Nano slow-release feed for yellow-head catfishes
A nano slow-release, yellow catfish technology, applied in animal feed, animal feed, application, etc., can solve the problems of lack of effective control of fish diseases, no harmful bacteria, insect killing, etc., to achieve increased drug loading and adsorption capacity , small impact, and the effect of improving yield and quality
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[0019] One of the objectives of the present invention is achieved through the following technical solutions: a feed for nanometer slow-release yellow catfish, characterized in that the raw material includes the following ingredients in weight ratio: 0.5-0.8 part of silicate bacteria, feces- A kind of feed of nanometer slow-release yellow catfish, it is characterized in that, this raw material comprises the composition of following weight ratio: 0.5-0.8 part of silicate bacteria, 1-3 part of streptococcus faecalis, 0.6-0.8 part of Trichoderma, marsh red pseudo 2-5 parts of single cell bacteria, 0.3-0.5 parts of yeast, 50-60 parts of fish bone meal, 65-70 parts of vinegar grain powder, 50-55 parts of waste liquid sediment, 40-60 parts of rice bran, 12-14 parts of brown sugar , 10-14 parts of salt, 80-85 parts of pig manure, 45-55 parts of pork slaughterhouse waste, 60-65 parts of aquatic plants, 12-16 parts of calcium bicarbonate, 14-17 parts of urea, 1-3 parts of iron citrate v...
Embodiment 2
[0028] The preparation method is the same as in Example 1.
[0029] In the juvenile stage of growth, pull out, divide and raise in the middle of five ponds, every pond 500, in four ponds, throw in the microorganism fish fertilizer of the embodiment 1 of the present invention and common fish fertilizer respectively according to the dosage of 200kg per mu (Contrast 1, produced by Beijing Century Ames Biotechnology Co., Ltd.), the other tank did not put fish fertilizer (control 2), but put in the same amount of ordinary fish food, and the rest of the feeding amount was the same, and the cultivation environment was the same. After 2-4 months of breeding, compare the yield and the growth status of the fish, and use the porous structure of hydroxyapatite to adsorb the fertilizer components in the inner grid of the carrier to achieve the purpose of slow release. Hydroxyapatite is also biodegradable, and the resulting degradation products are various trace element ions, which can be r...
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