Flammulina velutipes mushroom bran recycling technology
A technology of Flammulina velutipes fungus chaff and technology, which is applied in the field of fungus chaff recycling, can solve the problems of lack of systematization and less development, and achieve the effect of increasing labor demand and extending the biomass cycle chain
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Embodiment 1
[0028] as attached figure 1 Shown, a kind of Flammulina velutipes bacterium chaff recycling technology comprises the following steps:
[0029] (1) Using Flammulina velutipes mushroom chaff as raw material, analyze the nutritional components, determine the content of cellulose, amino acids, and trace elements in the chaff, and use the neutral-acid detergent fiber sequence analysis method to analyze lignin, cellulose, and hemifiber in the chaff The protein content of bacteria bran was determined by semi-micro Kjeldahl method; the amino acid species was determined by hydrochloric acid hydrolysis method; Recycling provides a theoretical basis;
[0030] (2) Using PDA medium or bottle material cultivation methods, conduct screening tests on edible fungus strains suitable for cultivation of Flammulina velutipes mushroom chaff, and screen out edible fungal strains suitable for degrading fungus chaff;
[0031] (3) According to the biological characteristics of the edible fungus strai...
Embodiment 2
[0035] as attached figure 1 Shown, a kind of Flammulina velutipes bacterium chaff recycling technology comprises the following steps:
[0036] (1) Using Flammulina velutipes mushroom chaff as raw material, analyze the nutritional components to determine the content of cellulose, amino acids, and trace elements in the chaff, and use the neutral-acid detergent fiber sequence analysis method to analyze the lignin, cellulose, semi- Cellulose content; use semi-micro Kjeldahl method to determine the protein content of bacterial bran; Provide a theoretical basis for the recycling of bran;
[0037] (2) Accumulated fermentation and pre-rot of Flammulina velutipes mushroom chaff, and screened synergistic strains with high cellulase and hemicellulase activities from the pre-rot material;
[0038] (3) Add decomposing agent and nutritional additives to the pre-rotted material in the above steps to carry out secondary synergistic fermentation;
[0039] (4) Utilize the secondary synergist...
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