NL2032828B1 - Microbial inoculant for composting livestock and poultry manure and preparation method thereof - Google Patents

Microbial inoculant for composting livestock and poultry manure and preparation method thereof Download PDF

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NL2032828B1
NL2032828B1 NL2032828A NL2032828A NL2032828B1 NL 2032828 B1 NL2032828 B1 NL 2032828B1 NL 2032828 A NL2032828 A NL 2032828A NL 2032828 A NL2032828 A NL 2032828A NL 2032828 B1 NL2032828 B1 NL 2032828B1
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bacteria
preparation
microbial inoculant
trichoderma
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Dong Wenyi
Zhao Jianzhong
Zhang Yufeng
Yang Yan
Jiang Lihua
Liu Yansheng
Hu Bin
Kong Fanmei
Zhang Xiaocun
Wang Xiangwen
Liu Enke
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Univ Shandong Agricultural
Inst Agricultural Resources & Environment Shandong Academy Agricultural Sciences
Qingdao Xingkai Environmental Tech Co Ltd
Inst Of Environment And Sustainable Development In Agriculture Chinese Academy Of Agricultural Scien
Shandong Agricultural Tech Promotion Center Shandong Agricultural And Rural Development Research Cen
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Abstract

The present invention discloses a microbial inoculant for composting livestock and poultry manure and a preparation method thereof. The present invention relates to the technical field of microbial inoculants, including the following components: bacillus subtilis, azotobacter vinelandii, paecilomyces lilacinus, bacillus coagulans, trichoderma harzianum, streptomyces microflavus, trichoderma, organophosphorus bacteria, potassium bacteria and rhizobium astragali, by the use of this inoculant, it may not only have the ability of improving the survivability in a soil environment, converting nitrogen and potassium in soil, improving the soil fertility, and stimulating the crop growth, but also reduce the amount of chemical fertilizers, inhibit the reproduction of germs, and achieve the three—in—one effect of increasing the production and income, inhibiting diseases, and improving the quality, so the input cost is reduced.

Description

P1539/NLpd
MICROBIAL INOCULANT FOR COMPOSTING LIVESTOCK AND POULTRY MANURE
AND PREPARATION METHOD THEREOF
TECHNICAL FIELD
The present invention relates to the technical field of mi- crobial inoculants, in particular to a microbial inoculant for composting livestock and poultry manure and a preparation method thereof.
BACKGROUND ART
Existing microbial inoculants for composting livestock and poultry manure have relatively tedious production steps and rela- tively complicated operations, which not only increase the input cost, but also produce finished products with relatively weak bac- tericidal and bacteriostatic effects, and the survivability in a soil environment is relatively poor, so it may not help the growth of crops better. For this reason, persons skilled in the art pro- vide a microbial inoculant for composting livestock and poultry manure and a preparation method thereof.
SUMMARY
In view of the deficiencies of the prior art, the present in- vention provides a microbial inoculant for composting livestock and poultry manure and a preparation method thereof, as to solve problems that existing microbial inoculants for composting live- stock and poultry manure are relatively high in input cost, fin- ished products produced are relatively weak in bactericidal and bacteriostatic effects, and the survivability in a soil environ- ment is relatively poor, so it may not help the growth of crops better.
In order to achieve the above purpose, the present invention is achieved by the following technical schemes: a microbial inocu- lant for composting livestock and poultry manure, including the following components: bacillus subtilis, azotobacter vinelandii, paecilomyces lilacinus, bacillus coagulans, trichoderma harzianum,
streptomyces microflavus, trichoderma, organophosphorus bacteria, potassium bacteria and rhizobium astragali; and the microbial inoculant for composting the livestock and poultry manure is prepared from the following components in parts by mass: 2.0-3.0 parts of the bacillus subtilis, 2.6-3.7 parts of the azotobacter vinelandii, 1.8-2.4 parts of the paecilomyces li- lacinus, 3.3-4.0 parts of the bacillus coagulans, 2.1-3.1 parts of the trichoderma harzianum, 4.0-4.2 parts of the streptomyces mi- croflavus, 0.6-0.8 parts of the trichoderma, 0.3-0.4 parts of the organophosphorus bacteria, 0.3-0.4 parts of the potassium bacteria and 0.5-1.0 part of the rhizobium astragali.
As a further technical scheme of the present invention, it is prepared from the following components in parts by mass: 2.0 parts of the bacillus subtilis, 2.6 parts of the azotobacter vinelandii, 1.8 parts of the paecilomyces lilacinus, 3.3 parts of the bacillus coagulans, 2.1 parts of the trichoderma harzianum, 4.0 parts of the streptomyces microflavus, 0.6 parts of the trichoderma, 0.3 parts of the organophosphorus bacteria, 0.3 parts of the potassium bacteria and 0.5 parts of the rhizobium astragali.
