Amino acid chelating compound organic feed additive and production method thereof

An organic feed and amino acid technology, applied in animal feed, animal feed, applications, etc., can solve problems affecting the central nervous system of animals, prone to fractures, and blocked keratin synthesis, so as to improve environmental pollution and reduce internal energy The effect of high consumption, absorption and utilization

Active Publication Date: 2012-08-08
南宁市泽威尔饲料有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

When animals lack copper, the symptoms are as follows: ① It affects the release of iron from the reticuloendothelial system and liver cells into the blood, causing the concentration of copper in the liver and the level of red blood cells in the blood to decrease, resulting in anemia; ② Phosphorus and calcium in animal serum are not easy Deposition on the cartilage matrix increases the solubility of the bone glue source, resulting in osteoporosis, abnormal bone development and deformity, and prone to fractures; ③ damage to arterial elastin can cause damage to the elastic fibers of the arterial adventitia and cause blood vessel rupture; ④ Reduce the activity of copper-containing tyrosinase involved in pigmentation, resulting in the blockage of keratin synthesis, resulting in slow growth of hair coat of hairy animals, fragile hair quality, and decreased hair quality; ⑤ Reduce animal reproductive ability and affect animal central nervous system

Method used

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  • Amino acid chelating compound organic feed additive and production method thereof
  • Amino acid chelating compound organic feed additive and production method thereof
  • Amino acid chelating compound organic feed additive and production method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] First, put 10g of methionine, 10g of lysine, 10g of glutamic acid, 10g of cystine, 3g of manganese sulfate and 5g of zinc sulfate heptahydrate into the No. 1 reactor for chelation reaction. The temperature is controlled at 80-100°C. Time 5-8 hours. Then put 10g of methionine, 10g of lysine, 10g of glutamic acid, 10g of cystine, 0.5g of copper sulfate and 0.1 of ferrous sulfate heptahydrate into No. 2 reactor for chelation reaction, and the temperature is controlled at 80-100°C , The reaction time is 5-8 hours. Then add 0.05g of calcium iodate and 0.05g of sodium selenite into the chelate obtained by reacting with reactor No. 1 and No. 2 for metering, mixing and adsorption, and then use air flow or hot air to dry and dry; then add wheat rice Stone or montmorillonite is premixed, and then pulverized by a pulverizer; then sieved, inspected, and then measured and packaged to obtain the product.

Embodiment 2

[0052] First, put 20g of methionine, 20g of lysine, 20g of glutamic acid, 20g of cystine, 5g of manganese sulfate and 8g of zinc sulfate heptahydrate into the No. 1 reactor for chelation reaction. Time 5-8 hours. Then put 20g of methionine, 20g of lysine, 20g of glutamic acid, 20g of cystine, 1g of copper sulfate and 0.5g of ferrous sulfate heptahydrate into No. 2 reactor for chelation reaction, and the temperature is controlled at 80-100°C , The reaction time is 5-8 hours. Then add 0.1g of calcium iodate and 0.1g of sodium selenite to the chelate obtained by reacting with reactor No. 1 and No. 2 for metering, mixing and adsorption, and then use air flow or hot air to dry and dry; then add wheat rice Stone or montmorillonite is premixed, and then pulverized by a pulverizer; then sieved, inspected, and then measured and packaged to obtain the product.

Embodiment 3

[0054] First, put 40g of methionine, 40g of lysine, 40g of glutamic acid, 40g of cystine, 5g of manganese sulfate and 8g of zinc sulfate heptahydrate into the No. 1 reactor for chelation reaction. Time 5-8 hours. Then put 40g of methionine, 40g of lysine, 40g of glutamic acid, 40g of cystine, 2g of copper sulfate and 3g of ferrous sulfate heptahydrate into the No. The reaction time is 5-8 hours. Then add 1 g of calcium iodate and 1 g of sodium selenite to the chelates obtained by reacting with reactor No. 1 and No. 2 for metering, mixed adsorption, and then adopt air flow or hot air drying; then add medical stone or The montmorillonite is premixed, and then pulverized by a pulverizer; then sieved, inspected, and then measured and packaged to obtain the product.

[0055]

[0056] 3. Amino acid chelated compound organic feed additive—main nutrient composition index of Qinlele products

[0057]

[0058] In 2009, Guangxi Feed Monitoring Institute, Nanning Zewell Feed Co., L...

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Abstract

The invention discloses an amino acid chelating compound organic feed additive, which is characterized in that the amino acid chelating compound organic feed additive comprises the following raw materials in parts by weight: 0.5-2 of copper sulphate, 5-12 of zinc sulphate heptahydrate, 3-8 of manganese sulphate, 0.1-5 of ferrous sulphate heptahydrate, 10-50 of amino acid, 30-50 of calcium, 0.05-1 of trace elements, and 5-10 of filling material. The amino acid chelating compound organic feed additive disclosed by the invention has electric neutrality and more complete absorption; molecules can directly enter blood to be utilized for whole-body circulation through cell walls more smoothly; and the amino acid chelating compound organic feed additive has the advantages of steady chemical property, high biological value, low additive amount, good palatability, safety and high efficiency. The invention further discloses a production method of the amino acid chelating compound organic feed additive.

Description

technical field [0001] The invention relates to a production method of an animal organic feed additive, in particular to an amino acid chelating compound organic feed additive and a production method thereof. Background technique [0002] my country's feed industry has been developing vigorously since the early 1980s, and it has been more than 20 years. In the production process of more than 20 years, a large amount of inorganic trace elements have been added, such as copper sulfate, zinc sulfate, manganese sulfate, ferrous sulfate, etc. Due to the structure of these inorganic trace elements, their biological potency is low, and animals The absorption and utilization capacity is limited, so a large amount of addition is required, and only a small part can be absorbed by animals. Generally, the absorption amount is only less than 1 / 3 of the added amount, and the unabsorbed trace elements are excreted from animal feces It is produced or deposited in the bones, liver and even ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A23K1/16A23K1/175
Inventor 周建群
Owner 南宁市泽威尔饲料有限责任公司
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