Insomnia-regulating drink and preparation method thereof
A technology of beverages and extracts, applied in the field of insomnia-regulating beverages and its preparation, can solve problems such as strong side effects, high cost, and dependence
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
preparation example Construction
[0044] The present invention also provides the preparation method of the beverage that regulates insomnia described in above-mentioned scheme, comprises the steps:
[0045] 1) Grinding dried lily, radix radix and almond respectively to obtain lily powder, radix radix powder and almond powder;
[0046] 2) Mix the cherry extract, lotus mist extract, banana extract, jujube extract, and kiwi fruit extract described in the above scheme with the lily powder, radix radix powder and almond powder obtained in the step 1) to obtain the first a mixture;
[0047] 3) mixing the first mixture obtained in the step 2) with honey to obtain a second mixture;
[0048] 4) Mix the second mixture obtained in the step 3) with water and cook the ingredients to obtain a drink for regulating insomnia.
[0049] The flow process of the preparation method of the beverage for regulating insomnia of the present invention is as follows: figure 1 shown.
[0050] The invention grinds dried lily, radix radi...
Embodiment 1
[0061] Supercritical CO 2 Extract, obtain cherry extract (extraction condition: extraction pressure: 19.5MPa, extraction temperature: 41 ℃, extraction time: 110min, entrainer: the ethanol of volume fraction 94%), the cherry extract that will obtain is freeze-dried in negative pressure ( Freeze drying conditions: drying area 7.5m 2 ; Heating power: 18.5KW; Temperature: -18°C; Vacuum degree -0.025MPa; Humidity: 4%) to obtain cherry extract.
[0062] Pass the lotus mist through supercritical CO 2 Extract to obtain the lotus mist extract (extraction conditions: extraction pressure: 20.5MPa, extraction temperature: 39°C, extraction time: 130min, entrainer: ethanol with a volume fraction of 96%), and the obtained lotus mist extract is frozen under negative pressure Drying (freeze drying conditions: drying area 8.5m 2 ; Heating power: 17.5KW; Temperature: -13°C; Vacuum degree -0.035MPa; Humidity: 6%) to obtain lotus mist extract.
[0063] Bananas were subjected to supercritical C...
Embodiment 2
[0071] Supercritical CO 2 Extract, obtain cherry extract (extraction condition: extraction pressure: 19.5MPa, extraction temperature: 41 ℃, extraction time: 110min, entrainer: the ethanol of volume fraction 94%), the cherry extract that will obtain is freeze-dried in negative pressure ( Freeze drying conditions: drying area 7.5m 2 ; Heating power: 18.5KW; Temperature: -13°C; Vacuum degree -0.025MPa; Humidity: 4%) to obtain cherry extract.
[0072] Pass the lotus mist through supercritical CO 2 Extract to obtain the lotus mist extract (extraction conditions: extraction pressure: 20.5MPa, extraction temperature: 39°C, extraction time: 130min, entrainer: ethanol with a volume fraction of 95%), and the obtained lotus mist extract is frozen under negative pressure Drying (freeze drying conditions: drying area 8.5m 2 ; Heating power: 17.5KW; Temperature: -15°C; Vacuum degree -0.035MPa; Humidity: 6%) to obtain lotus mist extract.
[0073] Bananas were subjected to supercritical C...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com