As a further technical scheme of the present invention, it is prepared from the following components in parts by mass: 2.5 parts of the bacillus subtilis, 3.0 parts of the azotobacter vinelandii, 2.1 parts of the paecilomyces lilacinus, 3.6 parts of the bacillus coagulans, 2.6 parts of the trichoderma harzianum, 4.1 parts of the streptomyces microflavus, 0.7 parts of the trichoderma, 0.35 parts of the organophosphorus bacteria, 0.35 parts of the potassi- um bacteria and 0.7 parts of the rhizobium astragali.
As a further technical scheme of the present invention, it is prepared from the following components in parts by mass: 3.0 parts of the bacillus subtilis, 3.7 parts of the azotobacter vinelandii, 2.4 parts of the paecilomyces lilacinus, 4.0 parts of the bacillus coagulans, 3.1 parts of the trichoderma harzianum, 4.2 parts of the streptomyces microflavus, 0.8 parts of the trichoderma, 0.4 parts of the organophosphorus bacteria, 0.4 parts of the potassium bacteria and 1.0 part of the rhizobium astragali.
As a further technical scheme of the present invention, the streptomyces microflavus is mainly fermented from a liquid culture medium of soybean cake powder, glucose, a calcium hydrochloride and a sodium chloride.
As a further technical scheme of the present invention, the content of the soybean cake powder is 3 g, the content of the glu- cose is 3 g, the content of the calcium hydrochloride is 0.5 g, and the content of the sodium chloride is 0.4 g.
As a further technical scheme of the present invention, the azotobacter vinelandii and the potassium bacteria are both cul- tured in an Ashby medium, the trichoderma is cultured in a potato sucrose medium, the organophosphorus bacteria are cultured in a lecithin medium, and the rhizobium astragali is cultured in a yeast juice sucrose medium.
The preparation method for the above microbial inoculant for composting the livestock and poultry manure includes the following steps:
Sl. strain culture: inoculating the bacillus subtilis, azoto- bacter vinelandii, paecilomyces lilacinus, bacillus coagulans, trichoderma harzianum, streptomyces microflavus, trichoderma, or- ganophosphorus bacteria, potassium bacteria and rhizobium astraga- li respectively in each culture medium for culturing;
S2. bacterial solution preparation: putting the various bac- terial strains cultured in the Step S1 into a drug bottle of a seed culture medium in a mode of slant surface inoculation, and using a liquid culture medium for culturing separately, to obtain bacterial solution of the bacterial strain;
S3. bacterial solution mixing: putting all types of the bac- terial solution prepared in the Step S2 into a fermentation tank loaded with seeds, stirring and mixing, to obtain composite seed solution;
S4. compound bacterial solution preparation: inoculating all the seed solution in the Step S3 into a seed tank loaded with a fermentation culture medium for fermenting and culturing, to ob- tain compound bacterial solution;
S5. microbial inoculant preparation: drying and powder- spraying the compound bacterial solution in the Step 54, to obtain a finished product microbial inoculant; and
S6. packaging and storing: adding the finished product micro-
bial inoculant in the Step S5 to a filling machine, packaging it into a container by using the filling machine, and putting it in a storage.
BENEFICIAL EFFECT
The present invention provides a microbial inoculant for com- posting livestock and poultry manure and a preparation method thereof. Compared with the prior art, it has the following benefi- cial effects: 1. A microbial inoculant for composting livestock and poultry manure and a preparation method thereof, by using this inoculant, it may not only have the ability of improving the survivability in the soil environment, converting nitrogen and potassium in soil, improving the soil fertility, and simulating the crop growth, but also reduce the amount of chemical fertilizers, inhibit the repro- duction of germs, and achieve the three-in-one effect of increas- ing the production and income, inhibiting diseases, and improving the quality, so the input cost is reduced. 2. A microbial inoculant for composting livestock and poultry manure and a preparation method thereof, by adding the trichoderma harzianum, a cell wall degrading enzyme of pathogenic bacteria may be secreted, and the cell wall of the pathogenic bacteria may be destroyed, thereby the pathogenic bacteria are killed; by adding the paecilomyces lilacinus, it has the efficacy of preventing and controlling a plurality of nematodes; and by adding the bacillus coagulans, it has an anti-insect function to plants, thereby the immunity of crops is improved, and the disease resistance of the crops 1s strengthened.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is a flow diagram of a preparation method of the pre- sent invention.
