y verde, bajo condiciones de cubierta plástica en un sistema acuapónico y uno de cama contenida. Trabajo de grado. Programa de Tecnología en Horticultura. Universidad Militar Nueva Granada. 33 p.
Badiola M, Mendiola D y Bostock J. 2012. Recirculating Aquaculture Systems (RAS) analysis: Main issues on management and future challenges. Aquaculture Engineering, 51: 26-35.
Bernstein S. 2011. Plants. En: Aquaponic Gardening: A step by step guide to raising vegetables and fish together. Ed: Bernstein S. Editorial: New Society Publishers, Canada. 153 – 171 pp.
Beveridge MCM y Little DC. 2008. The History of aquaculture in traditional societies. En: Ecological Aquaculture: The evolution of the blue revolution, Costa-Pierce BA (ed). 3 – 29 pp, Primera edición, John Wiley & Sons-Blackwell Sience, Oxford, 400 p.
Broadley M, Brown P, Cakmak I, Rengel Z y Zhao F. 2012. Function of nutrients: Micronutrients. En: Marschner's Mineral Nutrition of Higher Plants. Marschner P (ed). 191-248 pp, Tercera edición, Academic Press, San Diego, 651 p.
Buzby KM y Lin LS. 2014. Scaling aquaponics systems: Balancing plant uptake with fish output. Aquacultural Engineering, 63: 39-44.
Carrascal J, Torres-Mesa A, Hurtado-Giraldo H y Gómez-Ramírez E. 2016. Levante de carpa común (Cyprinus carpio) en sistemas cerrados de recirculación bajo condiciones de laboratorio. Revista Facultad de Ciencias Básicas, 12 (2): 124 – 135.
Christianson L, Lepine C, Tsukuda S, SAito K y Summerfelt S. 2015. Nitrate removal effectiveness of fluidized sulfur-based autotrophic denitrification biofilters for recirculating aquaculture systems. Aquaculture Engineering, 68: 10-18.
Cifuentes R, González J, Montoya G, Jara A, Ortiz N, Piedra P y Habit E. 2012. Relación longitud-peso y factor de condición de los peces nativos del río San Pedro (cuenca del río Valdivia, Chile). Gayana Especial, 75(2): 101 – 110.
Cifuentes ML y Torres AC. 2012. Evaluación del crecimiento de goldfish (Carassius auratus), carpa (Cyprinus carpio) y orégano (Origanum vulgare) en un sistemas acuapónico. Trabajo de grado. Programa de Biología Aplicada. Universidad Militar Nueva Granada. 81 p.
Colt J, Lamoureux J, Patterson RN y Rogers GL. 2006. Reporting standards for biofilter studies. Aquaculture Engineering, 34: 377-388
Davidson J, Good C, Welsh C y Summerfelt S. 2011. The effects of ozone and water exchange rates on water quality and rainbow trout Oncorhynchus mykiss performance in replicated water recirculating systems. Aquacultural Engineering, 44: 80-96.
Diver S. 2010. Aquaponics-integration of hydroponics with aquaculture. ATTRA, 1 – 8. https://attra.ncat.org/attra-pub/download.php?id=56.
Dos Santos VB, Yoshihara E, Fonseca RT y Reiz RV. 2008. Exponential Growth Model of Nile Tilapia (Oreochromis niloticus) Strains Considering Heteroscedastic Variance. Aquaculture, 274(1): 96 – 100.
Eding EH, Kamstra A, Verreth JAJ, Huisman EA y Klapwijk A. 2006. Design and operation of trickling filters in recirculating aquaculture: A review. Aquaculture Engineering, 34(3): 234-260.
Edwards P. 2015. Aquaculture environment interactions: Past. present and likely future trends. Aquaculture, 447: 2-14.
Endut A, Jusoh A, Ali N, Wan Nik WB y Hassan A. 2010. A study on the optimal hydraulic loading rate and plant ratios in recirculation aquaponic system. Bioresource Technology, 101: 1511-1517.
