Feeding management method of milk goat in dry milk period

A management method and technology for dairy goats, applied in the direction of animal feed, animal feed, additional food elements, etc., can solve the problems of decreased health status and production performance, heavy weight of ewes and fetuses, aflatoxin poisoning, etc. Grain toxin risk, scientific and reasonable management methods, and the effect of avoiding constipation

Inactive Publication Date: 2019-04-16
西安铁骑力士饲料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing breeding feed for dairy goats in the late pregnancy is mainly to increase the main nutrients such as protein and fat, but it is easy to cause the ewes and fetuses to overweight, resulting in frequent dystocia and low survival rate of lambs
However, in the traditional feeding method of concentrated roughage, dairy animals are prone to eat aflatoxin-contaminated feed, causing aflatoxin poisoning, resulting in liver damage, accompanied by a significant decline in health and production performance, and even endangering humans through the secreted milk. healthy

Method used

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  • Feeding management method of milk goat in dry milk period
  • Feeding management method of milk goat in dry milk period

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Effect test

preparation example Construction

[0045] Preparation method of complete pellet feed

[0046] The preparation method of the full-price granular feed for dairy goats during the dry period of milking provided by the invention comprises the following steps:

[0047] Step 1: taking the crushed corn according to parts by weight, and sieving to obtain corn flour;

[0048] Step 2: taking and pulverizing the alfalfa powder, soybean meal, cotton meal, sprayed corn husk, soybean meal, apple pomace, sesame cake, sunflower husk and corn germ cake in parts by weight to obtain a mixed powder;

[0049] Step 3: taking other raw materials by weight, and mixing them evenly with the corn flour obtained in step 1 and the mixed powder obtained in step 2 to obtain a mixture;

[0050] Step 4: Granulating the mixture obtained in Step 3 to obtain granules.

[0051] In some embodiments, the screening in step 1 adopts a double-layer primary cleaning screen, the upper screen mesh of the double-layer primary cleaning sieve is 10mm, and t...

Embodiment 1

[0064] Weigh the following raw materials in parts by weight: 33 parts of corn, 9 parts of wheat bran, 7 parts of alfalfa powder, 8 parts of soybean meal, 3 parts of cotton meal, 3 parts of sprayed corn husks, 10 parts of soybean hulls, 8 parts of apple pomace, 2 parts of sesame cake, 3 parts of sunflower shell, 5.5 parts of corn germ cake, 4 parts of wheat flour, 1.5 parts of stone powder, 0.5 part of calcium hydrogen phosphate, 0.7 part of sodium chloride, 0.5 part of sodium bicarbonate, 0.2 part of ruminant yeast, compound 0.03 part of enzyme preparation, 0.15 part of calcium sulfate, 0.2 part of sweetener, 0.50 part of bentonite, 0.02 part of antifungal agent, 0.1 part of trace element additive, and 0.1 part of multivitamin.

[0065] Wherein, every 100g of trace element additives is composed of the formula in Table 1, and every 102g of multivitamin is composed of the formula in Table 2.

[0066] Table 1 Trace element additive formula table

[0067] component name ...

Embodiment 2

[0073] Weigh the following raw materials by weight: 28 parts of corn, 10 parts of wheat bran, 7.5 parts of alfalfa powder, 8 parts of soybean meal, 3 parts of cotton meal, 3 parts of sprayed corn husks, 10 parts of soybean hulls, 9 parts of apple pomace, sesame seeds 3 parts of cake, 3.5 parts of sunflower shell, 6 parts of corn germ cake, 4.8 parts of wheat flour, 1.2 parts of stone powder, 0.8 part of calcium hydrogen phosphate, 0.6 part of sodium chloride, 0.5 part of sodium bicarbonate, 0.3 part of ruminant yeast, compound enzyme 0.03 part of preparation, 0.2 part of sweetener, 0.50 part of bentonite, 0.02 part of antifungal agent, 0.1 part of trace element additive, and 0.1 part of multivitamin.

[0074] Wherein trace element additive and multivitamin are identical with by embodiment 1.

[0075] In the feed raw material of this embodiment, the ratio of neutral detergent fiber to starch is 0.95.

[0076] Preparation method: crush corn, sieve with double-layer initial clea...

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Abstract

The invention discloses a feeding management method of a milk goat in a dry milk period. The method comprises dry milk front-stage management and dry milk post-stage management, managing measure regulation on feeding amount, squeezing time, exercising, breast tissue protection and the like are conducted on the milk goat on which planned milk drying is conducted in different periods, milk secretingceasing of the milk goat is safely through proper manual intervention cooperating with a milk goat dry milk period complete pellet feed, mammary gland is restored, antenatal and postpartum diseases of the milk goat are effectively reduced, dietary toxin risks are eliminated, nutrients are accumulated, the body condition of the milk goat is rapidly and efficiently restored, and the purposes of health and high yield are achieved.

Description

technical field [0001] The invention belongs to the technical field of animal feeding, and in particular relates to a method for feeding and managing dairy goats during the dry milking period. Background technique [0002] During one lactation period, dairy goats produce about 12-20 times their body weight in milk. After the lactation period, the weight of dairy goats drops a lot, and the fat loss is serious. They must go through the dry milk period to restore their body condition. [0003] After the dairy goat is mated and pregnant, the amount of progesterone secreted by the corpus luteum increases, which inhibits the release of prolactin, and the milk production of the goat has actually been greatly reduced. After the dairy goat is pregnant, the fetus grows faster and needs a lot of nutrients. At the same time, because the ewe produces milk after giving birth, the physical strength and nutrition are also consumed. The nutrients stored in the body are decomposed in large q...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01K67/02A23K10/18A23K10/30A23K10/37A23K20/174A23K20/189A23K20/20A23K20/22A23K20/24A23K20/26A23K20/28A23K50/10
CPCA01K67/02A23K10/18A23K10/30A23K10/37A23K20/174A23K20/189A23K20/20A23K20/22A23K20/24A23K20/26A23K20/28A23K20/30A23K50/10Y02P60/87
Inventor 刘烨彭点懿王伟明杨尚霖崔喜忠周建川
Owner 西安铁骑力士饲料有限公司
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