High-temperature-resistant livestock and poultry manure degradation complex microbial inoculant and application thereof

A technology of compound bacterial agent and livestock and poultry manure, which is applied in the field of agricultural microorganisms, can solve the problems of complex components of livestock and poultry manure, slow speed, and insufficient degradation of compound bacteria, and achieve obvious synergy, improve production efficiency, and improve enterprise economics The effect of benefit and eco-environmental benefit

Inactive Publication Date: 2020-10-30
TAICANG LVFENG BIOLOGICAL ORGANIC FERTILIZER CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In recent years, my country's livestock and poultry waste treatment and resource utilization have achieved some results, but there are still many practical difficulties in fully realizing the energy and fertilizer utilization of livestock and poultry manure
At present, making organic fertilizer from livestock and poultry manure through aerobic fermentation is one of the main wa...

Method used

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  • High-temperature-resistant livestock and poultry manure degradation complex microbial inoculant and application thereof
  • High-temperature-resistant livestock and poultry manure degradation complex microbial inoculant and application thereof
  • High-temperature-resistant livestock and poultry manure degradation complex microbial inoculant and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0066] Embodiment 1: Degradation effect of single bacterium and compound bacterium to chicken manure

[0067] Weigh a certain amount of chicken manure and place it in a 250ml conical flask, absorb the equal amount of each bacterial solution into the conical flask, and mix evenly, put it in a 55 degree incubator for cultivation, after 15 days, dry the sample and weigh it to Chicken manure without inoculation was used as a control, and the degradation rate of chicken manure was calculated by weight loss method.

[0068] results and analysis

[0069] The effects of different bacterial flora combinations on the degradation of chicken manure were as follows: figure 1 shown. Among all the treatments, the chicken manure degradation rate of the combined bacteria (NJAU-ND8+B5) was the highest at 24.12%, the chicken manure degradation rate of B5 was 17.66%, the chicken manure degradation rate of NJAU-ND8 was 11.77%, and the blank treated chicken manure degradation rate was 17.66%. Th...

Embodiment 2

[0071] Embodiment 2: Degradation effect of single bacterium and complex bacterium to pig manure

[0072] Chicken manure is replaced by pig manure, and all the other operating steps are the same as in Example 1.

[0073] results and analysis

[0074] The effects of different bacterial flora combinations on the degradation of pig manure are as follows: figure 2 shown. Among all the treatments, the combined bacteria (NJAU-ND8+B5) had the highest degradation rate of 22.41%, the degradation efficiency of the single bacteria B5 was 11.37%, the degradation efficiency of the single bacteria NJAU-ND8 was 9.77%, and the degradation rate of the blank treatment was the lowest. was 3.57%. Compared with the blank treatment, the single-bacteria B5 treatment and the single-bacteria NJAU-ND8 treatment, the combined bacteria (NJAU-ND8+B5) had a significant improvement in the degradation effect of pig manure, which increased by 18.84%, 11.05% and 12.64% respectively .

[0075] According to...

Embodiment 3

[0076] Embodiment 3: Degradation effect of single bacterium and compound bacterium to sheep manure

[0077] Replace the chicken manure with sheep manure, and the rest of the operation steps are the same as in Case 1.

[0078] results and analysis

[0079] The effects of different bacterial flora combinations on the degradation of sheep manure are as follows: image 3 shown. Among all the treatments, the combined bacteria (NJAU-ND8+B5) had the highest degradation rate of 34.12%, the degradation efficiency of the single bacteria B5 was 27.66%, the degradation efficiency of the single bacteria NJAU-ND8 was 21.77%, and the degradation rate of the blank treatment was the lowest. was 7.09%. Compared with the blank treatment, the single-bacteria B5 treatment and the single-bacteria NJAU-ND8 treatment, the combined bacteria (NJAU-ND8+B5) had a significant improvement in the degradation effect of sheep manure, which increased by 27.03%, 6.46% and 12.35% respectively .

[0080] Acc...

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Abstract

The invention discloses a high-temperature-resistant livestock and poultry manure degradation complex microbial inoculant and application thereof. The invention aims to further improve the compostingeffect of livestock and poultry breeding manure, the complex microbial inoculant containing Bacillus sp. Bacteria NJAU-ND8 and Bacillus stearothermophilus is developed, and the complex microbial inoculant provides the complex microbial resource and the technical support for the livestock and poultry breeding manure. The application of the complex microbial inoculant is to accelerate degradation oflivestock and poultry breeding excrement. When the complex microbial inoculant is used for degrading the chicken manure, the degradation rate of the chicken manure reaches 24.12% after half a month,and the degradation effect is better than that of single bacteria and blank treatment; after the pig manure is degraded for half a month, the degradation rate of the pig manure reaches 22.41 percent and is better than that of single bacteria and blank treatment; after the sheep manure is degraded for half a month, the degradation rate of the sheep manure reaches 34.12 percent and is better than that of single bacteria and blank treatment.

Description

technical field [0001] The invention relates to the field of agricultural microorganisms, in particular to a high-temperature-resistant compound bacterial agent for degrading livestock and poultry manure and its application. Background technique [0002] At present, the national annual production of livestock and poultry manure is about 3.8 billion tons. Large-scale livestock and poultry manure is a huge organic matter and nutrient resource, but if it is not handled properly, it will have a serious negative impact on the environment and residents' lives. According to the 2010 Bulletin of the First National Survey of Pollution Sources, the chemical oxygen demand discharged by the livestock and poultry farming industry reached 12.6826 million tons, accounting for 96% of the total emissions from agricultural sources; the discharge of total nitrogen and total phosphorus was 1.0248 million tons and 160,400 tons, accounting for 38% and 56% of the total emissions from agricultural...

Claims

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Application Information

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IPC IPC(8): C12N1/20C05F17/20C05F11/08C05F17/50C05F15/00C12R1/07
CPCC05F3/00C05F11/08C12N1/20C05F17/20C05F17/50Y02W30/40
Inventor 李荣沈其荣陈伟施善巍何宙阳
Owner TAICANG LVFENG BIOLOGICAL ORGANIC FERTILIZER CO LTD
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