FAO. 1994. Entre la Acuicultura de los “Más Pobres” y la de los “Más Ricos”. En: FAO Departamento de Pesca y Acuicultura. http://www.fao.org/docrep/field/003/AB478S/AB478S00.htm#TOC
FAO. 2014. The State of World Fisheries and Aquaculture. En: FAO Departamento de Pesca y Acuicultura. www.fao.org/3/a-i3720s.pd
FAO. 2016a. Estadísticas de pesca y acuicultura. Producción mundial de acuicultura 1950-2014 (FishstatJ). En: FAO Departamento de Pesca y Acuicultura [en línea o CD-ROM]. Roma. Publicación 2016. http://www.fao.org/fishery/statistics/software/fishstatj/en
FAO. 2016b. El estado mundial de la agricultura y la alimentación: Cambio climático, agricultura y seguridad alimentaria. En: FAO Departamento para la Alimentación y la Agricultura. www.fao.org/publications/sofa/2016/es/
Flick G, Verbost PM y Bonga SEW. 1995. Calcium transport processes in fishes. Fish Physiology, 14: 317-342
Hawkesford M, Horst W, Kichey T, Lambers H, Schjoerring J, Moller SI y White P. 2012. Functions of Macronutrients. En: Marschner's Mineral Nutrition of Higher Plants. Marschner P (ed). 135-189 pp, Tercera edición, Academic Press, San Diego, 651 p
Hernández C, Gómez A y Hurtado H. 2010. Estudio preliminar de levante de juveniles de arawana plateada (Osteoglossum bicirrhosum) en sistemas cerrados de recirculación. Revista Facultad de Ciencias Básicas, 6(1): 96 – 113.
Holm N. 2017. Why not organic hydroponics? http://www.hydroponics.com.au/why-not-organic-hydroponics/
Honda H, Watanaba Y, Kikuchi K, Iwata N, Takeda S, Uemoto H, Furata T y Kiyono M. 1993. High density rearing of Japanese flounder, Paralichthys olivaceus with a closed seawater recirculation system equipped with a denitrification unit. Suisanzoshoku, 41: 19 – 26.
Hvas M, Damsgaard C, Hog Gam LT, Thanh Houng DT, Jensen FB y Bayley M. 2016. The effect of environmental hypercapnia and size on nitrite toxicity in the striped catfish (Pangasianodon hypophtalmus). Aquatic Toxicology, 176: 151-160.
Hu Z, Lee JW, Chandran K, Kim S, Sharma K y Khanal SK. 2014. Nitrogen transformations in intensive aquaculture system and its implication to climate change through nitrous oxide emission. Biosource Technology, 130: 314-320
Hu Z, Lee JW, Chandran K, Kim S, Brotto AC y Khanal SK. 2015. Effect of plant species on nitrogen recovery in aquaponics. Biosource Techonology, 188: 92 – 98.
Hur SJ, Kim HS, Bahk YY y Park Y. 2017. Overview of conjugated linoleic acid formation and accumulation in animal products. Livestock Science, 195: 105-111.
Imbachi JF. 2016. Crecimiento de tres variedades de lechuga en un sistema acuapónico con tilapia roja en condiciones de invernadero. Trabajo de grado. Programa de Tecnología en Horticultura. Universidad Militar Nueva Granada. 32 p.
Ip YK y Chew SF. 2010. Ammonia production, excretion, toxicity, and defense in fish: a review. Frontiers in physiology, 1: 1-20.
Jensen FB. 2003. Nitrite disrupts multiple physiological functions in aquatic animals. Comparative Biochemistry and Physiology Part A, 135: 9 – 24.
Kim SH, Kim JH, Park MA, Hwang SD y Kang JC. 2015. The toxic effects of ammonia exposure on antioxidant and immune responses in Rockfish. Sebastes schlegelii during thermal stress. Enviromental Toxicology and Pharmacology, 40(3): 954-959
Lennard W. 2012. Aquaponic system design parameters: Solids filtration, treatment and re-use. Aquaponic Fact Sheet Series, 1-10.
Li M, Gong S, Li Q, Yuan L, Meng F y Wang R. 2016a. Ammonia toxicity induces glutamine accumulation: oxidative stress and immunosuppression in juvenile yellow catfish Pelteobagrus fulvidraco. Comparative Biochemestry and Physiology Part C: Toxicology & Pharmacology, 183-184: 1-6
Li S, Ji H, Zhang B, Tian J, Zhou J y Yu H. 2016b. Influence of black soldier fly (Hermetia illucens) larvae oil on growth performance, body composition, tissue fatty acid composition and lipid deposition in juvenile Jian carp (Cyprinus carpio var. Jian). Aquaculture, 465: 43 – 52.
