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Lutein Supercritical Co2 Extraction
Lutein Supercritical Co2 Extraction
The primary focus of supercritical CO2 extraction technologies is a method of removing active substances from creatures and plants. This method mainly uses the characteristics of supercritical fluids. Under callous and solid mixture separation or contact, the temperature and temperature in the operating system will be the pressure is adjusted to extract the appropriate substances.

Lutein Supercritical Co2 Extraction

The primary focus of supercritical CO2 extraction technologies is a method of removing active substances from creatures and plants. This method mainly uses the characteristics of supercritical fluids. Under callous and solid mixture separation or contact, the temperature and temperature in the operating system will be the pressure is adjusted to extract the appropriate substances. 

How big supercritical Chemical products CO2 extraction of several natural products remains expanded, from experimental scale to industrial production scale. The supercritical CO2 extraction method has several advantages, for instance, high wholesomeness, low solvent consumption, strong dissolving ability, non-toxic, harmless, and so on. This method comprises for your shortcomings in the organic solvent extraction method, wealthy inefficiency, short period of time-consuming, and simple operation.

Enzyme aided extraction

Enzyme-aided extraction method means utilization of cellulase to cope with and break the cell walls of creatures and plants, therefore the substances inside the cells are frequently uncovered during extraction, as well as the oil permeability has been enhanced, that's favorable to subsequent extraction. Lutein is not isomerized. For the reason that enzymatic degradation of marigold. All-trans lutein gets the finest content in marigold powder after enzymatic treatment.

Measurement methodist

High finish liquid chromatography

High finish liquid chromatography can be a sensitive, efficient and rapid separation method, that could precisely find out the information of several components within the samples, and is regarded as the broadly used recognition method of quantitative analysis of lutein. This method has high precision, good stability, and could efficiently and quickly find out the information of lutein inside the sample.