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Method for extracting propolis using far-infrared rays from earthenware

A technology of far-infrared rays and propolis, applied in food extraction, application, food preservation, etc., can solve the problems of propolis oxidation quality, acetaldehyde produced by ethanol, and air circulation not suitable for aging process, so as to improve productivity, prevent oxidation and decay, Increases the effect of storage and aging effects

Inactive Publication Date: 2012-04-04
BIO PROPOLIS TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the prior art, metal pottery or synthetic resin pottery is usually used for the aging process, which leads to oxidation of propolis or deterioration of quality due to purple light
[0006] Acetaldehyde is produced during insufficient oxidation of ethanol due to inappropriate air circulation for the aging process in conventional ethanol extraction

Method used

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  • Method for extracting propolis using far-infrared rays from earthenware
  • Method for extracting propolis using far-infrared rays from earthenware

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Experimental program
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Embodiment Construction

[0025] Hereinafter, the method for extracting propolis by using the far infrared rays in the pottery of the present invention will be described in detail with reference to the embodiments of the drawings.

[0026] figure 1 It is a flowchart of the method for extracting propolis using far infrared rays in the pottery according to the present invention.

[0027] As shown in the figure, a method for extracting propolis using far infrared rays in a pottery according to a specific embodiment of the present invention includes a curing process S10, a grinding process S20, a mixing process S30, a first ageing process S40, and a second ageing process S50 .

[0028] The curing process S10 refers to curing the propolis raw material block to make it easier to grind in the grinding process S20.

[0029] The propolis raw material block generally becomes solid below 15°C, becomes smooth and soft and has high viscosity at 25°C to 45°C, and dissolves at more than 60°C, and its properties change when ...

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Abstract

The present invention relates to a method for extracting propolis using far-infrared rays from earthenware, and, more specifically, to a method for extracting propolis using far-infrared rays from earthenware, wherein use of earthenware which radiates far infrared and in which internal and external air is circulated in order to extract propolis can suppress the proliferation of micro-organisms and enhance the storability and the maturation effect due to penetration of the far-infrared rays, and at the same time naturally disperse the aldehyde contained in alcohol and prevent rancidification by means of the circulation of the air, and yet reduce the propolis extraction time.

Description

Technical field [0001] The present invention relates to a method for extracting propolis using far-infrared rays in pottery. In particular, the present invention relates to the following method for extracting propolis using far-infrared rays in pottery. The far-infrared rays emitted by the pottery with the structure of the external air convection can prevent the growth of microorganisms, thereby increasing the storage and seasoning performance, and increase the acetaldehyde in the ethanol outward under the action of air circulation It distributes naturally, prevents oxidative decay and shortens the extraction cycle of propolis. Background technique [0002] Generally speaking, propolis is produced by honeybees by mixing resin extracted from plants with saliva and enzymes of honeybees for the survival and growth of honeybees. Propolis contains 270 substances, most of which are organic and minerals (inorganic). Among the substances contained, minerals, vitamins, amino acids, fats...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A23L1/076A23L21/20
CPCA23L1/076A23L3/0055A23L21/20A23V2002/00A23V2300/14
Inventor 李荣光
Owner BIO PROPOLIS TECH