Licamele JD. 2009. Biomass production and nutrient dynamics in aquaponics system. Trabajo de grado. Department of agriculture and Biosystems engineering. The University of Arizona. 172 p
Malpica AM, Ramírez JA y Torres A. 2014. Evaluación de la Restricción Alimenticia sobre el Crecimiento Compensatorio en alevinos de Cachama Blanca (Piaractus brachypomus). Revista Ciencia Animal, (7): 59 – 74.
Martínez O, Gómez E y Hurtado H. 2011. Levante de goldfish (Carassius auratus) en sistemas cerrados de recirculación. Revista Facultad de Ciencias Básicas, 7(2): 260 – 273.
Martins CIM, Pistrin MG, Ende SSW, Eding EH y Verreth JAJ. 2009a. The accumulation of substances in Recirculating Aquaculture Systems (RAS) affects embryonic and larval development in common carp Cyprinus carpio. Aquaculture, 291: 65-73.
Martins CIM, Ochola D, Ende SSW, Eding EH y Verreth JAJ. 2009b. Is growth retardation present in Nile tilapia Oreochromis niloticus cultured in low water exchange recirculating aquaculture systems? Aquaculture, 298(1-2): 43-50.
Martins CIM, Eding EH, Verdegem MCJ, Heinsbroek LTN, Schneider O, Blancheton JP, Roque d’Orbcastel E y Verreth JAJ. 2010. New developments in recirculating systems in Europe: A perspective on environmental sustainability. Aquaculture Engineering. 43: 83 – 93.
Martins CIM, Eding EH y Verreth JAJ. 2011. The effect of recirculating aquaculture systems on the concentrations of heavy metals in culture water and tissues of Nile tilapia Oreochromis niloticus. Food Chemistry, 126: 1001-1005.
Masser MP, Rakocy J y Losordo TM. 1999. Recirculating aquaculture tank production systems: Management of recirculating systems. Southern Regional Aquaculture Center, 452: 1 – 12
Meital LT, Sandow SL, Calder PC y Russel FD. 2017. Abdominal aortic aneurysm and omega-3 polyunsaturated fatty acids: Mechanisms, animal models, and potential treatment. Prostaglandins, Leukotrienes and Essential Fatty Acids (PLEFA), 118: 1-9.
Nelson RL y Pade JS. 2008. Aquaponic Food Production: Growing fish and vegetable for food and profit. Editorial Nelson and Pade Inc, 121 p
Pedersen LF, Suhr KI, Dalsgaard J, Pedersen PB y Arvin E. 2012. Effects of feed loading on nitrogen balances and fish performance in replicated recirculating aquaculture systems. Aquaculture, 338-341: 237-245.
Poleo G, Aranbarrio JV, Mendoza L y Romero O. 2011. Cultivo de Cachama Blanca en Altas Densidades y en Dos Sistemas Cerrados. Pesquisa Agropecuária Brasileira, 46(4): 429 – 437.
Rakocy JE, Masser MP y Losordo TM. 2006. Recirculating Aquaculture Tank Production Systems: Aquaponics – Integrating Fish and Plant Culture. Southern Regional Aquaculture Center, 454 http://fisheries.tamu.edu/files/2013/09/SRAC-Publication-No.-454-Recirculating-Aquaculture-Tank-Production-Systems-Aquaponics-Integrating-Fish-and-Plant-Culture.pdf
Rakocy J. 2007. Aquaponics: Vegetable Hydroponics in Recirculating Systems. En: Recirculating Aquaculture Systems. Timmons M y Ebeling J (Eds). 807 – 864 pp, Segunda Edición, Cayuga Aqua Ventures, 976 p
Rafiee G y Saad CR. 2005. Nutrient cycle and sludge production during different stages of red tilapia (Oreochromis sp.) growth in a recirculating aquaculture system. Aquaculture, 244: 109 – 118.
Rojas-Tirado P, Pedersen PB y Pedersen LF. 2016. Bacterial activity dynamics in the water phase during start-up of recirculating aquaculture systems. Aquaculture Engineering, xxx: xxx-xxx.
