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A kind of preparation method of fermented iron feed additive

A technology for feed additives and fermented materials, applied in the direction of using microorganisms, methods based on microorganisms, biochemical equipment and methods, etc., can solve the problems of high utilization rate and unstable utilization rate of organic iron, and achieve high absorption rate , Bioavailability stability, and the effect of expanding resource utilization

Active Publication Date: 2018-04-20
河南岐伯实业有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, with the deepening of research, it was found that the utilization rate of artificially synthesized organic iron was not stable, and some studies even found that the utilization rate of organic iron preparations was not as high as that of ferrous sulfate.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Embodiment 1: A kind of preparation method of fermented state iron feed additive, comprises the preparation of fermented raw material, the screening of microorganism and domestication culture, the inoculation fermentation of microorganism and the drying and packing of fermented material, and described preparation method comprises the following specific steps:

[0036] 1. Preparation of fermentation raw materials

[0037] The fermentation raw materials include solid raw materials and liquid raw materials.

[0038] Solid raw materials include iron raw materials, powder slag, bran, urea, sugar, sodium bicarbonate and zinc as nutritional supplements, wherein the iron raw material is ferrous sulfate monohydrate, which is determined by looking up product descriptions or laboratory measurements Iron content; powder slag is potato flour slag, air-dried basis, crude protein content 22.5%; bran is wheat bran, air-dried basis, crude protein content 15.3%; urea is a commercially av...

Embodiment 2

[0057] Embodiment 2: A kind of preparation method of fermented state iron feed additive, comprises the preparation of fermentation raw material, the screening of microorganism and domestication culture, the inoculation fermentation of microorganism and the drying and packing of fermented material, described preparation method comprises the following steps:

[0058] 1. Preparation of fermentation raw materials

[0059] The fermentation raw materials include solid raw materials and liquid raw materials.

[0060] Solid raw materials include iron raw materials, powder slag, bran, urea, sugar, sodium bicarbonate and zinc as nutritional supplements, among which, the iron raw material is ferrous sulfate pentahydrate, which is determined by looking up product descriptions or laboratory measurements Iron content; powder slag is potato flour slag, air-dried basis, crude protein content 22.5%; bran is wheat bran, air-dried basis, crude protein content 15.3%; urea is a commercially availa...

Embodiment 3

[0079] Embodiment 3: A kind of preparation method of fermented state iron feed additive, comprises the preparation of fermentation raw material, the screening of microorganism and domestication culture, the inoculation fermentation of microorganism and the drying and packing of fermented material, described preparation method comprises the following specific steps:

[0080] 1. Preparation of fermentation raw materials

[0081] The fermentation raw materials include solid raw materials and liquid raw materials.

[0082] Solid raw materials include iron raw materials, powder slag, bran, urea and sugar, sodium bicarbonate and zinc as nutritional supplements. Among them, the iron raw material is ferrous chloride, and the iron raw materials can be determined by looking up product descriptions or laboratory determination methods. content; powder residue is potato flour residue, air-dried basis, crude protein content 22.5%; bran is wheat bran, air-dried basis, crude protein content 1...

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PUM

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Abstract

A method for preparing a fermented iron feed additive. Firstly, the fermented substrate is prepared by using industrial and agricultural by-products such as alcohol industrial yellow water, bran, and powder slag as raw materials, and then iron-rich microorganisms are obtained through microbial screening and domestication culture, and inoculated Fermentation is carried out in the obtained fermentation substrate, and then the fermented material is dried, pulverized and packaged to obtain the product. Compared with chemically synthesized iron feed additives, the present invention uses by-products such as slag, bran, and alcohol industrial yellow water as culture materials and substrates, thereby expanding resource utilization and reducing the production cost of iron feed additives, and the prepared The bioavailability of fermented iron feed additives is more stable and the absorption rate is higher. Its iron absorption rate is above 24.7%, which is 5.7 times that of ferrous sulfate monohydrate and 1.8 times that of amino acid chelated iron.

Description

technical field [0001] The invention relates to the field of biological feed processing, in particular to a method for preparing a fermented iron feed additive by using microorganisms. Background technique [0002] Iron is one of the essential trace mineral elements for animals, iron deficiency is more common in young livestock and poultry, breeding livestock and so on. Iron deficiency can lead to decreased animal production performance, reduced resistance, and anemia in severe cases. Therefore, adding additional iron preparations to the feed is an important measure to meet the iron requirements of animals. However, studies have found that inorganic iron preparations (such as ferrous sulfate, ferrous chloride, etc.) have low bioavailability, and their absorption and utilization rate is less than 10%, and the rest of iron is discharged into the environment through feces, causing pollution. Studies in recent years have found that the utilization rate of organic iron preparat...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A23K10/12C12N1/36C12N1/20C12R1/125
Inventor 何万领李晓丽丁轲刘坤举朱亚丽宫胜龙廖波杨珊珊吴珂
Owner 河南岐伯实业有限公司