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Estabilidade e lixivia??o do fósforo da ra??o de tilápia na água

机译:罗非鱼根磷在水中的稳定性和漂白

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The present research aimed to investigate the stabil??ity of pellets and phosphorus leaching of diets formulated for juveniles of Nile tilapia (Oreochromis niloticus), with different sources of phosphorus and different exposure times in water. Six diets were elaborated by varying the source of phosphorus (1 ? dicalcium phosphate (DP); 2 ? meat and bone meal (MBM); 3 ? poultry meal (PM); 4 ? anchovy meal (AM); 5 ? tilapia filleting industrial meal (TM); 6 ? calcined bone meal (CBM)) and, then, were submitted to four exposure times in water (5, 10, 15 and 20 minutes), with three replicates. Thus, 72 aquariums of 30?liters were used, each being an experimental unit. All diets were evaluated for electrical conductivity of water, turgidity of pellets, mineral matter leaching, flotation of pellets, and total phosphorus leaching. Only turgidity and flotation of pellets varied with the different sources of phosphorus in the diets. The MBM diet had the highest turgidity of pellets. The PM, AM, and CBM diets had the highest flotation of pellets. The total phosphorus leaching had a linear effect with the increase of the exposure time, showing a greater release of phosphorus in the water with increase of exposure time. Data showed that PM, AM, and CBM diets had less potential impact on the aquatic environment. Conversely, the TM diet has greater polluting potential. These results showed that diets formulated with different sources of phosphorus exhibit distinct actions in the water, providing different effects on the fish culture environment.
机译:本研究旨在调查为尼罗罗非鱼(Oreochromis niloticus)少年配制的饲料的颗粒稳定性和磷的浸出情况,其中磷的来源不同且在水中的暴露时间不同。通过改变磷的来源精心设计了六种饮食(1?磷酸二钙(DP); 2?肉骨粉(MBM); 3?家禽粉(PM); 4?cho鱼粉(AM); 5?罗非鱼片)餐(TM); 6块煅烧骨粉(CBM)),然后在水中暴露4次(5、10、15和20分钟),重复三次。因此,使用了72个30升的水族馆,每个水族馆都是一个实验单位。评估所有日粮的水电导率,颗粒的膨胀度,矿物质浸出,颗粒的浮选和总磷的浸出。日粮中磷的不同来源只会使颗粒的浮游性和浮选发生变化。 MBM日粮的颗粒性最高。 PM,AM和CBM日粮的浮选率最高。总磷的浸出量随着暴露时间的增加而呈线性关系,随着暴露时间的增加,水中磷的释放量更大。数据显示,PM,AM和CBM日粮对水生环境的潜在影响较小。相反,TM饮食具有更大的污染潜力。这些结果表明,用不同磷源配制的日粮在水中表现出不同的作用,对鱼类养殖环境产生不同的影响。

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