Santosh PL. 2003. The minerals. En: Fish nutrition. Halver J y Hardy R (Eds). 259 – 308 pp, Tercera Edición, Academic press, San Diego, 500 pp
Schneider O, Sereti V, Eding EH y Verreth JAJ. 2005. Analysis of nutrient flows in integrated intensive aquaculture systems. Aquacultural Engineering, 32: 379-401.
Shnel N, Barak Y, Ezer T, Dafni Z y van Rijn J. 2002. Design and performance of a zero-discharge tilapia recirculating system. Aquaculture Engineering, 26(3): 191-203.
Silber A y Bartal A. 2008. Nutrition of substrate-grown plants. En: Soilless culture, Theory and practice. Raviv M y Lieth JH (Eds). 291 – 339 pp, Primera edición, Elsevier Science, 608 p.
Somerville C, Cohen M, Pantanella E, Stankus A y Lovatelli A. 2014. Small-scale aquaponic food production. Integrated fish and plant farming. FAO Fisheries and Aquaculture Technical Paper No. 589, Roma, Italia, 262 pp.
Suhl J, Dannehl D, Kloas W, Baganz D, Jobs S, Gunther A y Schmidt U. 2016. Advance aquaponics: Evaluation of intensive tomato production in aquaponics vs. conventional hydroponics. Agricultural Water Management, 178: 335-344.
Timmons M y Ebeling J. 2007. Biofiltration. En: Recirculating Aquaculture, Timmons M y Ebeling J (eds). 275 – 318 pp, Segunda Edición, Cayuga Aqua Ventures, Ithaca, 975 p.
Torres-Novoa DM y Hurtado-Nery VL. 2012. Requerimientos nutricionales para tilapia del nilo (Oreochromis niloticus). Orinoquía. 16(1): 63-68.
Uchoi R, Shyama S, Golandaj A, Sreenath VR y Yadav RP. 2015. Growth potential of pacu, Piaractus brachypomus in different culture. Approach, 3(6): 8 – 13.
Valvuena-Villareal RD, Vásquez-Torres W. 2011. El peso corporal esta inversamente relacionado con la excreción de amonio en tilapia roja (Oreochromis sp). Revista Colombiana de Ciencias Pecuarias, 24(2): 191-200.
Vásquez W. 2004. Principios de nutrición aplicada al cultivo de peces. Primera edición. Editorial Juan XXIII Ltda. Villavicencio, Colombia, 101 pp.
Vásquez-Torres W, Pereira-Filho M y Arias-Castellano JA. 2011. Optimum dietary crude protein requierement for juvenil cachama Piaractus brachypomus. Ciencia Rural, 41(12): 2183 – 2189.
Wongkiev S, Hu Z, Chandran K, Woo LJ, Khanal SK. 2017. Nitrogen transformation in aquaponics systems: A review. Aquaculture Engineering, 76: 9-19.
Zhang L, Nawata M, De Boeck G y Wood CM. 2015. Rh protein expression in branchial neuroepithelial cells and the role of ammonia in ventilatory control in fish. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 186: 39-51
Zhang S, Li M, Cheng J, Xu Z y Chen J.2016. Response and environmental assessment of two Chinese conventional carps to water quality regulation in recirculating aquaculture. Aquacultural Engineering, 74: 180-185.
Zhang J, Wang X y Zhou Q. 2017. Co-cultivation of Chlorella spp and tomato in a hydroponic system. Biomass and Bioenergy, 97: 132-138
Zofgrafos C, Goulden MC y Kallis G. 2014. Sources of human insecurity in the face of hydro-climatic change. Global Environmental Change, 29: 327-336.
Repositorio UMNG
Universidad Militar Nueva Granada
instacron:Universidad Militar Nueva Granada
Ako H, Baker A. 2009a. Small-scale lettuce production with hydroponics or aquaponics. Sustainable Agriculture, SA-2. College of Tropical Agriculture and Human Resources. University of Hawai at Manoa
Ako Hm, Baker A. 2009b. Nutrient fluxes in aquaponic systems. www.ctahr.hawai.edu/mbbe/
Alatorres-Jacome O, Garcia F, Soto-Zarazua GM y Rico-Garcia E. 2012. Techniques to asses fish productivity in aquaculture farmers and small fisheries: an overview of algebraic methods. Journal of Applied Sciences, 12(9): 888-892.
