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Ox feed and producing process thereof

A production process and beef cattle technology, applied in the field of beef cattle feed, can solve the problems of long feeding time, low feeding efficiency, large waste, etc., and achieve the effect of fast weight gain, good meat quality and improved quality

Inactive Publication Date: 2003-09-03
CHANGDA INDAL CHANGCHUN CITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The invention provides a beef cattle feed and its production process, which solves the problems of long feeding time, slow weight gain, large waste and low feeding benefit of the existing ruminant feed

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] First prepare the premix:

[0016] Weigh 5g of zinc sulfate, 5.3g of ferrous sulfate, 0.4g of anhydrous copper sulfate, 0.70g of 1% potassium iodide, 0.7g of 1% sodium selenite, 6.6g of 1% cobalt chloride, 7.0g of manganese sulfate, VA5.7g , V D3 6g, V E 8g, 4g of antioxidant BHT, 50.6g of fine barley bark, and trace elements of 200 mesh and 400 mesh fine powder were mixed and stirred in a gradient of 10% until all were mixed uniformly.

[0017] Preparation of concentrated material Weigh 63.7g of slow-release non-protein nitrogen, 3.6g of hydrogen calcium, 1.2g of stone powder, 0.8g of salt, 4.8g of feather powder, and 4.4g of needle powder. The fineness is 20 mesh and 50 mesh fine powder respectively. Add 1 g of the above-mentioned premixed material, and also mix and stir according to the gradient of 10% to prepare 10%-15% feed for beef cattle.

Embodiment 2

[0019] First prepare the premix:

[0020] Weigh 5.6g of zinc sulfate, 5.6g of ferrous sulfate, 0.6g of anhydrous copper sulfate, 0.8g of 1% potassium iodide, 0.7g of 1% sodium selenite, 8.6g of 1% cobalt chloride, 8.0g of manganese sulfate, VA5. 7g, V D3 6.6g, V E 7g, 4g of antioxidant BHT, 46.8g of fine barley bark, and trace elements of 200 mesh and 400 mesh fine powder were mixed and stirred in a gradient of 10% until all were mixed uniformly.

[0021] Preparation of concentrated material Weigh 65.7g of slow-release non-protein nitrogen, 4.0g of calcium hydrogen, 1.2g of stone powder, 0.8g of salt, 6.5g of feather powder, 4.5g of anhydrous sodium sulfate, and 4.4g of needle leaf powder. Mesh and 50 mesh fine powders are added to 1 g of the above-mentioned premix, and mixed and stirred in a gradient of 10% in proportion to make 10% to 15% feed for beef cattle.

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PUM

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Abstract

A feed for meat cattle is prepared from zinc sulfate, ferrous sulfate, manganese sulfate, copper sulfate, potassium iodide, sodium selenite, cabalt chloride, Mo, VA, VB, VD3, VB5, antioxidizing agent, fine wheat bran, slowly-releasing non-protein nitrogen, leaf powder, light calcium, stone powder, salt, CT No.1, and anhydrous sodium sulfate. Its advantage are easy decomposing, high absorptivity (95-98%), low cost, and high speed to increase weight of meat cattle.

Description

Technical field: [0001] The invention relates to a feed formula and a production process for ruminant livestock for meat, specifically discloses a beef cattle feed and a production process thereof, and belongs to the technical field of feed production. Background technique: [0002] At present, there are many kinds of feed for feeding livestock, which usually must be fed according to the type and purpose of the livestock. In my country, due to the lack of research on ruminant feeds such as cattle and sheep, soybean meal is generally used as the main egg source for meat growth. The quality of the prepared feed is too poor, the absorption is low, and the cost is high. Due to the special physiological functions of ruminants, the ingested protein cannot be directly absorbed, so the feed utilization rate is low, the waste is large, and the excretion is large, resulting in high cost of fattening cattle, slow weight gain, and poor meat quality. Feed problems such as long fattening...

Claims

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Application Information

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IPC IPC(8): A23K10/26A23K10/37A23K20/174A23K20/20A23K20/24A23K50/10
CPCY02P60/87
Inventor 齐庆文
Owner CHANGDA INDAL CHANGCHUN CITY
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