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Influence of pond fertilization and feeding rate on growth performance, economic returns and water quality in a small-scale cage-cum-pond integrated system for production of Nile tilapia (Oreochromis niloticus L.)
Authors:Herwig Waidbacher  David M Liti  Maria Fungomeli  Raphael K Mbaluka  Jonathan M Munguti  & Michael Straif
Institution:Department of Water, Atmosphere &Environment, BOKU –University of Natural Resources &Applied Life Sciences, Vienna, Austria; Moi University, Department of Zoology, Eldoret, Kenya; Kipepeo Project, Kosokoke Forest, Malindi, Kenya; Sagana Fish Farm, Sagana, Kenya; Kenya Marine &Fisheries Research Institute, Sangoro Aquaculture Station, PAP-Onditi Kisumu, Kenya
Abstract:The effects of pond fertilization and feeding rate on growth, economic returns and water quality were investigated to develop a low‐cost cage‐cum‐pond integrated system for production of Oreochromis niloticus (L.). Hand‐sexed male fingerlings averaging 19±0.39 and 32±0.69 g were stocked in cages and open ponds at 150 fish cage?1 and 2 fish m?2 respectively. Fish were cultured for 114 days in five triplicate treatments. Cages were installed into ponds and caged fish were fed a 24% protein diet at 3% (T1) and 6% (T2) body weight day?1 (BWD) without pond fertilization, and 6% BWD with pond fertilization (T3). The open water in the fourth treatment (T4) was not stocked but contained caged fish, which were fed 6% BWD for the first 57 days followed by 3% BWD for the remaining period. Ponds in the control (T5) had no cages and were neither fertilized nor open‐pond fish fed. Feeding rate and pond fertilization significantly (P<0.05) affected fish growth, profitability and water quality among treatments. Fish growth, feed utilization, fish yield, water quality and profits were significantly (P<0.05) better in T3 than the other treatments. It was concluded that fish production and economic returns were optimized at 6% BWD in fertilized ponds.
Keywords:Oreochromis niloticus            cage  fertilized ponds  integration  feeding rate
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