Alturo CC. 2016. Crecimiento y producción de acelga (Beta vulgaris car cicla) roja y verde, bajo condiciones de cubierta plástica en un sistema acuapónico y uno de cama contenida. Trabajo de grado. Programa de Tecnología en Horticultura. Universidad Militar Nueva Granada. 33 p.
Badiola M, Mendiola D y Bostock J. 2012. Recirculating Aquaculture Systems (RAS) analysis: Main issues on management and future challenges. Aquaculture Engineering, 51: 26-35.
Bernstein S. 2011. Plants. En: Aquaponic Gardening: A step by step guide to raising vegetables and fish together. Ed: Bernstein S. Editorial: New Society Publishers, Canada. 153 – 171 pp.
Beveridge MCM y Little DC. 2008. The History of aquaculture in traditional societies. En: Ecological Aquaculture: The evolution of the blue revolution, Costa-Pierce BA (ed). 3 – 29 pp, Primera edición, John Wiley & Sons-Blackwell Sience, Oxford, 400 p.
Broadley M, Brown P, Cakmak I, Rengel Z y Zhao F. 2012. Function of nutrients: Micronutrients. En: Marschner's Mineral Nutrition of Higher Plants. Marschner P (ed). 191-248 pp, Tercera edición, Academic Press, San Diego, 651 p.
Buzby KM y Lin LS. 2014. Scaling aquaponics systems: Balancing plant uptake with fish output. Aquacultural Engineering, 63: 39-44.
Carrascal J, Torres-Mesa A, Hurtado-Giraldo H y Gómez-Ramírez E. 2016. Levante de carpa común (Cyprinus carpio) en sistemas cerrados de recirculación bajo condiciones de laboratorio. Revista Facultad de Ciencias Básicas, 12 (2): 124 – 135.
Christianson L, Lepine C, Tsukuda S, SAito K y Summerfelt S. 2015. Nitrate removal effectiveness of fluidized sulfur-based autotrophic denitrification biofilters for recirculating aquaculture systems. Aquaculture Engineering, 68: 10-18.
Cifuentes R, González J, Montoya G, Jara A, Ortiz N, Piedra P y Habit E. 2012. Relación longitud-peso y factor de condición de los peces nativos del río San Pedro (cuenca del río Valdivia, Chile). Gayana Especial, 75(2): 101 – 110.
Cifuentes ML y Torres AC. 2012. Evaluación del crecimiento de goldfish (Carassius auratus), carpa (Cyprinus carpio) y orégano (Origanum vulgare) en un sistemas acuapónico. Trabajo de grado. Programa de Biología Aplicada. Universidad Militar Nueva Granada. 81 p.
Colt J, Lamoureux J, Patterson RN y Rogers GL. 2006. Reporting standards for biofilter studies. Aquaculture Engineering, 34: 377-388
Davidson J, Good C, Welsh C y Summerfelt S. 2011. The effects of ozone and water exchange rates on water quality and rainbow trout Oncorhynchus mykiss performance in replicated water recirculating systems. Aquacultural Engineering, 44: 80-96.
Diver S. 2010. Aquaponics-integration of hydroponics with aquaculture. ATTRA, 1 – 8. https://attra.ncat.org/attra-pub/download.php?id=56.
Dos Santos VB, Yoshihara E, Fonseca RT y Reiz RV. 2008. Exponential Growth Model of Nile Tilapia (Oreochromis niloticus) Strains Considering Heteroscedastic Variance. Aquaculture, 274(1): 96 – 100.
Eding EH, Kamstra A, Verreth JAJ, Huisman EA y Klapwijk A. 2006. Design and operation of trickling filters in recirculating aquaculture: A review. Aquaculture Engineering, 34(3): 234-260.
Edwards P. 2015. Aquaculture environment interactions: Past. present and likely future trends. Aquaculture, 447: 2-14.
Endut A, Jusoh A, Ali N, Wan Nik WB y Hassan A. 2010. A study on the optimal hydraulic loading rate and plant ratios in recirculation aquaponic system. Bioresource Technology, 101: 1511-1517.