DETAILED DESCRIPTION OF THE EMBODIMENTS
Embodiment 1
The present invention provides a technical scheme: a microbi- al inoculant for composting livestock and poultry manure, which is prepared from the following components in parts by mass: 2.0 parts of bacillus subtilis, 2.6 parts of azotobacter vinelandii, 1.8 parts of paecilomyces lilacinus, 3.3 parts of bacillus coagulans, 2.1 parts of trichoderma harzianum, 4.0 parts of streptomyces mi- 5 croflavus, 0.6 parts of trichoderma, 0.3 parts of organophosphorus bacteria, 0.3 parts of potassium bacteria and 0.5 parts of rhizo- bium astragali.
The streptomyces microflavus is mainly fermented from a lig- uid culture medium of soybean cake powder, glucose, a calcium hy- drochloride and a sodium chloride.
The content of the soybean cake powder is 3 g, the content of the glucose is 3 g, the content of the calcium hydrochloride is 0.5 g, and the content of the sodium chloride is 0.4 g.
The azotobacter vinelandii and the potassium bacteria are both cultured in an Ashby medium, the trichoderma is cultured in a potato sucrose medium, the organophosphorus bacteria are cultured in a lecithin medium, and the rhizobium astragali is cultured in a yeast juice sucrose medium.
A preparation method for the above microbial inoculant for composting the livestock and poultry manure includes the following steps: 81. strain culture: inoculating the bacillus subtilis, azoto- bacter vinelandii, paecilomyces lilacinus, bacillus coagulans, trichoderma harzianum, streptomyces microflavus, trichoderma, or- ganophosphorus bacteria, potassium bacteria and rhizobium astraga- li respectively in each culture medium for culturing;
S2. bacterial solution preparation: putting the various bac- terial strains cultured in the Step S1 into a drug bottle of a seed culture medium in a mode of slant surface inoculation, and using a liquid culture medium for culturing separately, to obtain bacterial solution of the bacterial strain; 33. bacterial solution mixing: putting all types of the bac- terial solution prepared in the Step S2 into a fermentation tank loaded with seeds, stirring and mixing, to obtain composite seed solution;
S4. compound bacterial solution preparation: inoculating all the seed solution in the Step S3 into a seed tank loaded with a fermentation culture medium for fermenting and culturing, to ob- tain compound bacterial solution; 85. microbial inoculant preparation: drying and powder- spraying the compound bacterial solution in the Step S4, to obtain a finished product microbial incculant; and
S6. packaging and storing: adding the finished product micro- bial inoculant in the Step S5 to a filling machine, packaging it into a container by using the filling machine, and putting it in a storage.
Embodiment 2
The present invention provides a technical scheme: a microbi- al inoculant for composting livestock and poultry manure, which is prepared from the following components in parts by mass: 2.5 parts of bacillus subtilis, 3.0 parts of azotobacter vinelandii, 2.1 parts of paecilomyces lilacinus, 3.6 parts of bacillus coagulans, 2.6 parts of trichoderma harzianum, 4.1 parts of streptomyces mi- croflavus, 0.7 parts of trichoderma, 0.35 parts of organophospho- rus bacteria, 0.35 parts of potassium bacteria and 0.7 parts of rhizobium astragali.
The streptomyces microflavus is mainly fermented from a lig- uid culture medium of soybean cake powder, glucose, a calcium hy- drochloride and a sodium chloride.
The content of the soybean cake powder is 3 g, the content of the glucose is 3 g, the content of the calcium hydrochloride is 0.5 g, and the content of the sodium chloride is 0.4 g.
The azotobacter vinelandii and the potassium bacteria are both cultured in an Ashby medium, the trichoderma is cultured in a potato sucrose medium, the organophosphorus bacteria are cultured in a lecithin medium, and the rhizobium astragali is cultured in a yeast juice sucrose medium.
A preparation method for the above microbial inoculant for composting the livestock and poultry manure is the same as Embodi- ment 1.
Embodiment 3
The present invention provides a technical scheme: a microbi- al inoculant for composting livestock and poultry manure, which is prepared from the following components in parts by mass: 3.0 parts of bacillus subtilis, 3.7 parts of azotobacter vinelandii, 2.4 parts of paecilomyces lilacinus, 4.0 parts of bacillus coagulans, 3.1 parts of trichoderma harzianum, 4.2 parts of streptomyces mi- croflavus, 0.8 parts of trichoderma, 0.4 parts of organophosphorus bacteria, 0.4 parts of potassium bacteria and 1.0 part of rhizobi- um astragali.
