Method for extracting a-arbutin from fermentation liquor based on membrane separation technology
A fermentation broth, arbutin technology, applied in chemical instruments and methods, preparation of sugar derivatives, sugar derivatives, etc., can solve the problems of long process route, unstable quality and high production cost, and achieves simple and reasonable process and reduced cost. Production cost, easy operation effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0018] Pass 100L of a-arbutin fermentation broth through a microfiltration membrane with a membrane pore size of 1000nm. The membrane entry pressure is 0.2MPa, the membrane exit pressure is 0.1MPa, and the operating temperature is 25°C. After the fermentation broth is concentrated 8 times, 25L of dialysis water is added. The filtrate passes through the DA201 macroporous adsorption resin column at a flow rate of 2BV / H, and the analysis solution is also passed through the DA201 macroporous adsorption resin column at a flow rate of 2BV / H with 25% ethanol. The analysis solution was concentrated under reduced pressure, and decolorized by D315 macroporous adsorption resin at a flow rate of 2BV / H. The decolorization solution was concentrated and crystallized twice, and a total of 408.3g of a-arbutin product was obtained. The purity of the a-arbutin product detected by high-pressure liquid chromatography is 99.57%.
[0019]
Embodiment 2
[0021] Pass 100L of a-arbutin fermentation broth through a microfiltration membrane with a membrane pore size of 500nm, the membrane entry pressure is 0.2MPa, the membrane exit pressure is 0.1MPa, and the operating temperature is 25°C. After the fermentation broth is concentrated 10 times, 30L of dialysis water is added. The filtrate passes through the DA201 macroporous adsorption resin column at a flow rate of 2BV / H, and the analysis solution is also passed through the DA201 macroporous adsorption resin column at a flow rate of 2BV / H with 25% ethanol. The analysis solution was concentrated under reduced pressure, and decolorized by D315 macroporous adsorption resin at a flow rate of 2BV / H. The decolorization solution was concentrated twice and crystallized to obtain a total of 438.7g of a-arbutin product. The purity of the a-arbutin product detected by high-pressure liquid chromatography is 99.76%.
[0022]
Embodiment 3
[0024] Pass 100L of a-arbutin fermentation broth through a microfiltration membrane with a membrane pore size of 200nm, the membrane entry pressure is 0.2MPa, the membrane exit pressure is 0.1MPa, and the operating temperature is 25°C. After the fermentation broth is concentrated 10 times, 25L of dialysis water is added. The filtrate passes through the DA201 macroporous adsorption resin column at a flow rate of 2BV / H, and the analysis solution is also passed through the DA201 macroporous adsorption resin column at a flow rate of 2BV / H with 25% ethanol. The analysis solution was concentrated under reduced pressure, and decolorized by D315 macroporous adsorption resin at a flow rate of 2BV / H. The decolorization solution was concentrated and crystallized twice, and a total of 416.4g of a-arbutin product was obtained. The purity of the a-arbutin product detected by high-pressure liquid chromatography is 99.62%.
[0025]
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