FAO. 1994. Entre la Acuicultura de los “Más Pobres” y la de los “Más Ricos”. En: FAO Departamento de Pesca y Acuicultura. http://www.fao.org/docrep/field/003/AB478S/AB478S00.htm#TOC
FAO. 2014. The State of World Fisheries and Aquaculture. En: FAO Departamento de Pesca y Acuicultura. www.fao.org/3/a-i3720s.pd
FAO. 2016a. Estadísticas de pesca y acuicultura. Producción mundial de acuicultura 1950-2014 (FishstatJ). En: FAO Departamento de Pesca y Acuicultura [en línea o CD-ROM]. Roma. Publicación 2016. http://www.fao.org/fishery/statistics/software/fishstatj/en
FAO. 2016b. El estado mundial de la agricultura y la alimentación: Cambio climático, agricultura y seguridad alimentaria. En: FAO Departamento para la Alimentación y la Agricultura. www.fao.org/publications/sofa/2016/es/
Flick G, Verbost PM y Bonga SEW. 1995. Calcium transport processes in fishes. Fish Physiology, 14: 317-342
Hawkesford M, Horst W, Kichey T, Lambers H, Schjoerring J, Moller SI y White P. 2012. Functions of Macronutrients. En: Marschner's Mineral Nutrition of Higher Plants. Marschner P (ed). 135-189 pp, Tercera edición, Academic Press, San Diego, 651 p
Hernández C, Gómez A y Hurtado H. 2010. Estudio preliminar de levante de juveniles de arawana plateada (Osteoglossum bicirrhosum) en sistemas cerrados de recirculación. Revista Facultad de Ciencias Básicas, 6(1): 96 – 113.
Holm N. 2017. Why not organic hydroponics? http://www.hydroponics.com.au/why-not-organic-hydroponics/
Honda H, Watanaba Y, Kikuchi K, Iwata N, Takeda S, Uemoto H, Furata T y Kiyono M. 1993. High density rearing of Japanese flounder, Paralichthys olivaceus with a closed seawater recirculation system equipped with a denitrification unit. Suisanzoshoku, 41: 19 – 26.
Hvas M, Damsgaard C, Hog Gam LT, Thanh Houng DT, Jensen FB y Bayley M. 2016. The effect of environmental hypercapnia and size on nitrite toxicity in the striped catfish (Pangasianodon hypophtalmus). Aquatic Toxicology, 176: 151-160.
Hu Z, Lee JW, Chandran K, Kim S, Sharma K y Khanal SK. 2014. Nitrogen transformations in intensive aquaculture system and its implication to climate change through nitrous oxide emission. Biosource Technology, 130: 314-320
Hu Z, Lee JW, Chandran K, Kim S, Brotto AC y Khanal SK. 2015. Effect of plant species on nitrogen recovery in aquaponics. Biosource Techonology, 188: 92 – 98.
Hur SJ, Kim HS, Bahk YY y Park Y. 2017. Overview of conjugated linoleic acid formation and accumulation in animal products. Livestock Science, 195: 105-111.
Imbachi JF. 2016. Crecimiento de tres variedades de lechuga en un sistema acuapónico con tilapia roja en condiciones de invernadero. Trabajo de grado. Programa de Tecnología en Horticultura. Universidad Militar Nueva Granada. 32 p.
Ip YK y Chew SF. 2010. Ammonia production, excretion, toxicity, and defense in fish: a review. Frontiers in physiology, 1: 1-20.
Jensen FB. 2003. Nitrite disrupts multiple physiological functions in aquatic animals. Comparative Biochemistry and Physiology Part A, 135: 9 – 24.
Kim SH, Kim JH, Park MA, Hwang SD y Kang JC. 2015. The toxic effects of ammonia exposure on antioxidant and immune responses in Rockfish. Sebastes schlegelii during thermal stress. Enviromental Toxicology and Pharmacology, 40(3): 954-959
Lennard W. 2012. Aquaponic system design parameters: Solids filtration, treatment and re-use. Aquaponic Fact Sheet Series, 1-10.
Li M, Gong S, Li Q, Yuan L, Meng F y Wang R. 2016a. Ammonia toxicity induces glutamine accumulation: oxidative stress and immunosuppression in juvenile yellow catfish Pelteobagrus fulvidraco. Comparative Biochemestry and Physiology Part C: Toxicology & Pharmacology, 183-184: 1-6
Li S, Ji H, Zhang B, Tian J, Zhou J y Yu H. 2016b. Influence of black soldier fly (Hermetia illucens) larvae oil on growth performance, body composition, tissue fatty acid composition and lipid deposition in juvenile Jian carp (Cyprinus carpio var. Jian). Aquaculture, 465: 43 – 52.
