Middle broiler feed

A technology for chicken and feed in broiler, applied in animal feed, animal feed, application, etc., can solve the problem of low content of high-quality nitrogen source nutrient small peptides and free amino acids, lowering the biological titer of protein and amino acids, and unfavorable feed protein to the body. Protein conversion and other problems, to achieve the effect of facilitating wetting and mixing, promoting polymerization, and improving hardness

Inactive Publication Date: 2014-04-09
昆明黄龙山(饲料)工贸有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the above-mentioned combination has the following problems: the content of anti-nutritional factors in protein raw materials is high, while the content of high-quality nitrogen source nutritional small peptides and free amino acids is low, which reduces the biological potency of protein and amino acids, and is not conducive to the conversion of feed protein to body protein. Transformation; undigested nitrogen source nutrients are excreted with feces, which not only wastes precious protein resources, but also causes "eutrophication" pollution of water and soil

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021] A meat-in-meat chicken feed, comprising the following raw materials in parts by weight: 60 corn, 30 soybean meal, 10 corn gluten powder, 0.5 soybean oil, 0.8 fine stone powder, 0.8 calcium hydrogen phosphate, 0.1 amino acid, 0.1 vitamin premix, Trace element premix 0.3;

[0022] Wherein, each kilogram of the vitamin premix contains vitamin A25~35MIU, vitamin D310~20MIU, vitamin E80~150g, vitamin K35~15g, vitamin B15~15g, vitamin B225~35g, vitamin B610~20g, vitamin B120.05~ 0.15mg, niacinamide 150~200g, D-pantothenic acid 30~60g, folic acid 2~8g, D-biotin 0.2~0.8mg;

[0023] Wherein, each kilogram of the trace element premix contains 50-100 mg of iron, 50-100 mg of zinc, 60-100 mg of manganese, 10-15 mg of copper, 5-8 mg of iodine, 8-14 mg of selenium, and 0.3-0.5 mg of cobalt;

[0024] The above raw materials are produced by the following method: crush corn, soybean meal, and corn gluten powder through a 1.5mm aperture sieve, mix the raw materials to be used with the r...

Embodiment 2

[0026] A meat-in-meat chicken feed, comprising the following raw materials in parts by weight: corn 62.6, soybean meal 26, fish meal 3, soybean oil 3, fine stone powder 1.4, calcium hydrogen phosphate 1, amino acid 1.2, vitamin premix 0.8, trace elements premix 1.0;

[0027] Wherein, each kilogram of the vitamin premix contains vitamin A25~35MIU, vitamin D310~20MIU, vitamin E80~150g, vitamin K35~15g, vitamin B15~15g, vitamin B225~35g, vitamin B610~20g, vitamin B120.05~ 0.15mg, niacinamide 150~200g, D-pantothenic acid 30~60g, folic acid 2~8g, D-biotin 0.2~0.8mg;

[0028]Wherein, each kilogram of the trace element premix contains 50-100 mg of iron, 50-100 mg of zinc, 60-100 mg of manganese, 10-15 mg of copper, 5-8 mg of iodine, 8-14 mg of selenium, and 0.3-0.5 mg of cobalt;

[0029] The above raw materials are produced by the following method: crush corn, soybean meal, and corn gluten powder through a 2.0mm aperture sieve, mix the ready-to-use raw materials with the remaining r...

Embodiment 3

[0031] A meat-in-meat chicken feed, comprising the following raw materials in parts by weight: corn 65, soybean meal 25, corn gluten meal 7, fish meal 1, soybean oil 1, fine stone powder 1, calcium hydrogen phosphate 1, amino acid 0.2, vitamin premix Material 0.2, trace element premix 0.5;

[0032] Wherein, each kilogram of the vitamin premix contains vitamin A25~35MIU, vitamin D310~20MIU, vitamin E80~150g, vitamin K35~15g, vitamin B15~15g, vitamin B225~35g, vitamin B610~20g, vitamin B120.05~ 0.15mg, niacinamide 150~200g, D-pantothenic acid 30~60g, folic acid 2~8g, D-biotin 0.2~0.8mg;

[0033] Wherein, each kilogram of the trace element premix contains 50-100 mg of iron, 50-100 mg of zinc, 60-100 mg of manganese, 10-15 mg of copper, 5-8 mg of iodine, 8-14 mg of selenium, and 0.3-0.5 mg of cobalt;

[0034] The above raw materials are produced by the following method: crush corn, soybean meal, and corn gluten powder through a 2.0mm aperture sieve, mix the raw materials to be us...

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PUM

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Abstract

The invention discloses a middle broiler feed. The middle broiler feed comprises the following raw materials in parts by weight: 60-80 parts of corns, 5-30 parts of soybean meal, 1-10 parts of corn gluten meal, 0-5 parts of fish meal, 0.5-3 parts of soybean oil, 0.8-2.5 parts of fine stone powder, 0.8-2.5 parts of calcium hydrophosphate, 0.1-1.2 parts of amino acid, 0.1-0.8 part of vitamin premix and 0.3-1.2 parts of microelement premix. The amino acid level of the middle broiler feed adapts to that of an animal according to an ideal amino acid mode; the digestibility is improved, and particularly, the utilization rate of feed proteins and the utilization rate of amino acid are improved; generation of ammonia gas in a henhouse is reduced; synthetic amino acid is appropriately added, and the crude protein level is correspondingly reduced, so that protein feed resources can be saved, and the output of nitrogen in the excreta of livestock and poultry can be reduced; the daily gain is high, the feed conversion ratio is low, the raising cycle is greatly shortened, the slaughtering rate is improved, and economic benefits are remarkable.

Description

technical field [0001] The invention belongs to the technical field of animal feed, and in particular relates to a meat-in-meat chicken feed. Background technique [0002] At present in my country, the number of broiler chickens is increasing year by year. Growth rate is the main measure of live performance and productivity used by the poultry industry, while growth rate and feed utilization efficiency are the two most commonly used parameters when evaluating a feed program. Since a large number of factors can affect the growth of broilers, it is difficult to distinguish the factors that actually affect growth one by one. From the perspective of the impact of feed on growth, the levels of energy and amino acids in the diet must be relative to the levels of all broilers. The total amount of feed fed was measured. Feed utilization is the most sensitive of the live performance parameters that can be easily measured. Feed utilization is directly affected by the chicken's dail...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A23K1/18A23K1/14A23K1/10A23K1/16A23K1/175
Inventor 钟丽红
Owner 昆明黄龙山(饲料)工贸有限公司
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