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  • An Overview of Analytical Methods for Quantitative . . .
    Rujiralai T , Raekasin N , Cheewasedtham V , Cheewasedtham C Development of an effective extraction process for coenzyme Q10 from Artemia Chem Pap 2014;68:1041–1048 doi: 10 2478 s11696-014-0558-2 [Google Scholar] 45 Villanueva-Bermejo D , Temelli F Extraction of oil rich in coenzyme Q10 from chicken by-products using supercritical CO2 J
  • Development of an effective extraction process for coenzyme . . .
    A method for extracting coenzyme Q10 (CoQ10) from Artemia was developed 1 g of fresh Artemia was incubated with 75 % acetic acid at (30 ± 2)°C for 24 h, followed by three consecutive
  • Determination of a method for extraction of coenzyme Q10 in . . .
    By the analyses performed, it was possible to observe that the addition of the surfactant Tween-20 promoted an increase in the recovery of CoQ10 by the methanol:hexane extraction method This method showed good reproducibility, with a low coefficient of variation and high sensitivity, since CoQ10 wa …
  • Four Main Methods for Extracting Coenzyme Q10 from Plants.
    The extraction of Coenzyme Q10 from plants has become an area of significant interest due to its potential applications in the fields of medicine, cosmetics, and dietary supplements There are four main methods for extracting Coenzyme Q10 from plants, which we will explore in detail in this article 2 Solvent Extraction Method 2 1 Principle
  • Extraction Technology and Production Process of Coenzyme Q10.
    Coenzyme Q10 is a significant bioactive substance with broad applications in various fields Regarding its extraction technology, different approaches exist Chemical synthesis offers a way to produce large quantities of Coenzyme Q10, yet it demands precise control of reaction conditions to ensure product quality Microbial fermentation has emerged as a promising method Through genetic
  • WO2013159593A1 - Method for extracting coenzyme q10 and . . .
    The oil, the discharge valve 9 is discharged After 2 hours of dynamic extraction, 112 21g of coenzyme Q10-rich oil was obtained from the first vacuum separation tank 7 and the second vacuum separation tank 8, and the extraction rate was 11 22% The coenzyme Q10 was enriched in the coenzyme Q10-rich oil The content is 31 08%
  • Development of an effective extraction process for coenzyme . . .
    A method for extracting coenzyme Q10 (CoQ10) from Artemia was developed 1 g of fresh Artemia was incubated with 75 % acetic acid at (30 ± 2)°C for 24 h, followed by three consecutive extractions with a mixture of 5 mL of hexane and 5 mL of ethanol, then analysis by a validated high-performance liquid chromatography with a diode-array detector The calibration curve for CoQ10 was linear in a
  • Analysis of coenzyme Q10 in bee pollen using online cleanup . . .
    A method was developed to determine CoQ10 in bee pollen The samples were extracted and purified by online cleanup of ASE The method proved to be efficient, fast and environmentally friendly The method was used to determine CoQ10 content in some samples There was a large variation in CoQ10 content amongst the samples





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