Licamele JD. 2009. Biomass production and nutrient dynamics in aquaponics system. Trabajo de grado. Department of agriculture and Biosystems engineering. The University of Arizona. 172 p
Malpica AM, Ramírez JA y Torres A. 2014. Evaluación de la Restricción Alimenticia sobre el Crecimiento Compensatorio en alevinos de Cachama Blanca (Piaractus brachypomus). Revista Ciencia Animal, (7): 59 – 74.
Martínez O, Gómez E y Hurtado H. 2011. Levante de goldfish (Carassius auratus) en sistemas cerrados de recirculación. Revista Facultad de Ciencias Básicas, 7(2): 260 – 273.
Martins CIM, Pistrin MG, Ende SSW, Eding EH y Verreth JAJ. 2009a. The accumulation of substances in Recirculating Aquaculture Systems (RAS) affects embryonic and larval development in common carp Cyprinus carpio. Aquaculture, 291: 65-73.
Martins CIM, Ochola D, Ende SSW, Eding EH y Verreth JAJ. 2009b. Is growth retardation present in Nile tilapia Oreochromis niloticus cultured in low water exchange recirculating aquaculture systems? Aquaculture, 298(1-2): 43-50.
Martins CIM, Eding EH, Verdegem MCJ, Heinsbroek LTN, Schneider O, Blancheton JP, Roque d’Orbcastel E y Verreth JAJ. 2010. New developments in recirculating systems in Europe: A perspective on environmental sustainability. Aquaculture Engineering. 43: 83 – 93.
Martins CIM, Eding EH y Verreth JAJ. 2011. The effect of recirculating aquaculture systems on the concentrations of heavy metals in culture water and tissues of Nile tilapia Oreochromis niloticus. Food Chemistry, 126: 1001-1005.
Masser MP, Rakocy J y Losordo TM. 1999. Recirculating aquaculture tank production systems: Management of recirculating systems. Southern Regional Aquaculture Center, 452: 1 – 12
Meital LT, Sandow SL, Calder PC y Russel FD. 2017. Abdominal aortic aneurysm and omega-3 polyunsaturated fatty acids: Mechanisms, animal models, and potential treatment. Prostaglandins, Leukotrienes and Essential Fatty Acids (PLEFA), 118: 1-9.
Nelson RL y Pade JS. 2008. Aquaponic Food Production: Growing fish and vegetable for food and profit. Editorial Nelson and Pade Inc, 121 p
Pedersen LF, Suhr KI, Dalsgaard J, Pedersen PB y Arvin E. 2012. Effects of feed loading on nitrogen balances and fish performance in replicated recirculating aquaculture systems. Aquaculture, 338-341: 237-245.
Poleo G, Aranbarrio JV, Mendoza L y Romero O. 2011. Cultivo de Cachama Blanca en Altas Densidades y en Dos Sistemas Cerrados. Pesquisa Agropecuária Brasileira, 46(4): 429 – 437.
Rakocy JE, Masser MP y Losordo TM. 2006. Recirculating Aquaculture Tank Production Systems: Aquaponics – Integrating Fish and Plant Culture. Southern Regional Aquaculture Center, 454 http://fisheries.tamu.edu/files/2013/09/SRAC-Publication-No.-454-Recirculating-Aquaculture-Tank-Production-Systems-Aquaponics-Integrating-Fish-and-Plant-Culture.pdf
Rakocy J. 2007. Aquaponics: Vegetable Hydroponics in Recirculating Systems. En: Recirculating Aquaculture Systems. Timmons M y Ebeling J (Eds). 807 – 864 pp, Segunda Edición, Cayuga Aqua Ventures, 976 p
Rafiee G y Saad CR. 2005. Nutrient cycle and sludge production during different stages of red tilapia (Oreochromis sp.) growth in a recirculating aquaculture system. Aquaculture, 244: 109 – 118.
Rojas-Tirado P, Pedersen PB y Pedersen LF. 2016. Bacterial activity dynamics in the water phase during start-up of recirculating aquaculture systems. Aquaculture Engineering, xxx: xxx-xxx.
Santosh PL. 2003. The minerals. En: Fish nutrition. Halver J y Hardy R (Eds). 259 – 308 pp, Tercera Edición, Academic press, San Diego, 500 pp
Schneider O, Sereti V, Eding EH y Verreth JAJ. 2005. Analysis of nutrient flows in integrated intensive aquaculture systems. Aquacultural Engineering, 32: 379-401.