The streptomyces microflavus is mainly fermented from a liq- uid culture medium of soybean cake powder, glucose, a calcium hy- drochloride and a sodium chloride.
The content of the soybean cake powder is 3 g, the content of the glucose is 3 g, the content of the calcium hydrochloride is 0.5 g, and the content of the sodium chloride is 0.4 g.
The azotobacter vinelandii and the potassium bacteria are both cultured in an Ashby medium, the trichoderma is cultured in a potato sucrose medium, the organophosphorus bacteria are cultured in a lecithin medium, and the rhizobium astragali is cultured in a yeast juice sucrose medium.
A preparation method for the above microbial inoculant for composting the livestock and poultry manure includes the following steps:
Sl. strain culture: inoculating the bacillus subtilis, azoto- bacter vinelandii, paecilomyces lilacinus, bacillus coagulans, trichoderma harzianum, streptomyces microflavus, trichoderma, or- ganophosphorus bacteria, potassium bacteria and rhizobium astraga- li respectively in each culture medium for culturing;
S2. bacterial solution preparation: putting the various bac- terial strains cultured in the Step S1 into a drug bottle of a seed culture medium in a mode of slant surface inoculation, and using a liquid culture medium for culturing separately, to obtain bacterial solution of the bacterial strain;
S3. bacterial solution mixing: putting all types of the bac- terial solution prepared in the Step S2 into a fermentation tank loaded with seeds, stirring and mixing, to obtain composite seed solution;
S4. compound bacterial solution preparation: inoculating all the seed solution in the Step S3 into a seed tank loaded with a fermentation culture medium for fermenting and culturing, to ob-
tain compound bacterial solution; 35. microbial inoculant preparation: drying and powder- spraying the compound bacterial solution in the Step S4, to obtain a finished product microbial inoculant; and
S56. packaging and storing: adding the finished product micro- bial inoculant in the Step S5 to a filling machine, packaging it into a container by using the filling machine, and putting it in a storage.
I. Test method for antagonism of actinomyces microflavus: 1) a tube of the azotobacter vinelandii, the organophosphorus bacteria, the potassium bacteria, the rhizobium astragali and the trichoderma is taken each; 2) bacterial cells are washed out respectively with sterile water, 1 mm of bacterial suspension is absorbed each, mixed uni- formly with an uncured agar medium and poured into a culture dish; and 3) after being cured, fermentation broth is dipped with a circular filter paper sheet with a diameter of 1 cm and it sticks on the medium, after being placed at 26-28°C for 5-7 days, the size of an inhibition zone is observed.
Results are shown in the following table:
Bacterial strain Diameter of inhibition zone (mm)
Organophosphorus bacteria °o ae
Rhizobium astragali 0
From the test results in the above table, it may be seen that the actinomyces microflavus has the apparent inhibitory effect on the trichoderma, but has no inhibitory effect on the potassium bacteria, the organophosphorus bacteria and the rhizobium astraga- 1i, and not only has no inhibitory effect on the azotobacter vine- landii, but also causes the azotobacter vinelandii to generate a dense bacterial lawn with a thickness of 6 mm around the filter paper sheet, so it has the effect of stimulating growth.
It should be noted that, in this article, relationship terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not neces- sarily require or imply any such actual relationship or sequence existing between these entities or operations. In addition, terms "including", "containing" or any other variations thereof are in- tended to encompass non-exclusive inclusion, such that a process, a method, an object or a device including a series of elements in- cludes not only those elements, but also includes other elements that are not explicitly listed, or elements inherent to such a process, method, object or device.
Although the embodiments of the present invention are already shown and described, it may be understood by those skilled in the art that various changes, modifications, replacements and varia- tions may be made to these embodiments without departing from the principle and spirit of the present invention, and the scope of the present invention is defined by the appended claims and equiv- alents thereof.

