This study evaluated the effect of biofloc technology (BFT) application on water quality and production performance of red tilapia Oreochromis sp. at different stocking densities. Three different fish densities were applied, i.e. 25, 50, and 100 fish/m3, and for each density there were Control (without external carbon input) and BFT treatments. Mixed sex red tilapia with an initial average body weight 77.89 ± 3.71 g was cultured in 3 m3 concrete tanks for 14 weeks. Molasses was added on BFT treatments as the organic carbon source at a C/N ratio of 15. Control treatments of each density tested showed more fluctuated water quality parameters throughout the experimental period. The highest TAN and nitrite-nitrogen were observed in control trea...
Biofloc technology (BFT) is an alternative that can be used to provide additional feed source in add...
ABSTRACT The influence of water salinity on the culture of Nile tilapia with biofloc was evaluated u...
The world population continues to increase day by day. Therefore, aquaculture needs to grow in order...
This study evaluated the effect of biofloc technology (BFT) application on water quality and product...
This study evaluated the effect of biofloc technology (BFT) application on water quality and product...
The present study evaluates the biofloc technology (BFT) in light-limited tank culture of Nile tilap...
ABSTRACT Biofloc technology (BFT) has several advantages, such as low water supply requirements and ...
Abstract During a growout period of 14 weeks, the productive performance, organosomatic indices and ...
This research was aimed to discover the growth of converted Larasati tilapia (Oreochromis niloticus ...
Not AvailableBiofloc based aquaculture is important in waste recycling in intensive aquaculture and ...
The necessity of new technologies for the culture of aquatic organisms is becoming more evident, and...
SUMARY This work aimed to evaluate the water quality and the growth performance of Nile tilapia (Ore...
We evaluated the technical feasibility of reducing water dependency of rohu, Labeo rohita, culture w...
The use of biofloc technology (BFT) can improve fish production in regions with low water availabili...
A 42-day trial was conducted to evaluate the effects of a low-salinity biofloc system with different...
Biofloc technology (BFT) is an alternative that can be used to provide additional feed source in add...
ABSTRACT The influence of water salinity on the culture of Nile tilapia with biofloc was evaluated u...
The world population continues to increase day by day. Therefore, aquaculture needs to grow in order...
This study evaluated the effect of biofloc technology (BFT) application on water quality and product...
This study evaluated the effect of biofloc technology (BFT) application on water quality and product...
The present study evaluates the biofloc technology (BFT) in light-limited tank culture of Nile tilap...
ABSTRACT Biofloc technology (BFT) has several advantages, such as low water supply requirements and ...
Abstract During a growout period of 14 weeks, the productive performance, organosomatic indices and ...
This research was aimed to discover the growth of converted Larasati tilapia (Oreochromis niloticus ...
Not AvailableBiofloc based aquaculture is important in waste recycling in intensive aquaculture and ...
The necessity of new technologies for the culture of aquatic organisms is becoming more evident, and...
SUMARY This work aimed to evaluate the water quality and the growth performance of Nile tilapia (Ore...
We evaluated the technical feasibility of reducing water dependency of rohu, Labeo rohita, culture w...
The use of biofloc technology (BFT) can improve fish production in regions with low water availabili...
A 42-day trial was conducted to evaluate the effects of a low-salinity biofloc system with different...
Biofloc technology (BFT) is an alternative that can be used to provide additional feed source in add...
ABSTRACT The influence of water salinity on the culture of Nile tilapia with biofloc was evaluated u...
The world population continues to increase day by day. Therefore, aquaculture needs to grow in order...