Recycling method for cordyceps sinensis fermentation waste liquid

A technology of fermentation waste liquid and Cordyceps sinensis, applied in the direction of microorganism-based methods, biochemical equipment and methods, microorganisms, etc., can solve problems such as environmental pollution and waste of resources, and achieve the effects of reducing costs, reducing waste, and increasing production

Active Publication Date: 2016-12-07
青海珠峰冬虫夏草工程技术研究有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] During the artificial cultivation of Cordyceps sinensis, the fermented mycelium generally only accounts for about 3% of the total fermented product, and the remaining 97% of the fermented liquid is discarded as waste liquid. After analyzing the components of the fermented liquid, it is found

Method used

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  • Recycling method for cordyceps sinensis fermentation waste liquid
  • Recycling method for cordyceps sinensis fermentation waste liquid

Examples

Experimental program
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Effect test

Embodiment 1

[0023] (1) Collect the waste liquid produced by the Cordyceps sinensis fungus through submerged liquid fermentation and extract the mycelium, filter it with a plate and frame filter, and collect the filtrate A; the Cordyceps sinensis fungus is the anamorph of (Cordyceps sinensis)-Hirsutella sinensis Liu, Guo, Yu et Zeng); the pressure of plate and frame filtration is 0.35Mpa, and it is filtered through a 300-mesh filter cloth; the specific fermentation process can be found in the specification of Chinese patent CN201210389147.5.

[0024] (2) Use a booster pump to pump filtrate A into the slag discharge three-stage mechanical precision filter for processing to obtain filtrate B, and use the slag discharge three-stage mechanical precision filter to precisely filter the filtrate A. The specific process is, in the slag discharge three-stage The mechanical precision filter is sequentially processed through a 100μm primary precision filter, a 10μm secondary precision filter and a 1μm...

Embodiment 2

[0030] (1) Collect the waste liquid produced by the Cordyceps sinensis fungus through submerged liquid fermentation and extract the mycelium, filter it with a plate and frame filter, and collect the filtrate A; the Cordyceps sinensis fungus is the anamorph of (Cordyceps sinensis)-Hirsutella sinensis Liu, Guo, Yu et Zeng); the pressure of plate and frame filtration is 0.4Mpa, and it is filtered through a 300-mesh filter cloth; the specific fermentation process can be found in the description of Chinese patent CN201210389147.5.

[0031] (2) Use a booster pump to pump filtrate A into the slag discharge three-stage mechanical precision filter for processing to obtain filtrate B, and use the slag discharge three-stage mechanical precision filter to precisely filter the filtrate A. The specific process is, in the slag discharge three-stage The mechanical precision filter is sequentially processed through a 100μm primary precision filter, a 10μm secondary precision filter and a 1μm se...

Embodiment 3

[0037] (1) Collect the waste liquid produced by the Cordyceps sinensis fungus through submerged liquid fermentation and extract the mycelium, filter it with a plate and frame filter, and collect the filtrate A; the Cordyceps sinensis fungus is the anamorph of (Cordyceps sinensis)-Hirsutella sinensis Liu, Guo, Yu et Zeng); the pressure of plate and frame filtration is 0.45Mpa, and it is filtered through a 300-mesh filter cloth; the specific fermentation process can be found in the description of Chinese patent CN201210389147.5.

[0038] (2) Use a booster pump to pump filtrate A into the slag discharge three-stage mechanical precision filter for processing to obtain filtrate B, and use the slag discharge three-stage mechanical precision filter to precisely filter the filtrate A. The specific process is, in the slag discharge three-stage The mechanical precision filter is sequentially processed through a 100μm primary precision filter, a 10μm secondary precision filter and a 1μm s...

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Abstract

The invention relates to a recycling method for cordyceps sinensis fermentation waste liquid. According to the recycling method, waste liquid generated after cordyceps sinensis fungi are subjected to deep liquid fermentation and mycelia are extracted serves as the raw material, the waste liquid is treated, suppressing substances which suppress growth of cordyceps sinensis fungi are removed, substances beneficial to growth and reproduction of cordyceps sinensis fungi are preserved, and the comprehensive good effects that resource waste is reduced, the problem of pollution of fermentation liquid to the environment is solved, and the yield of cordyceps sinensis mycelia is increased are achieved.

Description

technical field [0001] The invention relates to the field of biological fermentation engineering, in particular to a method for reusing the fermentation waste liquid of Cordyceps sinensis. Background technique [0002] Cordyceps sinensis is also known as Cordyceps sinensis, Cordyceps sinensis, and summer grass winter worm. It is a complex of sclerotium in the larvae of the larvae of the ergotaceae plant Cordyceps sinensis parasitic on the larvae of the larvae. It is mainly produced in Sichuan, Qinghai, Tibet, Yunnan and other places. Dig before and after the summer solstice, sun-dried or dried, and used raw. Modern research shows that Cordyceps sinensis has important edible, medicinal and other economic values. Cordyceps is rich in nutrients such as cordycepic acid, cordycepin and various amino acids, and has the effects of dilating trachea, calming, resisting various bacteria, and lowering blood pressure. . In recent years, the United States, Japan, etc. have successive...

Claims

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Application Information

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IPC IPC(8): C12N1/14C12R1/645
CPCC12N1/14
Inventor 王玉花王辉莫胜学罗成军汪金山董笑菲
Owner 青海珠峰冬虫夏草工程技术研究有限公司
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