Shnel N, Barak Y, Ezer T, Dafni Z y van Rijn J. 2002. Design and performance of a zero-discharge tilapia recirculating system. Aquaculture Engineering, 26(3): 191-203.
Silber A y Bartal A. 2008. Nutrition of substrate-grown plants. En: Soilless culture, Theory and practice. Raviv M y Lieth JH (Eds). 291 – 339 pp, Primera edición, Elsevier Science, 608 p.
Somerville C, Cohen M, Pantanella E, Stankus A y Lovatelli A. 2014. Small-scale aquaponic food production. Integrated fish and plant farming. FAO Fisheries and Aquaculture Technical Paper No. 589, Roma, Italia, 262 pp.
Suhl J, Dannehl D, Kloas W, Baganz D, Jobs S, Gunther A y Schmidt U. 2016. Advance aquaponics: Evaluation of intensive tomato production in aquaponics vs. conventional hydroponics. Agricultural Water Management, 178: 335-344.
Timmons M y Ebeling J. 2007. Biofiltration. En: Recirculating Aquaculture, Timmons M y Ebeling J (eds). 275 – 318 pp, Segunda Edición, Cayuga Aqua Ventures, Ithaca, 975 p.
Torres-Novoa DM y Hurtado-Nery VL. 2012. Requerimientos nutricionales para tilapia del nilo (Oreochromis niloticus). Orinoquía. 16(1): 63-68.
Uchoi R, Shyama S, Golandaj A, Sreenath VR y Yadav RP. 2015. Growth potential of pacu, Piaractus brachypomus in different culture. Approach, 3(6): 8 – 13.
Valvuena-Villareal RD, Vásquez-Torres W. 2011. El peso corporal esta inversamente relacionado con la excreción de amonio en tilapia roja (Oreochromis sp). Revista Colombiana de Ciencias Pecuarias, 24(2): 191-200.
Vásquez W. 2004. Principios de nutrición aplicada al cultivo de peces. Primera edición. Editorial Juan XXIII Ltda. Villavicencio, Colombia, 101 pp.
Vásquez-Torres W, Pereira-Filho M y Arias-Castellano JA. 2011. Optimum dietary crude protein requierement for juvenil cachama Piaractus brachypomus. Ciencia Rural, 41(12): 2183 – 2189.
Wongkiev S, Hu Z, Chandran K, Woo LJ, Khanal SK. 2017. Nitrogen transformation in aquaponics systems: A review. Aquaculture Engineering, 76: 9-19.
Zhang L, Nawata M, De Boeck G y Wood CM. 2015. Rh protein expression in branchial neuroepithelial cells and the role of ammonia in ventilatory control in fish. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 186: 39-51
Zhang S, Li M, Cheng J, Xu Z y Chen J.2016. Response and environmental assessment of two Chinese conventional carps to water quality regulation in recirculating aquaculture. Aquacultural Engineering, 74: 180-185.
Zhang J, Wang X y Zhou Q. 2017. Co-cultivation of Chlorella spp and tomato in a hydroponic system. Biomass and Bioenergy, 97: 132-138
Zofgrafos C, Goulden MC y Kallis G. 2014. Sources of human insecurity in the face of hydro-climatic change. Global Environmental Change, 29: 327-336.
Repositorio UMNG
Universidad Militar Nueva Granada
instacron:Universidad Militar Nueva Granada
La acuicultura es un sector de producción en crecimiento, en el cual, parte de ella ha generado un impacto negativo al ambiente, lo que ha promovido la implementación de técnicas más amigables con el ambiente, como lo son: los sistemas cerrados d
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::f9a92fdc647b54e40953849af4795f37
https://hdl.handle.net/10654/16356
https://hdl.handle.net/10654/16356
Autor:
López Votteler, Gretta
Para enfrentar la contaminación y la explotación excesiva de suelos y fuentes hídricas, provocadas por un aumento en la demanda del sector agropecuario, en concordancia con el incremento poblacional, se han planteado nuevas estrategias de cultivo
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od______2802::49d2b7b91e3a1eae72e4dfa12e4f30c9
https://hdl.handle.net/10654/37793
https://hdl.handle.net/10654/37793