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Preparation method of feed additive for control of avian coccidiosis

A feed additive, chicken coccidiosis technology, applied in the direction of animal feed, additional food elements, application, etc., can solve the problems of volatile plant essential oils and loss of efficacy, the effect of coccidiosis control is still blank, and the toxic and side effects are not considered. , to improve the immune and antiviral ability of the body, overcome the volatile characteristics, and activate the effect of digestive mucosal receptors

Active Publication Date: 2016-04-13
山川生物科技(武汉)有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] (1) Without considering the characteristics of plant essential oils that are volatile and lose their efficacy, the above patents either use liquid addition directly; or directly use adsorbents such as activated carbon for adsorption, but essential oils are volatile substances, and untreated essential oil products are easily loss of efficacy;
[0008] (2) The mixture of essential oil products and probiotics does not take into account the toxic and side effects of essential oils on probiotics;
[0009] (3) The control effect of Boluohui plant or Boluohui extract on coccidia is still blank

Method used

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  • Preparation method of feed additive for control of avian coccidiosis
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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0031] (1) The essential oil products are mixed in a certain proportion, and the mixed formula is cinnamaldehyde 30g; thymol 10g; eugenol 10g; carvacrol 10g; peppermint oil 3g; eucalyptus oil 37g to obtain semi-finished product 1.

[0032] (2) The mixed essential oil and 100 g of medium chain fatty acid ester were further mixed, and the rotating speed of the homogenizer during mixing was 24000 r / min; the homogenization time was 10 min to obtain semi-finished product 2.

[0033] (3) Pulverize the boron back to the plant through a 40-mesh screen, and then mix with the silica particles in a mass ratio of 1:1 to obtain a semi-finished product 3.

[0034] (4) The obtained semi-finished product 2 and semi-finished product 3 are sprayed and mixed by a spray tower according to a mass ratio of 1:1, and the product obtained after mixing is the finished feed additive product.

Embodiment 2

[0036] (1) The essential oil products are mixed in a certain proportion, and the mixed formula is cinnamaldehyde 40g; thymol 15g; eugenol 5g; carvacrol 5g; peppermint oil 3g; eucalyptus oil 32g to obtain semi-finished product 1.

[0037] (2) The mixed essential oil and 100 g of medium-chain fatty acid ester were further mixed, and the rotating speed of the homogenizer was 24000 r / min during mixing; the homogenization time was 20 min, and the semi-finished product 2 was obtained.

[0038] (3) Pulverize the boron back to the plant through a 40-mesh sieve, and then mix with the silica particles in a mass ratio of 1:1.5 to obtain a semi-finished product 3.

[0039] (4) The obtained semi-finished product 2 and the semi-finished product 3 are sprayed and mixed by a spray tower according to a mass ratio of 1:2, and the product obtained after mixing is the finished feed additive product.

Embodiment 3

[0041] (1) The essential oil products are mixed in a certain proportion, and the mixed formula is cinnamaldehyde 35g; thymol 20g; eugenol 6g; carvacrol 8g; peppermint oil 1g; eucalyptus oil 30g to obtain semi-finished product 1.

[0042] (2) The mixed essential oil is further mixed with 100 g of medium chain fatty acid ester, and the rotating speed of the homogenizer is 24000 r / min during mixing; the homogenization time is 15 min to obtain semi-finished product 2.

[0043] (3) Pulverize the boron back to the plant through a 40-mesh sieve, and then mix with the silica particles in a mass ratio of 1:1.2 to obtain a semi-finished product 3.

[0044] (4) The obtained semi-finished product 2 and semi-finished product 3 are sprayed and mixed by a spray tower according to a mass ratio of 1:1.5, and the product obtained after mixing is the finished feed additive product.

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Abstract

The present invention provides a preparation method of feed additive for control of avian coccidiosis. The preparation method comprises the following steps: (1) mixing essential oil products to obtain a semi-finished product; (2) mixing the semi-finished product 1 and medium chain aliphatic ester, homogenizing by a high-speed homogenizer, and emulsifying sufficiently to obtain a semi-finished product 2; (3) crushing the Macleaya cordata plants, sieing through a screen of 40 mesh to obtain a Macleaya cordata extract and silica particles and mixing to obtain a semi-finished product 3; and (4) mixing the semi-finished product 2 and the semi-finished product 3 in a spray manner by a spray tower to obtain the feed additive product after mixing. The method solves the volatile failure of volatile plant oil products, and explores the appropriate ratio of essential oils and Macleaya cordata plant. Compared to the prior art, the feed additive not only can effectively control avian coccidiosis, but also has the advantages of small addition amount, easy usage and security; therefore, the feed additive is worth promoting in the poultry industry.

Description

technical field [0001] The invention relates to a preparation process of a feed additive, in particular to a preparation method of a feed additive for preventing and treating chicken coccidiosis. Background technique [0002] With the increasing intensification of poultry breeding in my country, the risk factor of poultry infection with various diseases has also increased significantly. Among them, chicken coccidiosis is the most common and very serious parasitic disease. The mortality rate of infected chicks is as high as 80%; even if they recover from the disease, the growth of chicks will be hindered, and the ratio of feed to meat will increase, causing serious economic losses. The currently used drugs for the prevention and treatment of coccidiosis can be divided into three types, one is polyether ionophore antibiotics, such as Hainanmycin, salinomycin, methyl salinomycin, tiamulin, etc. Although it is good, there will be problems of antibiotic residues and cross-contam...

Claims

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Application Information

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IPC IPC(8): A23K50/75A23K20/158
Inventor 汪德中
Owner 山川生物科技(武汉)有限公司
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