Claims (1)

CONCLUSIESCONCLUSIONS 1. Microbieel inoculant voor het composteren van mest van vee en pluimvee, met het kenmerk, dat het wordt bereid uit de volgende bestanddelen in massadelen: 2,0 tot 3,0 delen bacillus subtilis, 2,6 tot 3,7 delen azotobacter vinelandii, 1,8 tot 2,4 delen paeci- lomyces lilacinus, 3,3 tot 4,0 delen bacillus coagulans, 2,1 tot 3,1 delen trichoderma harzianum, 4,0 tot 4,2 delen streptomyces microflavus, 0,6 tot 0,8 delen trichoderma, 0,3 tot 0,4 delen or- ganofosforbacteriën, 0,3 tot 0,4 delen kaliumbacterién en 0,5 tot 1,0 onderdeel van rhizobium astragali.1. Microbial inoculant for composting livestock and poultry manure, characterized in that it is prepared from the following components in parts by mass: 2.0 to 3.0 parts bacillus subtilis, 2.6 to 3.7 parts azotobacter vinelandii , 1.8 to 2.4 parts paecilomyces lilacinus, 3.3 to 4.0 parts bacillus coagulans, 2.1 to 3.1 parts trichoderma harzianum, 4.0 to 4.2 parts streptomyces microflavus, 0.6 up to 0.8 parts trichoderma, 0.3 to 0.4 parts organophosphorus bacteria, 0.3 to 0.4 parts potassium bacteria and 0.5 to 1.0 parts of rhizobium astragali. 2. Microbieel inoculant voor het composteren van mest van vee en pluimvee volgens conclusie 1, met het kenmerk, dat de streptomyces microflavus hoofdzakelijk wordt gefermenteerd uit een vloeibaar kweekmedium van sojabonenkoekpoeder, glucose, een calciumhydro- chloride en een natriumchloride.A microbial inoculant for composting livestock and poultry manure according to claim 1, characterized in that the streptomyces microflavus is fermented mainly from a liquid culture medium of soybean cake powder, glucose, a calcium hydrochloride and a sodium chloride. 3. Microbieel inoculant voor het composteren van mest van vee en pluimvee volgens conclusie 1 of 2, met het kenmerk, dat een berei- dingswijze de volgende stappen omvat:3. Microbial inoculant for composting livestock and poultry manure according to claim 1 or 2, characterized in that a preparation method comprises the following steps: S1. stamcultuur: het enten van de bacillus subtilis, azotobacter vinelandii, paecilomyces lilacinus, bacillus coagulans, trichoder- ma harzianum, streptomyces microflavus, trichoderma, organofosfor bacteriën, kaliumbacteriën en rhizobium astragali respectievelijk in elk kweekmedium voor het kweken;S1. stock culture: the inoculation of bacillus subtilis, azotobacter vinelandii, paecilomyces lilacinus, bacillus coagulans, trichoderma harzianum, streptomyces microflavus, trichoderma, organophosphorus bacteria, potassium bacteria and rhizobium astragali respectively into any culture medium for cultivation; S2. bereiding van bacteriële oplossing: het plaatsen van de ver- schillende bacteriestammen die in stap S1 zijn gekweekt in een me- dicijnfles van een zaadkweekmedium in een modus van inoculatie met schuin oppervlak, en het gebruiken van een vloeibaar kweekmedium voor afzonderlijk kweken, om een bacteriële oplossing van de bac- teriestam te verkrijgen;S2. preparation of bacterial solution: placing the different bacterial strains cultured in step S1 into a medicament bottle of a seed culture medium in a tilted surface inoculation mode, and using a liquid culture medium for separate cultivation, to obtain a bacterial to obtain solution of the bacterial strain; S3. menging van bacteriële oplossing: alle typen van de in stap S2 bereide bacteriële oplossing in een met zaden beladen fermentatie- tank doen, roeren en mengen, om een samengestelde zaadoplossing te verkrijgen;S3. mixing of bacterial solution: putting all types of the bacterial solution prepared in step S2 into a fermentation tank loaded with seeds, stirring and mixing, to obtain a composite seed solution; S4. bereiding van samengestelde bacteriële oplossing: het enten van alle zaadoplossing in stap S3 in een zaadtank die is beladen met een fermentatie kweekmedium voor fermentatie en kweken, om een samengestelde bacteriële oplossing te verkrijgen;S4. preparation of composite bacterial solution: inoculating all the seed solution in step S3 into a seed tank loaded with a fermentation culture medium for fermentation and cultivation, to obtain a composite bacterial solution; 85. bereiding van microbieel inoculant: het drogen en poeder- sproeien van de samengestelde bacteriële oplossing in stap S4, om een microbieel inoculant als eindproduct te verkrijgen; en85. preparation of microbial inoculant: drying and powder spraying the composite bacterial solution in step S4, to obtain a microbial inoculant as a final product; and S6. verpakking en opslag: het microbiële inoculant van het eind- product in de stap S5 toevoegen aan een vulmachine, het in een container verpakken met behulp van de vulmachine en het in een op- slag plaatsen.S6. packaging and storage: adding the microbial inoculant of the final product in step S5 to a filling machine, packing it into a container using the filling machine and placing it in a storage facility.
NL2032828A 2022-08-23 2022-08-23 Microbial inoculant for composting livestock and poultry manure and preparation method thereof NL2032828B1 (en)

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