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Low-carbon composite edible fungus culture medium

A compound, culturing material technology, applied in the application, organic fertilizer, inorganic fertilizer and other directions, can solve the problems of the quality of edible fungi, male reproductive health, and high pesticide residues, so as to solve the price increase and solve the shortage of cultivation raw materials. , the effect of saving production costs

Inactive Publication Date: 2017-02-08
宋群库
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Especially the wood and cottonseed hulls currently used in the production of edible fungi, the use of the former is restricted due to the strengthening of the country's protection of forest resources, and the latter has a high amount of pesticide residues. Pesticides will exceed the standard. At the same time, cottonseed hulls contain cotton polyphenols that have an impact on male reproductive health, so the quality of edible fungi will be affected to a certain extent.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] A kind of low-carbon composite edible fungus compost of the present embodiment, it is made by the raw material of following weight portion:

[0016] 20 parts of corn stalks, 10 parts of medical stone, 0.1 part of clindamycin, 20 parts of cnidium dregs, 2 parts of chicken manure, 10 parts of plant ash, 1 part of light calcium carbonate, 10 parts of soybean meal, 15 parts of tartary buckwheat husk, 0.5 parts of brown sugar, 3 parts of fermented glutinous rice, 8 parts of bentonite, and 0.8 parts of EM bacterial agent.

[0017] The method for preparing the above-mentioned low-carbon composite edible fungus compost in this embodiment comprises the following steps:

[0018] 1) Grinding the corn stalks, plant ash, tartary buckwheat husk, Cnidium chinensis dregs, and soybean meal in the above weight parts into materials with a particle size of 60 mesh, stirring evenly, and setting aside;

[0019] 2) passing the medical stone, light calcium carbonate, brown sugar, and bentonit...

Embodiment 2

[0025] A kind of low-carbon composite edible fungus compost of the present embodiment, it is made by the raw material of following weight portion:

[0026] 30 parts of corn stalks, 20 parts of medical stone, 0.3 parts of clomiphene, 30 parts of cnidium dregs, 5 parts of chicken manure, 18 parts of plant ash, 5 parts of light calcium carbonate, 20 parts of soybean meal, 25 parts of tartary buckwheat husk, 0.9 parts of brown sugar, 7 parts of fermented glutinous rice, 12 parts of bentonite, and 1.6 parts of EM bacterial agent.

[0027] The method for preparing the above-mentioned low-carbon composite edible fungus compost in this embodiment comprises the following steps:

[0028] 1) Grinding the corn stalks, plant ash, tartary buckwheat husk, cnidium medicinal dregs, and soybean meal in the above weight parts into materials with a particle size of 80 mesh, stirring evenly, and setting aside;

[0029] 2) passing the medical stone, light calcium carbonate, brown sugar, and benton...

Embodiment 3

[0035] A kind of low-carbon composite edible fungus compost of the present embodiment, it is made by the raw material of following weight part:

[0036] 25 parts of corn stalks, 15 parts of medical stone, 0.2 parts of cmilyl, 25 parts of cnidium dregs, 3 parts of chicken manure, 14 parts of plant ash, 3 parts of light calcium carbonate, 15 parts of soybean meal, 20 parts of tartary buckwheat husk, 0.7 parts of brown sugar, 5 parts of glutinous rice, 10 parts of bentonite, 1.2 parts of EM bacteria agent.

[0037] The method for preparing the above-mentioned low-carbon composite edible fungus compost in this embodiment comprises the following steps:

[0038] 1) Grinding the corn stalks, plant ash, tartary buckwheat husk, cnidium dregs, and soybean meal in the above weight parts into materials with a particle size of 70 mesh, stirring evenly, and setting aside;

[0039] 2) passing the medical stone, light calcium carbonate, brown sugar, and bentonite of the above weight parts th...

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PUM

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Abstract

The invention belongs to the technical field of edible fungus culture media, and particularly relates to a low-carbon composite edible fungus culture medium. The edible fungus culture medium is prepared by the following steps: by using corn straws, medical stone, mepartricin, fructus cnidii decoction dregs, chicken manure, plant ash, light calcium carbonate, bean pulp, tartary buckwheat husk, brown sugar, fermented glutinous rice, bentonite and effective microorganisms as raw materials, pulverizing, fermenting, mixing and the like. The edible fungus culture medium can provide multiple required nutrients for the edible fungus, conforms to the production concepts of low carbon and environmental protection at present, saves the production cost, and can produce the high-quality edible fungus product and the like.

Description

technical field [0001] The invention belongs to the technical field of edible fungus culture material, and in particular relates to a low-carbon composite edible fungus culture material. Background technique [0002] Edible fungi are rich in protein, vitamins, minerals, especially a variety of amino acids and polysaccharides necessary for the human body, which are very beneficial to the balance of human metabolism, and have high nutritional value and therapeutic effect. After food, there are three major categories of products that humans can eat. The edible fungus industry has become a high-profit hotspot industry worldwide because of its low investment, high efficiency, and wide range of raw materials. [0003] With the development of edible fungus industry and modern agriculture, the consumption of resources is constantly increasing, and the limited natural resources are constantly being exhausted, facing the crisis of resource scarcity. Especially the wood and cottonsee...

Claims

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Application Information

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IPC IPC(8): C05G3/00
CPCC05G3/00C05D1/00C05D3/02C05D9/00C05F3/00C05F5/002C05F5/006C05F5/008C05F11/00C05F11/08
Inventor 宋群库
Owner 宋群库
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