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Roman powder laying hen feed

A technology of laying hen feed and Roman powder, applied in animal feed, animal feed, application, etc., can solve the problems of high egg production rate, nutritional imbalance, low egg weight, etc., achieve obvious economic benefits, reduce costs, and increase egg production high rate effect

Inactive Publication Date: 2013-03-06
JINAN HEMEIHUA FEED
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

If farmers do not use full-price feed, they generally use corn and soybean meal rations, and the cost is high. If full-price feed is used, due to the unreasonable mix of raw materials and unbalanced nutrition, the peak egg production rate of laying hens is short and the egg weight is low. , we have developed a special feed for Roman powder layer hens, which can use a large number of unconventional raw materials, reduce costs, and at the same time have high egg production rate and heavy eggs

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] Example 1: In parts by weight, 500 parts of corn, 120 parts of soybean meal, 60 parts of rapeseed meal, 100 parts of corn sprayed protein, 100 parts of DDGS, 30 parts of premix, 85 parts of stone powder, and 5 parts of oil.

[0028] Among them, the components of the premix are: 200 parts of monocalcium phosphate, 350 parts of stone powder, 80 parts of table salt, 40 parts of sodium sulfate, 20 parts of choline, 60 parts of composite trace elements, 12 parts of multivitamins, lysine 30 parts, 35 parts of methionine, 15 parts of betaine, 134 parts of medical stone, 15 parts of sodium diacetate, 3 parts of phytase, 2 parts of compound enzyme preparation, 1 part of chromium picolinate, 3 parts of Vc.

[0029] Among them, the components in the composite trace elements are by weight percentage: 0.7% of basic copper chloride pentahydrate, 15.0% of ferrous sulfate monohydrate, 16.1% of manganese sulfate monohydrate, 12.86% of zinc sulfate monohydrate, 0.056% of sodium selenite ...

Embodiment 2

[0032] Example 2: In parts by weight, 500 parts of corn, 120 parts of soybean meal, 60 parts of rapeseed meal, 100 parts of corn sprayed protein, 100 parts of DDGS, 30 parts of premix, 85 parts of stone powder, and 5 parts of oil.

[0033] Among them, the components of the premix are: 250 parts of monocalcium phosphate, 300 parts of stone powder, 100 parts of table salt, 40 parts of sodium sulfate, 30 parts of choline, 70 parts of composite trace elements, 15 parts of multivitamins, lysine 50 parts, 45 parts of methionine, 10 parts of betaine, 44 parts of medical stone, 30 parts of sodium diacetate, 6 parts of phytase, 3 parts of compound enzyme preparation, 2 parts of chromium picolinate, and 5 parts of Vc.

[0034] Among them, the components in the composite trace elements are by weight percentage: 0.7% of basic copper chloride pentahydrate, 15.0% of ferrous sulfate monohydrate, 16.1% of manganese sulfate monohydrate, 12.86% of zinc sulfate monohydrate, 0.056% of sodium selen...

Embodiment 3

[0037] Example 3: In parts by weight, 500 parts of corn, 120 parts of soybean meal, 60 parts of rapeseed meal, 100 parts of corn sprayed protein, 100 parts of DDGS, 30 parts of premix, 85 parts of stone powder, and 5 parts of oil.

[0038] Among them, the components of the premix are: 220 parts of monocalcium phosphate, 320 parts of stone powder, 90 parts of salt, 30 parts of sodium sulfate, 25 parts of choline, 65 parts of compound trace elements, 14 parts of compound vitamins, lysine 40 parts, 40 parts of methionine, 12 parts of betaine, 111 parts of medical stone, 20 parts of sodium diacetate, 5 parts of phytase, 2.5 parts of compound enzyme preparation, 1.5 parts of chromium picolinate, 4 parts of Vc.

[0039] Among them, the components in the composite trace elements are by weight percentage: 0.7% of basic copper chloride pentahydrate, 15.0% of ferrous sulfate monohydrate, 16.1% of manganese sulfate monohydrate, 12.86% of zinc sulfate monohydrate, 0.056% of sodium selenite ...

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PUM

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Abstract

The invention relates to roman powder laying hen feed, which consists of the following components in parts by weight: 500 to 600 parts of corns, 120 to 150 parts of soybean meal, 60 to 80 parts of rapeseed meal, 100 to 120 parts of corn pulp protein, 100 to 110 parts of distillers dried grains with soluble (DDGS), 30 to 40 parts of gunk, 85 to 90 parts of stone powder and 5 to 8 parts of oil. According to the feed specially for roman powder laying hen, a great amount of unconventional raw materials can be used, the cost is reduced, the laying rate is high, the egg size is large, and remarkable economic benefit can be realized.

Description

technical field [0001] The invention relates to a feed, in particular to a feed for laying hens with Roman powder. Background technique [0002] The feed intake of Roman powder layer hens is lower than that of Hailan chickens, and their anti-stress ability is also poor. At present, in Hubei, feeding is wider. However, in the two-hu area, raw materials are relatively scarce, and most raw materials need to be imported from Henan and other places. If farmers do not use full-price feed, they generally use corn and soybean meal rations, and the cost is high. If full-price feed is used, due to the unreasonable mix of raw materials and unbalanced nutrition, the peak egg production rate of laying hens is short and the egg weight is low. , we have developed a special feed for Roman powder layers, which can use a large number of unconventional raw materials, reduce costs, and at the same time have high egg production rate and heavy eggs. Contents of the invention [0003] In orde...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A23K1/18
Inventor 刘方波黄晓辉张华荣
Owner JINAN HEMEIHUA FEED
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